rSO2
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Azzam, M.A., Couture, E.J., Beaubien-Souligny, W. et al. Can J Anesth/J Can Anesth 2021;68:130–136.
Brain CO-Oximetry: A Useful Noninvasive Parameter Adjuvant to Standard Perfusion Parameters in Septic Shock
Das D, Mitra K, Das S. J Anesth Clin Res. 2021;12(1)987.
Azzam, M.A., Couture, E.J., Beaubien-Souligny, W. et al. Can J Anesth/J Can Anesth 2021;68:130–136.
Denault et al JCVA 2021; 35(3):763-779.
Robba, C., Ball, L., Battaglini, D. et al. Crit Care; (25):111;2021.
Portal Hypertension Is Associated with Congestive Encephalopathy and Delirium after Cardiac Surgery
Benkreira, Aymen et al. Canadian Journal of Cardiology.
Modern technology–derived normative values for cerebral tissue oxygen saturation in adults.
Eyeington, C. T., Ancona, P., Osawa, E. A., Cutuli, S. L., Eastwood, G. M., & Bellomo, R. Anaesth Intens Care 2019.
A Pilot Randomized Controlled Study of Mild hypercapnia during cardiac surgery with cardiopulmonary bypass.
Chang M, Lucchetta L, Cutuli S, Eyeington C, Glassford NJ, M˚artensson J, Angelopoulos P, Matalanis G, Weinberg L, Eastwood GM, Bellomo R.
J of Cardiothoracic Vasc Anesth 2019.
Four-wavelength near-infrared peripheral oximetry in cardiac surgery patients: a comparison between EQUANOX and O3.
Ferraris A, Jacquet-Lagrèze M, Fellahi JL. J Clin Monit Comput. 2017 May 2.
Absolute and Trend Accuracy of a New Regional Oximeter in Healthy Volunteers During Controlled Hypoxia.
Redford D, Paidy S, Kashif F. Anesth Analg. 2014 Dec; 119(6):1315-1319. PubMed PMID: 25405692.
Brain CO-Oximetry: A Useful Noninvasive Parameter Adjuvant to Standard Perfusion Parameters in Septic Shock
Das D, Mitra K, Das S. J Anesth Clin Res. 2021;12(1)987.
Azzam, M.A., Couture, E.J., Beaubien-Souligny, W. et al. Can J Anesth/J Can Anesth 2021;68:130–136.
Denault et al JCVA 2021; 35(3):763-779.
Robba, C., Ball, L., Battaglini, D. et al. Crit Care; (25):111;2021.
Portal Hypertension Is Associated with Congestive Encephalopathy and Delirium after Cardiac Surgery
Benkreira, Aymen et al. Canadian Journal of Cardiology.
Modern technology–derived normative values for cerebral tissue oxygen saturation in adults.
Eyeington, C. T., Ancona, P., Osawa, E. A., Cutuli, S. L., Eastwood, G. M., & Bellomo, R. Anaesth Intens Care 2019.
A Pilot Randomized Controlled Study of Mild hypercapnia during cardiac surgery with cardiopulmonary bypass.
Chang M, Lucchetta L, Cutuli S, Eyeington C, Glassford NJ, M˚artensson J, Angelopoulos P, Matalanis G, Weinberg L, Eastwood GM, Bellomo R.
J of Cardiothoracic Vasc Anesth 2019.
Four-wavelength near-infrared peripheral oximetry in cardiac surgery patients: a comparison between EQUANOX and O3.
Ferraris A, Jacquet-Lagrèze M, Fellahi JL. J Clin Monit Comput. 2017 May 2.
Absolute and Trend Accuracy of a New Regional Oximeter in Healthy Volunteers During Controlled Hypoxia.
Redford D, Paidy S, Kashif F. Anesth Analg. 2014 Dec; 119(6):1315-1319. PubMed PMID: 25405692.
Rainbow
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--PVI
Correlation between pleth variability index and ultrasonic inferior vena cava-collapsibility index in parturients with twin pregnancies undergoing cesarean section under spinal anesthesia
Zhang H, Yuan H, Yu H, Zhang Y, Feng S. Eur J Med Res. 2022 Aug 6;27(1):139. doi: 10.1186/s40001-022-00771-3.
Evaluation of plethysmographic variability index and hemoglobin monitoring in patients who underwent laparoscopic cholecystectomy
Koca E. Eur Rev Med Pharmacol Sci. 2022 Jul;26(13):4762-4769. doi: 10.26355/eurrev_202207_29201.
Pleth Variability Index-Based Goal-Directed Fluid Management in Patients Undergoing Elective Gynecologic Surgery
Yilmaz G, Akca A, Kiyak H, Can E, Aydin A, Salihoglu Z. Sisli Etfal Hastan Tip Bul. 2022 Jun 28;56(2):220-226. doi: 10.14744/SEMB.2021.81073.
Use of the pleth variability index in children with obstructive respiratory disease
Demir G, Berksoy E, Bardak Ş, Elibol P, Çiçek A, Özön A, Nalbant T, Gökalp G. Am J Emerg Med. 2022 Mar 17;56:28-32. doi: 10.1016/j.ajem.2022.03.019
Perioperative goal-directed fluid management using noninvasive hemodynamic monitoring in gynecologic oncology
Yildiz GO, Hergunsel GO, Sertcakacilar G, Akyol D, Karakaş S, Cukurova Z. Braz J Anesthesiol. 2022 Feb 1:S0104-0014(22)00005-7. doi: 10.1016/j.bjane.2021.12.012
Goal-directed haemodynamic therapy during general anaesthesia for noncardiac surgery: a systematic review and meta-analysis
Jessen MK, Vallentin MF, Holmberg MJ, et al. Br J Anaesth. 2022;128(3):416-433. doi:10.1016/j.bja.2021.10.046
The role of perfusion index and plethysmography variability index for predicting dehydration severity in patients with acute gastroenteritis
Emektar E, Dagar S, Uzunosmanoğlu H, Çıkrıkçı Işık G, Çorbacıoğlu ŞK, Çevik Y. Hong Kong J Emerg Med. 2022;29(2):78-83. doi:10.1177/1024907919889488
Relationship between Pleth Variability Index and the Occurrence of Hypotension during Epidural Anesthesia for Cesarean Section.
Zang H, Zhu L, Yan W. J Coll Physicians Surg Pak. 2021 Jun;30(6):619-622.
Predicting hypotension during anaesthesia: variation in pulse oximetry plethysmography predicts propofol-induced hypotension in children
Choi SN, Ji SH, Jang YE, et al. Paediatr Anaesth [published online ahead of print, 2021 May 21]. Paediatr Anaesth. 2021;10.1111/pan.14223.
Plethysmography variability index (PVI) changes in preterm neonates with shock-an observational study.
Pawale D, Murki S, Kulkarni D, Vardhelli V, Sharma D, Oleti T, Kiran S, Kallem V, Bashir T. Eur J Pediatr. 2021 Feb;180(2):379-385.
A Prospective Observational Study of Plethysmograph Variability Index and Perfusion Index in Predicting Hypotension with Propofol Induction in Noncardiac Surgeries
Thirunelli RK, Nanjundaswamy NH. Anesth Essays Res. 2021;15(2):167-173. doi:10.4103/aer.aer_81_21
Role of Lung Ultrasonography in Detecting Extravascular Lung Water (EVLW) in Major Oncological Surgeries.
Kulkarni A, Dalal A. Presented at ANESTHESIOLOGY 2021, San Diego, California, October 9, 2021. Abstract #A1067.
Pleth Variability Index [PVI] based Intraoperative Fluid Management in Head and Neck Free Flap Reconstructive Surgeries
Chowdhury I, Ahuja P, Satapathy H, Goyal P, Pathak S. Acta Scientific Clinical Case Reports. 2021;2(4):33-41.
Dynamic variables predict fluid responsiveness in pre-school and school children undergoing neurosurgery: a prospective observational study
Song LL, Geng ZY, Ma W, Liu YF, Wang DX. Transl Pediatr. 2021;10(11):2972-2984. doi:10.21037/tp-21-281
Ergun M, Zengin S, Umuroglu T. Bariatric Surgical Practice and Patient Care. (2021).
Datta R, Dhar M, Setlur R, Lamba N. Medical Journal Armed Forces India. (2021).
Utility of the Pleth Variability Index in predicting anesthesia-induced hypotension in geriatric patients.
Yuksek, A. Turk J Med Sci (2021) 51:134-139
Pleth variability index may predict preload responsiveness in patients treated with nasal high flow: a physiological study
García de Acilu M, Pacheco A, Santafé M, et al. J Appl Physiol 2021;doi:10.1152/japplphysiol.00614.2020.
Use of noninvasive volume assessment methods to predict acute blood loss in spontaneously breathing volunteers
Tomo A, Pekdemir M, Ozturan IU, Dogan NO, Yaka E, Yilmaz S. Clin Exp Emerg Med. 2021;8(1):9-15. doi:10.15441/ceem.20.021
The predictive value of the Pleth Variability Index on fluid responsiveness in spontaneously breathing anaesthetized children - a prospective observational study
Weber F, Rashmi BK, Karaoz-Bulut G, Dogger J, de Heer IJ, Prasser C. [published online ahead of print, 2020 Aug 7]. Paediatr Anaesth. 2020;10.1111/pan.13991.
Aboelnile D, Elseidy M, Kenawey Y, Elsherif I. Ain-Shams J Anesth. 2020. 12:48.
Individualized Fluid Management Using the Pleth Variability Index: A Randomized Clinical Trial
Fischer MO, Lemoine S, Tavernier B, et al. Anesthesiology. 2020;133(1):31-40. doi:10.1097/ALN.0000000000003260
Efficacy of Pleth Variability Index (PVI) to Evaluate Intraoperative Fluid Management During Orthopedic Spinal Surgery: A Randomized Controlled Trial. Journal of Anesthesiology and Reanimation Specialists’ Society.
Çevikkalp et al. JARSS 2020;28(1):18-25.
Placement in the prone position predisposes patients to a near volume-response state. A plethysmographic comparison of two prone positions using the Pleth Variability index.
Maldonado F, Fábregas N, Ortega R, Carrero E, Valero R.
J Clin Anesth. 2019 May 18;58:79-80. doi: 10.1016/j.jclinane.2019.05.015. [Epub ahead of print] PubMed PMID: 31112867
Continuous hemoglobin and plethysmography variability index monitoring can modify blood transfusion practice and is associated with lower mortality
Cros, J., Dalmay, F., Yonnet, S. et al. J Clin Monit Comput (2019). https://doi.org/10.1007/s10877-019-00367-z
Pleth variability index versus pulse pressure variation for intraoperative goal-directed fluid therapy in patients undergoing low-to-moderate risk abdominal surgery: a randomized controlled trial
Coeckelenbergh, S., Delaporte, A., Ghoundiwal, D. et al. BMC Anesthesiol (2019) 19: 34.
Pleth Variability Index Versus Stroke Volume Variation as Predictors of Fluid Responsiveness in Prone Position
Girija P. Rath, M.D., Ritesh Lamsal, M.D., Siddharth Chavali, M.D.
Proceedings from the Annual American Society of Anesthesiologists Meeting, San Francisco, October 2018.
Perfusion index and pleth variability index in the first hour of life according to mode of delivery.
Şule Yiğit, Şahin Takcı, Davut Bozkaya, Murat Yurdakök.
The Turkish Journal of Pediatrics 2018; 60: 421-425.
Iatrogenic hemodilution: a possible cause for avoidable blood transfusions?
Perel A. Crit Care. 2017 Nov 25;21(1):291. doi: 10.1186/s13054-017-1872-1. PubMed PMID: 29178938; PubMed Central PMCID: PMC5702064.
Pleth variability index can predict spinal anaesthesia-induced hypotension in patients undergoing caesarean delivery.
Kuwata S, Suehiro K, Juri T, Tsujimoto S, Mukai A, Tanaka K, Yamada T, Mori T, Nishikawa K. Acta Anaesthesiol Scand. 2017 Oct 16. doi: 10.1111/aas.13012.
Exploring the best predictors of fluid responsiveness in patients with septic shock.
Lu N, Xi X, Jiang L, Yang D, Yin K. Am J Emerg Med. 2017 Sep;35(9):1258-1261.
Reproducibility of the Pleth Variability Index in premature infants.
den Boogert WJ(1), van Elteren HA(1), Goos TG(1)(2), Reiss IKM(1), de Jonge RCJ(3), van den Berg VJ(1). J Clin Monit Comput. 2017 Aug 31. doi: 10.1007/s10877-017-0058-3. [Epub ahead of print]
Efficacy of Goal-Directed Fluid Therapy via Pleth Variability Index During Laparoscopic Roux-en-Y Gastric Bypass Surgery in Morbidly Obese Patients.
Demirel İ(1), Bolat E(2), Altun AY(2), Özdemir M(2), Beştaş A(2). Obes Surg. 2017 Jul 31. doi: 10.1007/s11695-017-2840-1. [Epub ahead of print]
Evaluation of the dynamic predictors of fluid responsiveness in dogs receiving goal-directed fluid therapy.
Drozdzynska MJ, Chang YM, Stanzani G, Pelligand L. Vet Anaesth Analg. 2017 Jun 17. pii: S1467-2987(17)30216-7. doi: 10.1016/j.vaa.2017.06.001. [Epub ahead of print] PubMed PMID: 29203173.
Non-Invasive Hemodynamic Monitoring for Hemodynamic Management in Perioperative Medicine
Nicklas et al. Frontiers in Medicine. 2017;4:209.
Accuracy of pleth variability index compared with inferior vena cava diameter to predict fluid responsiveness in mechanically ventilated patients
Pişkin Ö et al. François. V, ed. Medicine. 2017;96(47):e8889. doi:10.1097/MD.0000000000008889
Application of the perfusion index in obstetric bleeding.
Tanaka H, Katsuragi S, Tanaka K, Kawamura T, Nii M, Kubo M, Osato K, Sasaki Y, Ikeda T. J Matern Fetal Neonatal Med. 2016 Dec;29(23):3812-4.
Prediction of fluid responsiveness in the beach chair position using dynamic preload indices.
Lee SH, Chun YM, Oh YJ, Shin S, Park SJ, Kim SY, Choi YS. J Clin Monit Comput. 2016 Dec;30(6):995-1002. Epub 2015 Dec 31.
Comparison of esophageal Doppler and plethysmographic variability index to guide intraoperative fluid therapy for low-risk patients undergoing colorectal surgery.
Warnakulasuriya SR et al. J Clin Anesth. 2016 Nov;34:600-8.
Pulse oximetry-derived Pleth variability index can predict dexmedetomidine-induced changes in blood pressure in spontaneously breathing patients.
Sato M, Kunisawa T, Kurosawa A, Sasakawa T. J Clin Anesth. 2016 Nov;34:318-24.
Intraoperative Pleth Variability Index Is Linked to Delayed Graft Function After Kidney Transplantation.
Collange O, Jazaerli L, Lejay A, Biermann C, Caillard S, Moulin B, Chakfe N, Severac F, Schaeffer M, Mertes PM, Steib A Transplant Proc. 2016 Oct;48(8):2615-2621.
Using Pleth Variability as a Triage Tool for Children with Obstructive Airway Disease in a Pediatric Emergency Department.
Brandwein A(1), Patel K, Kline M, Silver P, Gangadharan S. Pediatr Emerg Care. 2016 Oct 6. [Epub ahead of print]
Predicting stroke volume and arterial pressure fluid responsiveness in liver cirrhosis patients using dynamic preload variables: A prospective study of diagnostic accuracy.
Wu CY, Cheng YJ, Liu YJ, Wu TT, Chien CT, Chan KC; NTUH Center of Microcirculation Medical Research (NCMMR). Eur J Anaesthesiol. 2016 Sep;33(9):645-52.
Pleth variability index and respiratory system compliance to direct PEEP settings in mechanically ventilated patients, an exploratory study.
Zhou J(1), Han Y(1). Springerplus. 2016 Aug 20;5(1):1371. doi: 10.1186/s40064-016-3008-5. eCollection 2016.
Comparing Pleth variability index (PVI) variation induced by passive leg raising and Trendelenburg position in healthy volunteers.
Demirci OL, Çıkrıkçı Işık G, Çorbacıoğlu ŞK, Çevik Y.
Am J Emerg Med. 2019 May 7. pii: S0735-6757(19)30326-2. doi: 10.1016/j.ajem.2019.05.015. [Epub ahead of print] PubMed PMID: 31109779.
Evaluation of pleth variability index as a predictor of fluid responsiveness during orthotopic liver transplantation.
Konur H, Erdogan Kayhan G, Toprak HI, Bucak N, Aydogan MS, Yologlu S, Durmus M, Yılmaz S. Kaohsiung J Med Sci. 2016 Jul;32(7):373-80.
Pulse Oximeter-Derived Pleth Variability Index is a Reliable Indicator of Cardiac Preload in Patients Undergoing Liver Transplantation.
Lee HC, Tsai YF, Tsai HI, Chung PC, Yu HP, Lee WC, Lin CC. Transplant Proc. 2016 May;48(4):10558.
Non-invasive monitoring of oxygen delivery in acutely ill patients: new frontiers.
Perel A. Ann Intensive Care. 2015 Dec;5(1):24. doi:10.1186/s13613-015-0067-7. Epub 2015 Sep 17. PubMed PMID: 26380992
Accuracy of pleth variability index to predict fluid responsiveness in mechanically ventilated patients: a systematic review and meta-analysis.
Chu H, Wang Y, Sun Y, Wang G. J Clin Monit Comput. 2016 Jun;30(3):265-74. doi: 10.1007/s10877-015-9742-3. Epub 2015 Aug 5. Review. PubMed PMID: 26242233.
Accuracy of pleth variability index to predict fluid responsiveness in mechanically ventilated patients: a systematic review and meta-analysis.
Chu H, Wang Y, Sun Y, Wang G. J Clin Monit Comput. 2016 Jun;30(3):265-74. doi: 10.1007/s10877-015-9742-3. Epub 2015 Aug 5. Review. PubMed PMID: 26242233.
Changes in pleth variability index and detection of hypotension during spinal anaesthesia for caesarean section.
Wrench I, Hammon L, Handa S, Mahajan R. Int Jobstet Anesth. 2015 Jul 10. Pii: S0959-289X(15)00108-9. Doi: 10.1016/j.ijoa.2015.07.001. [Epub ahead of print] PubMed PMID: 26357933.
Non-invasive blood haemoglobin and plethysmographic variability index during brachial plexus block.
Bergek C, Zdolsek JH, Hahn RG. Br J Anaesth. 2015 May;114(5):812-7. doi: 10.1093/bja/aeu484. Epub 2015 Jan 20. PubMed PMID:25603961.
The impact of intra-abdominal pressure on the stroke volume variation and plethysmographic variability index in patients undergoing laparoscopic cholecystectomy.
Liu F(1), Zhu S, Ji Q, Li W, Liu J. Biosci Trends. 2015 Apr;9(2):129-33.
Effects of stroke volume variation, pulse pressure variation, and pleth variability index in predicting fluid responsiveness during different positive end expiratory pressure in prone position.
Chen Y, Fu Q, Mi WD. Zhongguo Yi Xue Ke Xue Yuan Xue Bao. 2015 Apr;37(2):179-84.
Pleth variability index and fluid responsiveness of hemodynamically stable patients after cardiothoracic surgery.
Maughan BC, Seigel TA, Napoli AM. Am J Crit Care. 2015 Mar;24(2):172-5. doi: 10.4037/ajcc2015864. PubMed PMID: 25727278.
The predictive ability of non-invasive haemodynamic parameters for hypotension during caesarean section: a prospective observational study.
Yokose M, Mihara T, Sugawara Y, Goto T. Anaesthesia. 2015 Feb 12. doi: 10.1111/anae.12992. [Epub ahead of print] PubMed PMID: 25676817.
A prospective clinical study of pleth variability index in prediction of volume responsiveness in patients with septic shock.
Lu N, Zheng R, Lin H, Yu J, Shao J, Wu X, Wang H. Zhonghua Wei Zhong Bing Ji Jiu Yi Xue. 2015 Jan;27(1):17-21. doi: 10.3760/cma.j.issn.2095-4352.2015.01.005. Chinese. PubMed PMID: 25591431.
Standardization of Care: Impact of an Enhanced Recovery Protocol on Length of Stay, Complications, and Direct Costs after Colorectal Surgery
Thiele RH, Rea KM, Turrentine FE, Friel CM, Hassinger TE, Goudreau BJ, Umapathi BA, Kron IL, Sawyer RG, Hedrick TL. Journal of the American College of Surgeons (2015), doi: 10.1016/j.jamcollsurg.2014.12.042.
Cephalic versus digital plethysmographic variability index measurement: a comparative pilot study in cardiac surgery patients.
Fischer MO, Pellissier A, Saplacan V, Gérard JL, Hanouz JL, Fellahi JL. J Cardiothorac Vasc Anesth. 2014 Dec;28(6):1510-5. doi: 10.1053/j.jvca.2014.05.003. Epub 2014 Sep 26.
Evaluation of pleth variability index for predicting hypotension during induction of anesthesia in surgical patients.
Wu Y, Zhang F, Sun K, Yu L, Zhang H, Yan M. [ Zhonghua Yi Xue Za Zhi. 2014 Nov 4;94(40):3167-70. Chinese. PubMed PMID: 25573314.
Reliability of Continuous Non-Invasive Assessment of Hemoglobin and Fluid Responsiveness: Impact of Obesity and Abdominal Insufflation Pressures.
DeBarros M, Causey MW, Chesley P, Martin M. Obes Surg. 2014 Nov 16. [Epub ahead of print] PubMed PMID: 25399349.
The effects of goal-directed fluid therapy based on dynamic parameters on post-surgical outcome: a meta-analysis of randomized controlled trials.
Benes J, Giglio M, Brienza N, Michard F. Crit Care. 2014 Oct 28;18(5):584. doi: 10.1186/s13054-014-0584-z.
Pleth Variability Index Predicts Fluid Responsiveness in Mechanically Ventilated Adults During General Anesthesia for Noncardiac Surgery.
Siswojo AS(1), Wong DM(2), Phan TD(2), Kluger R(2). J Cardiothorac Vasc Anesth. 2014 Aug 25. pii: S1053-0770(14)00168-2. doi: 10.1053/j.jvca.2014.04.010. [Epub ahead of print]
Role of pleth variability index for predicting hypotension after spinal anesthesia for cesarean section.
Sun S, Huang SQ. Int J Obstet Anesth. 2014 Jun 10. pii: S0959-289X(14)00085-5. doi: 10.1016/j.ijoa.2014.05.011. [Epub ahead of print] PMID: 25262278 [PubMed - as supplied by publisher]
Impact of positive fluid balance on critically ill surgical patients: A prospective observational study.
Galinos Barmparas, Douglas Liou, Debora Lee, Nicole Fierro, Matthew Bloom, Eric Ley, Ali Salim, Marko Bukur, In Journal of Critical Care, Volume 29, Issue 6, 2014, Pages 936-941, ISSN 0883-9441, https://doi.org/10.1016/j.jcrc.2014.06.023.
Dynamic Variables and Fluid Responsiveness in Patients for Aortic Stenosis Surgery
Høiseth L.O., Hoff I.E. Hagen O.A., Landsverk S.A., Kirkebøen K.A. Acta Anaesthesiol Scand. 2014 Apr 29.
Pleth Variability Index-Directed Fluid Management in Abdominal Surgery under Combined General and Epidural Anesthesia
Yu Y., Dong J., Xu Z., Shen H., Zheng J. J Clin Monit Comput. 2014 Feb 21.
Implementing an Health System Wide Enhanced Recovery Program for Patients Undergoing Colorectal Surgery - The Anesthesiologists
Colquhoun D., Turrentine F., Rea K., Friel C. American Society of Anesthesiologists 2014; A2010.
Assessment of Postoperative Outcomes in Relation to Pleth Variability Index (PVi) Based Goal-Directed Therapy
Cannesson, M., Yang J., Foglesong C., Canales C., Rinehart J. Amercian Society of Anesthesiologists 2014; A1207.
PVI Decreases Following a Fluid Bolus Administered in the PACU to Treat Hypotension
Mathews D., Piel A., Friend A., Geib, T. American Society of Anesthesiologists 2014; A1124.
Pulse CO-Oximetry - Clinical Impact in the Emergency Department
Exadaktylos A, Braun CT, Ziaka M, Trends in Anaesthesia and Critical Care (2014), doi: 10.1016 j.tacc.2014.07.002.
Prediction of Fluid Responsiveness with Plethysmographic Variability Index in Cardiac Surgery Patients: A Comparison of Three Anatomical Sites
Fischer M..O., Bintener T., Gérard J.-L., Hanouz J.-L., Fellahi J.-L. Euroanesthesia 2014: Abstract 3AP5-4.
Pleth Variability Index as a Tool for Volume Optimization during Open Abdominal Surgery
Bahlmann H., Hahn R., Nilsson L. EJA 2014 31(e-Supplement 52): 3AP5-5.
Respiratory Variations in Pulse Pressure Reflect Central Hypovolemia during Noninvasive Positive Pressure Ventilation
Hoff I.E., Høiseth L.Ø., Hisdal J., Røislien J., Landsverk S.A., Kirkebøen K.A. Crit Care Res Pract. 2014;2014:712728.
Goal-Directed Fluid Management" Based on Pleth Variability Index or Pulse Pressure Variations during Abdominal Surgery
Delaporte A., Ghoundiwal D., Bidgoli J., Foulon P., Vanderlinden P. Euroanesthesia 2014; Abstract 4AP3-9.
Prediction of Fluid Responsiveness with Plethysmographic Variability Index in Cardiac Surgery Patients: A Comparison of Three Anatomical Sites
Fischer M..O., Bintener T., Gérard J.-L., Hanouz J.-L., Fellahi J.-L. Euroanesthesia 2014: Abstract 3AP5-4.
Efficacy of Dynamic Indices in Predicting Fluid Responsiveness in Patients with Obstructive Jaundice
Pei S., Yuan W., Mai H., Wang M., Hao C., Mi W., Fu Q. Physiol Meas. 2014 Feb 5;35(3):369-382.
Predicting Fluid Responsiveness in Children: A Systematic Review.
Gan H., Cannesson M., Chandler J.R., Ansermino J.M. Anesth Analg. 2013 Dec;117(6):1380-92
The Effect of Positive End-Expiratory Pressure and Tripled Tidal Volume on Pleth Variability Index during Hypovolaemia in Conscious Subjects: A Volunteer Study.
Nilsson L.M., Lindenberger D.M., Hahn R.G. Eur J Anaesthesiol. 2013 Nov;30(11):671-7.
Intraoperative Pleth Variability Index Predicts Delayed Graft Function
Jazaerli, L., Heshmati N., Collange O., Biermann C., Lejay A., M.D., Muller C., Sauleau E., Mertes P., Steib A. Proceedings of the American Society of Anesthesiologists, October 16, 2013. San Francisco; A2213
Feasibility of Goal-Directed Fluid Management Based on Monitoring of Pleth Variability Index (PVi)
Canales C, Lee C, Khanh-Van L, Hanacek C, Natalia N, Nguyen C, Le A, Boud R, Rinehart J, Cannesson M. Proceedings of the American Society of Anesthesiologists, October 13, 2013. San Francisco. A2211
Comparison of Stroke Volume and Fluid Responsiveness Measurements in Commonly Used Technologies for Goal-Directed Therapy
Davies S.J., Minhas S., Wilson R.J., Yates D., Howell S.J. J Clin Anesth. 2013 Aug 16
Assessment of the Agreement between Photoplethysmographic and Arterial Waveform Respiratory Variation in Patients Undergoing Spine Surgery
Thiele R.H., Colquhoun D.A., Forkin K.T., Durieux M.E. J Med Eng Technol. 2013 Aug 14
Effect of Hypercapnia on Pleth Variability Index during Stable Propofol: Remifentanil Anesthesia
Mousa WF. Saudi J Anaesth. 2013 Jul;7(3):234-7.
Comparison of Arterial Pressure and Plethysmographic Waveform-Based Dynamic Preload Variables in Assessing Fluid Responsiveness and Dynamic Arterial Tone in Patients Undergoing Major Hepatic Resection
Vos J.J., Kalmar A.F., Struys M.M.R.F., Wietasch J.K.G., Hendriks H.G.D., T.W.L. Scheeren Br. J. Anaesth 2013 Jun;110(6):940-6. Br. J. Anaesth. January 2013
Plethysmographic variability index accuracy in predicting fluid responsiveness in anes children Paed Anesth 2013
Julien F., Hilly J., Sallah T.B., Skhiri A., Michelet D., Brasher C., Varin L., Nivoche Y., Dahmani S. Paediatr Anaesth. 2013 Jun;23(6):536-46.
The Concept of Titration can be Transposed to Fluid Management but does it Change the Volumes? Randomized Trial on Pleth Variability Index during Fast-Track Colonic Surgery
Forget P., Lois F., Kartheuser A., Leonard D., Remue C., De Kock M. Curr Clin Pharmacol. 2013 May;8(2):110-4.
Plethysmographic Variation Index Predicts Fluid Responsiveness in Ventilated Patients in the Early Phase of Septic Shock in the Emergency Department: A Pilot Study
Feissel M., Kalakhy R., Banwarth P., Badie J., Pavon A., Faller J.P., Quenot JP. J Crit Care. 2013 May 14.
Prediction of fluid Responsiveness in Mechanically Ventilated Children Undergoing Neurosurgery
Byon H.J., Lim C.W., Lee J.H., Park Y. H., Kim H.S., Kim C.S., Kim J.T. Br. J. Anaesth 2013 Apr;110(4):586-91.
Insights into Fast-Track Colon Surgery: A Plea for a Tailored Program
Pellegrino L., Lois F., Remue C., Forget P., Crispin B., Leonard D., Jamart J., Kartheuser A. Surg Endosc.2013 Apr;27(4):1178-85.
A Pilot Study of the Pleth Variability Index as an Indicator of Volume-Responsive Hypotension in Newborn Infants during Surgery
Bagci S., Müller N., Müller A., Heydweiller A., Bartmann .P, Franz AR. J Anesth. 2013 Apr;27(2):192-8.
Respiration Signals from Photoplethysmography
Nilsson L.M. Anesth Analg. 2013 Feb 28
Pleth Variability Index is a Weak Predictor of Fluid Responsiveness in Patients Receiving
Monnet X., Gue´rin L., Jozwiak M., Bataille A,. Julien F., Richard C., Teboul J.L. Br. J. Anaesth. 2013 Feb;110(2):207-13
In reply to: 'Is the pleth variability index a surrogate for pulse pressure variation in a pediatric population undergoing spine fusion’.
O'Reilly M. Paediatr Anaesth. 2013 Feb;23(2):206-7.
Prediction Fluid Responsiveness in Laparoscopic Major Abdominal Surgery
Abdouloussen A., Coquin J., Dewitte A., Joannes-Boyau O., Fleureau C., Ouattara A. Eur J Anaesthesiol. 2013; 30 (Supplement 51)
Assessment of the Pleth Variability Index (PVi) to Guide Fluid Therapy during Renal Transplantation
Follin A., Le Guen M., Fischler M. Eur J Anaesthesiol. 2013; 30 (Supplement 51)
Pre-Anesthetic PVi (Pleth Variability Index) Predicts Hypotension after Spinal Anesthesia during Cesarean Section
Yokose M., Mihara T., Goto T. Eur J Anaesthesiol. 2013; 30 (Supplement 51)
Prediction of Fluid Responsiveness Following Conventional Cardiac Surgery: A Comparison between Arterial Pulse Pressure Variation and Plethysmographic Variability Index
Rebet O., Fischer M.-O., Gérard J.-L., Hanouz J.-L., Fellahi J.-L. Eur J Anaesthesiol. 2013; 30 (Supplement 51)
Comparison of Optimised Stroke Volume and Fluid Responsiveness Measurements from Commonly Used Technologies for Perioperative Goal Directed Fluid Therapy
Minhas S., Davies S., Wilson R.J.T., Yates D., Howell S.J. Eur J Anaesthesiol. 2013; 30 (Supplement 51)
Perfusion Index and its Dynamic Changes in Preterm Neonates with Patent Ductus Arteriosus
Vidal M., Ferragu F., Durand S., Baleine J., Batista-Novais A.R., Cambonie G. Acta Paediatr. 2012 Dec 13.
Perfusion Index and Plethysmographic Variability Index in Patients with Interscalene Nerve Catheters
Sebastiani A., Philippi L., Boehme S., Closhen D., Schmidtmann I., Scherhag A., Markstaller K., Engelhard K., Pestel G. Can J Anaesth. 2012 Dec;59(12):1095-101.
Comparison between Pleth Variability Index and Arterial Pulse Pressure Variation in the Neurosurgical Intensive Care Unit (ICU)
Bhismadev T.K., Riahi T., Bernard O., Sesay M., Maurette P., Nouette-Gaulain K., Proceedings of the American Society of Anesthesiologists, October 13, 2012. Washington DC. A908.
Goal-Directed Fluid Optimization Based on Respiratory Variations in the Pulse Oximeter Plethysmographic Waveform during Moderate Risk Surgery
Thuraisingham D.A., Williams W., Ramsingh D., Le K., Lee C.K., Canales C., Cannesson M. Proceedings of the American Society of Anesthesiologists, October 13, 2012. Washington DC A847
Detection of Dehydration by Using Volume Kinetics
Zdolsek J., Li Y., Hahn R.G. Anesth Analg. 2012 Oct;115(4):814-22
Detection of Dehydration by Using Volume Kinetics
Zdolsek J., Li Y., Hahn R.G. Anesth Analg. 2012 Oct;115(4):814-22
Prediction of Volume Responsiveness using Pleth Variability Index in Patients Undergoing Cardiac Surgery after Cardiopulmonary Bypass
Haas S., Trepte C., Hinteregger M., Fahje R., Sill B., Herich L., Reuter D.A. J Anesth. 2012 Oct;26(5):696-701.
Plethysmographic VariabilityIndex: Everywhere for Everyone?
Desgranges F.P., Desebbe O. Anaesthesia. 2012 Oct;67(10):1175-6; author reply 1176-7.
Accuracy of Plethysmographic Indices as Predictors of Fluid Responsiveness in Mechanically Ventilated Adults: A Systematic Review and Meta-Analysis
Sandroni C., Cavallaro F., Marano C., Falcone C., De Santis P., Antonelli M. Intensive Care Med. 2012 Sep;38(9):1429-37.
Noninvasive Monitoring by Photoplethysmography
Sahni R. Clin Perinatol. 2012 Sep;39(3):573-83.
Use of Plethysmographic Variability Index Derived from the Masimo(®) Pulse Oximeter to Predict Fluid or Preload Responsiveness: A Systematic Review and Meta-Analysis
Yin J.Y., Ho K.M. Anaesthesia. 2012 Jul;67(7):777-83.
Dynamic variables of fluid responsiveness during pneumoperitoneum and laparoscopic surgery
Høiseth L.Ø., Hoff I.E., Myre K., Landsverk S.A., Kirkebøen K.A. Acta Anaesthesiol Scand. 2012 Jul;56(6):777-86.
Pulse oximeter plethysmograph variation and its relationship to the arterial waveform in mechanically ventilated children.
Chandler J.R., Cooke E., Petersen C., Karlen W., Froese N., Lim J., Ansermino J.M. J Clin Monit Comput. 2012 Jun;26(3):145-51.
External Pressure Applied on the Caval Vein and its Effects on Difference in Pulse Pressure (Dpp) and Pleth Variability Index (PVi).
Strys L.T., Closhen D., Fukui K., Günter H., Wilke W., Pestel G. EJA 2012; 29: May 2012 Supplement. Abs 643.
Plethysmographic Variability Index does not Predict Fluid Responsiveness in Cardiac Surgery Patients.
Fischer M.O., Rebet O., Lecrivain V., Gérard J.L., Hanouz J.L., Fellahi J.L. EJA 2012; 29: May 2012 Supplement. Abs 799.
Is the Pleth Variability Index a Surrogate for Pulse Pressure Variation in a Pediatric Population Undergoing Spine Fusion?
Feldman J.M., Sussman E., Singh D., Friedman B.J. Paediatr Anaesth. 2012 Mar;22(3):250-5.
Stroke Volume Variation and Pleth Variability Index to Predict Fluid Responsiveness during Resection of Primary Retroperitoneal Tumors in Hans Chinese
Fu Q., Mi W.D., Zhang H. Biosci Trends. 2012 Feb;6(1):38-43.
Increasing Heart Rate and Tidal Volume Increases Plethysmography Variability Index Values
Roeth N., Ball T., Atkins M., Bohannon W., Culp W., Johnston W. Crit Care Med 2012; 40(12): 267
Monitoring of Pleth Variability Index in Seriously Injured Combat Casualties.
Bridges, E. Am J Crit Care 2012;21: Abs. RS30
The Increase of Vasomotor Tone Avoids the Ability to Predict Fluid Responsiveness of the Dynamic Preload Indicators
Bouchacourt J.P., Grignola J.C., Riva1 J. BJA 2012; 108 (S2): paper no. 1098.0
Goal directed fluid optimization using Pleth variability index versus corrected flow time in cirrhotic patients undergoing major abdominal surgeries
Mohamed H. Abdullah, Ashraf S. Hasanin, Fatma M. Mahmoud, Volume 28, Issue 1, 2012, Pages 23-28, ISSN 1110-1849.
First Day of Life Reference Values for Pleth Variability Index in Spontaneously Breathing Term Newborns.
Latini G., Dipaola L., De Felice C. Neonatology. 2012;101(3):179-182.
Influence of the site of measurement on the ability of plethysmographic variability index to predict fluid responsiveness.
Desgranges F.P., Desebbe O., Ghazouani A., Gilbert K., Keller G., Chiari P., Robin J., Bastien O., Lehot J.J., Cannesson M. Br J Anaesth. 2011 Sep;107(3):329-35.
Time course changes in perfusion index and pleth variability index during electroconvulsive therapy.
Tokue A, Saito H, Suzue A, Kadoi Y, Saito S. Masui. 2011 Aug;60(8):929-35. Japanese. PubMed PMID: 21861418.
Impact of Skin Incision on the Pleth Variability Index.
Takeyama M, Matsunaga A, Kakihana Y, Masuda M, Kuniyoshi T, Kanmura Y. J Clin Monit Comput 2011Aug;25(4):215-21.
Non-invasive Prediction of Fluid Responsiveness in Infants Using Pleth Variability Index.
Renner J., Broch O., Gruenewald M., Scheewe J., Francksen H., Jung O., Steinfath M., Bein B. Anaesthesia. 2011 Jul;66(7):582-9.
Impact of norepinephrine on the relationship between pleth variability index and pulse pressure variations in ICU adult patients.
Biais M(1), Cottenceau V, Petit L, Masson F, Cochard JF, Sztark F. Crit Care. 2011 Jul 12;15(4):R168. doi: 10.1186/cc10310.
Impact of norepinephrine on the relationship between pleth variability index and pulse pressure variations in ICU adult patients.
Biais M(1), Cottenceau V, Petit L, Masson F, Cochard JF, Sztark F. Crit Care. 2011 Jul 12;15(4):R168. doi: 10.1186/cc10310.
Accuracy of the Pleth Variability Index to Predict Fluid Responsiveness Depends on the Perfusion Index.
Broch O., Bein B., Gruenewald M., Höcker J., Schöttler J., Meybohm P., Steinfath M., Renner J. Acta Anaesthesiol Scand. 2011 Jul;55(6):686-93.
Predicting Fluid Responsiveness in Mechanically Ventilated Children under General Anaesthesia using Dynamic Parameters and Transthoracic Echocardiography.
Pereira de Souza Neto E., Grousson S., Duflo F., Ducreux C., Joly H., Convert J., Mottolese C., Dailler F., Cannesson M. Br J Anaesth. 2011 Jun;106(6):856-64.
Plethysmography Variability Index: Comparison with Pulse Pressure Variation in Vascular Surgery.
Guinet P., Daviet L., Wodey E., Laviolle B., Ecoffey C. Eur J Anaesthesiol. 2011; May:1284.
Difference Between Pleth Variability Index Obtained from the Finger and the Forehead.
Matsunaga A., Kakihana Y., Kuniyoshi T., Kumemura M., Uchida Y., Kanmura Y. Eur J Anaesthesiol. 2011; May:1186.
What is the Best Site for Measuring the Pleth Variability Index (PVi) during a Surgery Procedure?
Pavlakovitch I., Desebbe O., Cannesson M., Bastien O., Lehot J.J. Eur J Anaesthesiol. 2011; May:Abs 1306.
Pleth Variability Index Predicts Fluid Responsiveness in Critically Ill Patients
Loupec T., Nanadoumgar H., Frasca D., Petitpas F., Laksiri L., Baudouin D., Debaene B., Dahyot-Fizelier C., Mimoz O. Crit Care Med. 2011 Feb;39(2):294-9.
Pleth Variability Index to Predict Fluid Responsiveness in Colorectal Surgery.
Hood J.A., Jonathan R., Wilson T. Anesth. Analg. 2011;113:1058–63.
Volume Responsiveness in Children, A Comparision of Static and Dynamic Indices.
Chandler J., Cooke E., Hosking M., Froesel N., Karlen W., Ansermino J. IARS 2011 Annual Meeting. S-200.
Changes in Stroke Volume Variation (SVV) and Pleth Variability Index (PVi) During Rapid Colloid Infusion.
Shimizu F., Hishinuma N., Shimizu S., Tanaka S., Kawamata M. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A869.
Can the Starting Pulse Oximeter-Derived Pleth Variability index (PVi) Predict Total Crystalloid Replacement during Isovolemic Hemodilution in Congenital Cardiac Surgery?
Naguib A.N., Winch P., Rice J., Tobias J. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A207.
Relationship between Differential Distribution of Blood Flow to Blocked or Unblocked Areas and the Extent of the Sensory Block in Spinal Anesthesia.
Imai E., Tanaka S., Kawamata T., Kawamata M. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A667.
The Effectiveness of Pleth Variability Index to Predict Hypotension Induced by Spinal Anesthesia for Cesarean Delivery.
Yoshioka M., Yamada, T., Miyake W., Tanaka K., Nishikawa K. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A960.
The Effects of Epidural Anesthesia on Difference in Pulse Pressure (dPP) and Pleth Variability Index (PVi).
Fukui K., Latz B., Markstaller K., Ikeda M., Pestel G. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A867.
The Ability of Pleth Variability Index to Predict Fluid Responsiveness in Mechanically Ventilated Patients under General Anaesthesia.
Cai Q.F., Mi W.D., Yuan W.X. Zhonghua Wai Ke Za Zhi. 2010 Nov 1;48(21):1628-32. [Article in Chinese]
Assessment of the effect of rapid crystalloid infusion on stroke volume variation and pleth variability index after a preoperative fast.
Wajima Z(1), Shiga T, Imanaga K, Inoue T. J Clin Monit Comput. 2010 Oct;24(5):385-9. doi: 10.1007/s10877-010-9259-8. Epub 2010 Aug 31.
Goal-Directed Fluid Management Based on the Pulse Oximeter-Derived Pleth Variability Index Reduces Lactate Levels and Improves Fluid Management
Forget P, Lois F, de Kock M. Anesth Analg. 2010 Oct;111(4):910-4.
Accuracy of Stroke Volume Variation Compared with Pleth Variability Index to Predict Fluid Responsiveness in Mechanically Ventilated Patients Undergoing Major Surgery
Zimmermann M., Feibicke T., Keyl C., Prasser C., Moritz S., Graf B.M., Wiesenack C. Eur J Anaesthesiol. 2010 Jun;27(6):555-61.
Pleth Variability Index Combined with Passive Leg Raising-Induced Pulse Pressure Variation to Detect Hypovolemia in Spontaneously Breathing Patients.
Schoonjans A., Forget P., Labriola L., Deneys V., Jadoul M., Pingaut I., De Kock M. Acta Anaesthesiol Belg. 2010;61(3):147-50.
The Ability of Pleth Variability Index to Predict the Hemodynamic Effects of Positive End-Expiratory Pressure in Mechanically Ventilated Patients Under General Anesthesia.
Desebbe O., Boucau C., Farhat F., Bastien O., Lehot J.J., Cannesson M. Anesth Analg. 2010 Mar 1;110(3):792-8.
Pulse Oximetry Plethysmographic Waveform Changes during Cesarean Section under Spinal Anesthesia.
Chassard D., Chandesris V., Rhondali O. Proceedings of the 2010 Annual Meeting of the American Society of Anesthesiologists. A1287.
Stroke Volume, Pulse Pressure, PVi and Pi during Spontaneous Ventilation in a Model of Hypovolemia.
Hoiseth L.O., Hoff I.E., Hisdal J., Landsverk S., Kirkeboen K.A. Proceedings of the 2010 Annual Meeting of the American Society of Anesthesiologists. A576.
Crossing the Threshold To Give a Fluid Bolus; Do We All Agree?
Koff M.D., Novak M.R., Richard K.M., Loftus R. W., Cannesson M. Proceedings of the 2010 Annual Meeting of the American Society Anesthesiologists; A037.
Pleth Variability Index Predicts Hypotension During Anesthesia Induction.
Tsuchiya M., Yamada T., Asada A. Acta Anesthesiol Scand. 2010 May;54(5):596-602.
Are Respiratory Induced Changes in Pulse Pressure and Pulse Oximeter Plethysmography Wave Amplitude Related in Ventilated Children?
Chandler J.R., Cooke E., Petersen C., Froese N., Lim J., Ansermino J. Anesth Analg. 2010; 110 (3):S-257.
The Change of Upper Limbs PVI in Spinal Block (The Comparison in High Spinal Block and Non-High Spinal Block).
Takeyama K., Yoshikawa M. Eur J Anaesthesiol. 2009; 26 (Suppl 45): 3AP5-1.
Evaluation of circulatory state using pulse oximeter: 2. PI (perfusion index)
PVI (pleth variability index). [Article in Japanese] Kaneda T(1), Suzuki T. Masui. 2009 Jul;58(7):860-5.
Does the Pleth Variability Index Correlate with Stroke Volume Variation?
Kawashima Y., Shiraishi Y., Sato S. Eur J Anesthesiol 2009; (suppl 45): 3AP5-9
Plethysmography Variability Index: A New Fluid Responsiveness Parameter.
Feissel M., Kalakhy R., Badie J., Robles G, Faller J., Teboul J.L. Critical Care 2009, 13(Suppl 1).
Does the Pleth Variability Index Indicate the Respiratory-Induced Variation in the Plethysmogram and Arterial Pressure Waveforms?
Cannesson M., Delannoy B., Morand A., Rosamel P., Attof Y., Bastien O., Lehot J.J. Anesth Analg. 2008 Apr;106(4):1189-94.
Effect of Preload Changes on Pleth Variability Index during Liver Transplants.
Lobo E., Niemann C., Talke P. Anesth Analg 2009; 108:S-171.
Pleth Variability Index to Monitor the Respiratory Variations in the Pulse Oximeter Plethysmographic Waveform Amplitude and Predict Fluid Responsiveness in the Operating Theatre
Cannesson M., Desebbe O., Rosamel P., Delannoy B., Robin J., Bastien O., Lehot J.J. Br J Anaesth. 2008 Aug;101(2):200-6.
Impact of Lower Extremity Nerve Blockade on Oximeter Perfusion Index & Pleth Variability Index.
Allred D.V., Shah N.K., Estanol L. Anesthesiology 2008; 109: A1603.
Ability of Pleth Variability Index to Detect Preload Changes in Orthotopic Liver Transplant Patients.
Wray C., Buckley J., Kwan D., Maktabi T., Mahajan A. Anesthesiology 2008; 109 A1605.
Ability of Pleth Variability Index to Detect Hemodynamic Changes Induced by Passive Leg Raising in Spontaneously Breathing Volunteers
Keller G., Cassar E., Desebbe O., Lehot J.J., Cannesson M. Crit Care. 2008;12(2):R37.
Use of Pleth Variability Index (PVi) to Detect Changes in Intrathoracic Pressure.
Goldstein M., Lopez M., Saesim D., Peverini R. Proceedings of the 2007 Annual Meeting of the American Association for Respiratory Care. A1287.
Low Tidal Volume Does Not Affect the Dynamic Indicators of Fluid Responsiveness
Bouchacourt J.P. BJA 108 (S2): paper no. 1094.0
Use of PVI for Guidance of Fluid Management during Major Abdominal Surgery
Lahner D., Kabon B., Muhlbacher J., Fleischmann E., Hetz H. BJA 108 (S2): paper no. 480.00
Masimo® Plethysmograph Variability Index as a Tool for Assessment of Fluid Responsiveness in Elective Major Abdominal Surgeries
Ahmed M. Essam, Mohamed Z. Ali, Mohamed A. Maher, Ali M. Mokhtar, Sohila H. Omar, Hossam H. El-Sabae and Mohame British Journal of Medicine and Medical Research, ISSN: 2231-0614,Vol.: 16, Issue.: 2d H. Hafez.
-- SpCO
Assessment of carbon monoxide inhalational poisoning in flame burned patients at a Kenyan National Hospital
Mackutwa et al. Burns Open 2021;(5)2:81-84.
Carbon Monoxide Exposure in Norwegian Rescue Helicopters.
Busch M. Air Med J. 2015 Nov-Dec;34(6):328-32. doi: 10.1016/j.amj.2015.06.010. PubMed PMID: 26611218.
Pulse CO-Oximetry - Clinical Impact in the Emergency Department
Exadaktylos A, Braun CT, Ziaka M, Trends in Anaesthesia and Critical Care (2014), doi: 10.1016 j.tacc.2014.07.002.
Prevalence of Carbon Monoxide Poisoning in Patients Presenting to a Large Emergency Department
Roth D., Schreiber W., Herkner H., Havel C. Int J Clin Pract. 2014 Apr 2.
Correlation between Environmental Factors and Carboxyhemoglobin Levels in Pediatric Patients
Koyuncu O., Turhanoglu S., Tuzcu K., Oksar M., Akbay E., Turan A. Euroanesthesia 2014: Abstract 10AP2-5.
Correlation of Carboxyhemoglobin Levels and Secondhand Smoking Related Complications in Pediatric Tonsillectomy Patients
Koyuncu O., Turhanoglu S., Davarcı I., Cevik C., Sessler D.I. Euroanesthesia 2014: Abstract 10AP2-6.
Carbon Monoxide Poisoning in Patients Presenting to the Emergency Department with a Headache in Winter Months.
Zorbalar N., Yesilaras M., Aksay E. Emerg Med J. 2013 Oct 15.
SpCO: Let's Not Throw the Baby Out With the Bath Water--Reply
Richards J.B., Wilcox S.R. Respir Care. 2013 Oct;58(10):e130-1.
SpCO: Let's Not Throw the Baby Out With the Bath Water--Reply
Weaver L.K., Churchill S.K., Deru K. Respir Care. 2013 Oct;58(10):e130.
SpCO: Let's Not Throw the Baby Out With the Bath Water
McEvoy M. Respir Care. 2013 Oct;58(10):e129-30.
Carbon Monoxide Treatment Guidelines Must Acknowledge the Limitations of the Existing Evidence.
Buckley N.A., Juurlink D.N. Am J Respir Crit Care Med. 2013 Jun 15; 187(12):1390. Reply: Hampson N.B., Piantadosi C.A., Thom .SR., Weaver L.K. Am J Respir Crit Care Med. 2013 Jun 15;187(12):1390-1.
Elevated Carboxyhemoglobin in Active Asthma and Allergic Rhinitis as Measured by Pulse CO-Oximetry
Kurlandsky L.E. Pediatr Allergy Immunol Pulmonol. 2013;26(1) DOI: 10.1089/ped.2012.0201
Emergency Department Management of Suspected Carbon Monoxide Poisoning: Role of Pulse CO-Oximetry
Sebbane M., Claret P.G., Mercier G., Lefebvre S., Thery R., Dumont R., Maille M., Richard J. P., Eledjam J. J., de La Coussaye, G.E. Respir Care. 19 March 2013
Practice Recommendations in the Diagnosis, Management, and Prevention of Carbon Monoxide Poisoning.
Hampson N.B., Piantadosi C.A., Thom S.R., Weaver L.K. Am J Respir Crit Care Med. 2012;;186(11):1095-101.
Accuracy of Carboxyhemoglobin Detection by Pulse CO-Oximetry during Hypoxemia
Feiner J.R., Rollins M.D., Sall J.W., Eilers H., Au P., Bickler P.E. Anesth Analg. 2013 Mar 11.
Screening for Carbon Monoxide Exposure in Selected Patient Groups Attending Rural and Urban Emergency Departments in England: A Prospective Observational Study
Clarke S., Keshishian C., Murray V., Kafatos G. , Ruggles R., Coultrip E., Oetterli S., Earle D., Ward P., Bush S., Porter C., for the Carbon Monoxide in Emergency Departments (COED) Working Group. BMJ Open 2012 Dec 13;2(6)
Association of Transcutaneous Carbon Monoxide and Bilirubin Levels in Healthy Term Newborns
Gonulal D., Bilgin B., Altun Koroglu O., Yalaz M., Kultursay N. Arch Dis Child 2012;97:A379
Evaluation of Inflamation in Bronchopulmonary Disease with Transcutaneous Carboxihemoglobin Measurement- Preliminary Results
Gonulal D., Yalaz M., Terek D., Altun Koroglu O., Uygur O., Kultursay N. Arch Dis Child 2012;97:A174.
Noninvasive Measurement of Carboxyhemoglobin in Cystic Fibrosis Patients by Pulse CO-Oximeter.
Kurlandsky L.E., Anbar R.D., Soultan Z.N. Pediatr Allergy Immunol Pulmonol. 2012; 25(2): 101-103.
Noninvasive Carbon Monoxide Detection: Insufficient Evidence for Broad Clinical Use
Susan R Wilcox and Jeremy B Richards Respir Care. 2013; 58(2): p. 376-379
False Positive Rate of Carbon Monoxide Saturation by Pulse Oximetry of Emergency Department Patients.
Weaver L.K., Churchill S.K., Deru K., Cooney D. Respir Care. 2013 Feb;58(2):232-40.
Comparison of Pulse Carbon Monoxide Oximetry with Laboratory Carbon Monoxide Oximetry Regarding the Time to Diagnosis and Treatment of Patients with Carbon Monoxide Poisoning: Is it a Reasonable and Necessary Comparison?
Sanaei-Zadeh, H. Am J Emerg Med 2012 Oct;30(8):1652-3. .
Noninvasive Pulse CO-Oximetry Expedites Evaluation and Management of Patients with Carbon Monoxide Poisoning.
Hampson N.B. Am J Emerg Med. 2012 Nov;30(9):2021-4.
The Measurement of Carboxyhemoglobin and Methemoglobin using a Non-Invasive Pulse CO-Oximeter.
Zaouter C., Zavorsky G.S. Respir Physiol Neurobiol. 2012 May 15;182(2-3):88-92.
Screening by Pulse CO-Oximetry for Environmental Tobacco Smoke Exposure in Preanesthetic Children.
Cardwell K., Pan Z., Boucher R., Zuk J., Friesen R.H. Paediatr Anaesth. 2012 Sep;22(9):859-64.
The Current Status of Continuous Noninvasive Measurement of Total, Carboxy, and Methemoglobin Concentration.
Shamir M.Y., Avramovich A., Smaka T. Anesth Analg. 2012 May;114(5):972-8.
Non-Invasive Measurements of Carboxyhemoglobin and Methemoglobin in Children with Sickle Cell Disease.
Caboot J.B., Jawad A.F., McDonough J.M., Bowdre C.Y., Arens R., Marcus C.L., Mason T.B., Smith-Whitley K., Ohene-Frempong K., Allen J.L. Pediatr Pulmonol. 2012 Aug;47(8):808-15.
Mass Sociogenic Illness Initially Reported as Carbon Monoxide Poisoning.
Nordt S.P., Minns A., Carstairs S., Kreshak A., Campbell C., Tomaszweski C., Hayden S.R., Clark R.F., Joshua A., Ly B.T. J Emerg Med. 2012 Feb;42(2):159-61.
Determination of Blood Volume by Pulse CO-Oximetry.
Lalande S., Kelsey J.W., Joyner M.J., Johnson B.D. Physiol Meas. 2011 Dec 7;33(1):19-27.
Carbon Monoxide Poisoning: Case Studies and Review.
Ruth-Sahd L.A., Zulkosky K., Fetter M.E. Dimens Crit Care Nurs. 2011 Nov;30(6):303-314.
Noninvasive Carbon Monoxide Screening for Environmental Tobacco Smoke Exposure in Children.
Friesen R.H., Cardwell K., Zuk J., Pan Z. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A1522.
Repeatability and Accuracy of Carboxyhemoglobin Measurement by Pulse CO-Oximetry in Children.
Friesen, R.H., Cardwell K., Zuk J., Pan Z. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A1128.
Multi-Wavelength Pulse Oximeter Is Not Suitable for Adjusting DLCO Measurements.
Ruppel G.L., Wilson H.A., Gall V.K., Hempkens J.A. Respir Care. 1 Aug 2011 56(8): 1115-21.
Noninvasive Measurement of Carbon Monoxide Burden in Guatemalan Children and Adults following Wood-fired Temazcal (Sauna-bath) Use.
Lam N., Nicas M., Ruiz-Mercado I., Thompson L.M., Romero C., Smith K.R. J Environ Monit. 2011 Aug;13(8):2172-81.
The Detection of Changes in Carboxyhemoglobin Levels in Asthmatics.
Naples R., Laskowski D., McCarthy K., Mattox E., Comhair S.A.A., Erzurum S.C. Am J Respir Crit Care Med. 2011; 183: A4454.
Accuracy of Noninvasive Multiwave Pulse Oximetry Compared With Carboxyhemoglobin From Blood Gas Analysis in Unselected Emergency Department Patients.
Roth D., Herkner H., Schreiber W., Hubmann N., Gamper G., Laggner A.N., Havel C. Ann Emerg Med. 2011 Jul;58(1):74-9.
Diagnosis and management of carbon monoxide poisoning in the emergency department.
Nikkanen H, Skolnik A. Emerg Med Pract. 2011 Feb;13(2):1-14
Pulse Carboxyhemoglobin-Oximetry and Cigarette Smoking.
Sokolova-Djokić L., Milosević S., Skrbić R., Salabat R., Voronov G., Igić R. J BUON. 2011 Jan-Mar; 16(1):170-3.
Performance of the RAD-57 Pulse CO-Oximeter Compared with Standard Laboratory Carboxyhemoglobin Measurement.
Touger M., Birnbaum A., Wang J., Chou K., Pearson D., Bijur P. Ann Emerg Med. 2010 Oct;56(4):382-8.
Performance of the Rad-57 Pulse Co-Oximeter Compared With Standard Laboratory Carboxyhemoglobin Measurement.
O'Reilly M. Ann Emerg Med. 2010 Oct;56(4):442-4.
Non-invasive Carboxyhemoglobin Monitoring: Screening Emergency Medical Services Patients for Carbon Monoxide Exposure.
Nilson D., Partridge R., Suner S., Jay G. Prehosp Disaster Med. 2010;25(3):253–256.
Use of Pulse CO-Oximetry as a Screening and Monitoring Tool in Mass Carbon Monoxide Poisoning.
Bledsoe B.E., Nowicki K., Creel J.H., Carrison D., Severance H.W. Prehosp Emerg Care. 2010 Jan-Mar;14(1):131-3.
Second-Hand Smoking and Carboxyhemoglobin Levels in Children: A Prospective Observational Study.
Yee B.E., Ahmed M.I., Brugge D., Farrell M., Lozada G., Idupaganthi R., Schumann R. Paediatr Anaesth. 2010 Jan;20(1):82-9.
A New Tool for the Early Diagnosis of Carbon Monoxide Intoxication.
Piatkowski A., Ulrich D., Grieb G., Pallua N. Inhal Toxicol. 2009 Nov;21(13):1144-7.
Victim of Carbon Monoxide Poisoning Identified by Carbon Monoxide Oximetry.
Roth D., Hubmann N., Havel C., Herkner H., Schreiber W., Laggner A. J Emerg Med. 2011 Jun;40(6):640-2. Epub 2009 Jul 17.
Association of Carboxyhemoglobin Levels with Clinical Measures of Acute Asthma Severity.
Arnold D.H., Gebretsadik T., Resha D.J., Hartert T. Proceedings of the 2009 Pediatric Academic Societies. E-PAS2009:5725.7.
Non-Invasive Measurements of Carboxyhemoglobin and Methemoglobin in Pediatric Patients with Sickle Cell Disease.
Caboot J.B., Jawad A.F., McDonough J.M., Bowdre C.Y., Ohene-Frempong K., Smith-Whitley K., Allen J.L. Am J of Respir Crit Med. 2009; 179: A4788.
Masimo Rad-57 Pulse CO-Oximeter for Noninvasive Carboxyhemoglobin Measurement.
Suner S., McMurdy J. Expert Rev Med Devices. 2009 Mar;6(2):125-30.
Finding Needles in a Haystack: A Case Series of Carbon Monoxide Poisoning Detected Using New Technology in the Emergency Department.
Chee K.J., Nilson D., Partridge R., Hughes A., Suner S., Sucov A., Jay G. Clin Toxicol. 2008 Jun;46(5):461-9.
Noninvasive Pulse CO-Oximetry Screening in the Emergency Department Identifies Occult Carbon Monoxide Toxicity.
Suner S., Partridge R., Sucov A., Valente J., Chee K., Hughes A., Jay G. J Emerg Med. 2008 May;34(4):441-50.
Fire and Ice: Diagnosis of Carbon Monoxide Poisoning in a Remote Environment.
Crawford D.M., Hampson N.B. Emerg Med J. 2008 Apr;25(4):235-6.
Carbon Monoxide Pulse Oximetry vs Direct Spectrophotometry for Early Detection of CO Poisoning.
Kot J., Sićko Z., Góralczyk P. Anestezjol Intens Ter. 2008 Apr-Jun;40(2):75-8. [Polish].
Reliability of New Pulse CO-Oximeter in Victims of Carbon Monoxide Poisoning.
Coulange M., Barthelemy A., Hug F., Thierry A.L., De Haro L. Undersea Hyperb Med. 2008 Mar-Apr;35(2):107-11.
The Noninvasive Carboxyhemoglobin Monitoring of Firefighters Engaged in Fire Suppression and Overhaul Operations.
Dickinson E.T., Mechem C.C., Thom S.R., Shofer F.S., Band R.A. Prehosp Emerg Care. 2008: 12(1):4.
The Incidence of Carbon Monoxide Poisoning During CO Alarm Investigations.
Hostler D., Roth R.N., Kaufman R.E., Katz K.D., Brooks D.E., Pizon A.F., O'Toole K. Prehosp Emerg Care. 2008; 12(1):48.
Noninvasive Measurement of Carboxyhemoglobin Levels for Adjustment of Diffusion Capacity Measured During Pulmonary Function Testing.
Mahoney A.M., Stimpson C.L., Scott K.L., Hampson N.B. Respir Care. 2007 Dec;52(12):1741-3.
The Usefulness of Noninvasive CoHb Monitoring at HBOT Department (Pulse CO-Oximetry Rad-57).
Nakashima M., Ifuku T., Hibino H., Shima H., Tamehiro K., Takamatsu J. Crit Care Med. 2007; 35(12): A85.
Carboxyhemoglobin Levels in Smokers vs. Non-Smokers in a Smoking Environment.
Light A., Grass C., Pursley D., Krause J. Respir Care. 2007; 52(11): 1576.
Clinical Analyses of 429 Cases of Acute CO Poisoning.
Li Z., Gao C., Huang M.E.X., Wang G., Ge H. Anesthesiology. 2007; 107: A1490.
Carboxyhemoglobin monitored by bedside continuous CO-Oximetry.
Plante T., Harris D., Savitt J., Akhlaghi F., Monti J., Jay G.D. J Trauma. 2007 Nov;63(5):1187-90.
Detection of CO-Poisoning Through Pulse CO-Oximetric Measurement.
Marx F. Respir Care. 2007; 52(11): 225.
Noninvasive Pulse CO-Oximetry as a Tool to Detect Smoking Status in an Outpatient Setting.
Reddy A.P., Zaremba M.L., Reddy S.P. Chest. 2007; 132: 490.
Carboxyhemoglobin Elevation Due to Hemolytic Anemia.
Hampson N.B. J Emerg Med. 2007 Jul;33(1):17-9.
Measurement of Carboxyhemoglobin and Methemoglobin by Pulse CO-Oximetry: A Human Volunteer Study.
Barker S.J., Curry J., Redford D., Morgan S. Anesthesiology. 2006 Nov;105(5):892-7.
Evaluation of a New Pulse CO-Oximeter: Noninvasive Measurement of Carboxyhemoglobin in the Outpatient Pulmonary Lab and Emergency Departments.
Layne T., Snyder C., Brooks D., Enjeti S. Respir Care. 2006;51(11):1333.
Noninvasive Carboxyhemoglobin Monitoring: Screening Emergency Department Patients for Carbon Monoxide Exposure.
Partridge R., Chee K.J., Suner S., Sucov A., Jay G.D. Respir Care. 2006; 51(11):1332.
Unsuspected Carbon Monoxide Toxicity Detected by Noninvasive Monitoring: A Case Report.
Partridge, R., Chee K.J., Suner S., Sucov A., Jay G.D. Respir Care. 2006;51(11):1324.
Use of a Noninvasive Pulse CO-Oximeter to Measure Blood Carboxyhemoglobin Levels in Bingo Players.
Hampson N.B., Scott K.L. Respir Care. 2006 Jul;51(7):758-60.
Comparison of the Masimo Rad-57 Pulse Oximeter with SpCO Technology against a Laboratory CO-Oximeter Using Arterial Blood.
Mottram C.D., Hanson L.J., Scanlon P.D. Respir Care. 2005;50(11):1471.
-- SpHb
Evaluation of the use of non-invasive hemoglobinmeasurement in early childhood
Arai Y, Shoji H, Awata K, Inage E, Ikuse T, Shimizu T. Pediatr Res. 2022 Jul 29. doi: 10.1038/s41390-022-02204-7.
Evaluation of plethysmographic variability index and hemoglobin monitoring in patients who underwent laparoscopic cholecystectomy
Koca E. Eur Rev Med Pharmacol Sci. 2022 Jul;26(13):4762-4769. doi: 10.26355/eurrev_202207_29201.
Need of packed red blood transfusion before and after the inclusion of intraoperative continuous noninvasive hemoglobin monitoring technology in a real-life setting in a developing country
OIivero-Vasquez Y, Reyes-Perez RA, Gonzalez-Navarro P, Torres-Torres J, JMartinez-Portilla RJ. NATA Symposium on Patient Blood Management, Haemostasis and Thrombosis. 2022 April: 47.
Noninvasive Hemoglobin Measurement Reduce Invasive Procedures in Thalassemia Patients
Bıcılıoğlu Y, Alkan Bal A, Yenigürbüz FD, Esin Ergonul E, Geter S, Kazanasmaz H, Bal U. Hemoglobin. 2022. doi: 10.1080/03630269.2022.2078726.
Is Continuous Noninvasive Hemoglobin Monitoring Estimates Timing for Detection of Anemia During Operation better than Clinicians
Aziz SO, Saadoon AS. Medico Legal Update. 2022;22(2),31:41. doi:/10.37506/mlu.v22i2.3229
Continuous hemoglobin measurement during frontal advancement operations can improve patient outcomes
Saracoglu, A., Abdullayev, R., Sakar, M. et al. J Clin Monit Comput. 2022. doi:10.1007/s10877-022-00813-5
Accuracy and precision of non-invasive continuous haemoglobin concentration monitoring in diabetic patients
De Rosa, R., Romanelli, A. Ain-Shams J Anesthesiol. 2022;14, 4. doi:10.1186/s42077-021-00201-2
Postoperative Noninvasive Hemoglobin Monitoring Is Useful to Prevent Unnoticed Postoperative Anemia and Inappropriate Blood Transfusion in Patients Undergoing Total Hip or Knee Arthroplasty: A Randomized Controlled Trial.
Nakamori E, Shigematsu K, Higashi M, Yamaura K. Geriatr Orthop Surg Rehabil. 2021 Nov 19;12:21514593211060575.
Monitoring of plethysmography variability index and total hemoglobin levels during cesarean sections with antepartum hemorrhage for early detection of bleeding.
Elsakka A, Hossam W, Helmy G, Helmy N. Egyptian Journal of Anaesthesia. Volume 33, Issue 1, 2017, Pages 5-8.
Accuracy of non-invasive haemoglobin measurements in patients undergoing transurethral resection of prostate surgery.
Selvaraj N, Jain G, Tripathy DK, Mittal A, Indulekha H. Indian J Anaesth. 2021;65(Suppl 2):S62-S68. doi:10.4103/ija.IJA_1067_20
Blood transfusion decisions cannot be based on percutaneous haemoglobin measurements
Spronk A, de Jong R, Koopman S, Hoeks S, Jan Stolker R. Anaesthesiol Intensive Ther. 2021;43933.
Can perioperative hemodilution be monitored with non-invasive measurement of blood hemoglobin?
Hahn RG, Wuethrich PY, Zdolsek JH. BMC Anesthesiol. 2021;21(1):138. Published 2021 May 6.
Postoperative patient blood management: transfusion appropriateness in cancer patients.
Merolle L, Marraccini C, Di Bartolomeo E, Montella MT, Pertinhez TA, Baricchi R, Bonini A. Blood Transfus. 2020 Sep;18(5):359-365.
Efficacy of noninvasive hemoglobin measurement by pulse co-oximetry in neonates.
Jamal, Ahmed, and Biju John Journal of Clinical Neonatology, vol. 9, no. 1, 2020, p. 57. Accessed 10 Aug. 2020.
Kazanasmaz H, Demir M. Journal of Tropical Pediatrics, fmaa050,
Accuracy and trending ability of hemoglobin measurement by the Pulse CO-Oximeter during vascular surgery.
De Rosa RC et al. J Clin Monit Comput. 2020 Jun;34(3):501-508.
Patient Blood Management: transfusion appropriateness in the post-operative period.
Di Bartolomeo E, Merolle L, Marraccini C, Canovi L, Berni P, Guberti M, Mazzi A, Bonini A, Romano N, Magnani A, Pertinhez TA, Baricchi R. Blood Transfus. 2019 Nov;17(6):459-464.
Multicenter comparison of three intraoperative hemoglobin trend monitoring methods.
Applegate et al. J Clin Monit Comput. 2019 Dec 3. doi: 10.1007/s10877-019-00428-3.
Effect of Noninvasive Hemoglobin Monitoring on Postoperative Anemia and Inappropriate Blood Transfusion in Patients Undergoing Total Hip Arthroplasty and Total Knee Arthroplasty: A Randomized Controlled Study
Erisa Nakamori, M.D., Kouhei Iwashita, M.D., Midoriko Higashi, M.D., Ken Yamaura, M.D. Fukuoka University, Fukuoka, Japan
Delay in detection and treatment of perioperative anemia in hip fracture surgery and its impact on postoperative outcomes
Clemmesen CG et al. Injury 2019; https://doi.org/10.1016/j.injury.2019.09.001
Continuous hemoglobin and plethysmography variability index monitoring can modify blood transfusion practice and is associated with lower mortality
Cros, J., Dalmay, F., Yonnet, S. et al. J Clin Monit Comput (2019). https://doi.org/10.1007/s10877-019-00367-z
Continuous Noninvasive Hemoglobin Monitoring Reflects the Development of Acute Hemodilution After Consecutive Fluid Challenges.
Bubenek-Turconi ŞI, Văleanu L, Popescu M, Panaitescu E, Tomescu D, Cacoveanu MC, Perel A. Anesth Analg. 2019 Jul 9. doi: 10.1213/ANE.0000000000004323.
Continuous noninvasive hemoglobin monitoring estimates timing for detecting anemia better than clinicians: a randomized controlled trial.
Tang B, Yu X, Xu L, Zhu A, Zhang Y, Huang Y.
BMC Anesthesiol. 2019 May 17;19(1):80.
doi:10.1186/s12871-019-0755-1.
Accuracy of Point-of-Care Testing for Anemia in the Emergency Department
Osborn ZT, Villalba N, Derickson PR, Sewatsky TP, Wager AP, Freeman K.
Respir Care. 2019 Mar 26. pii: respcare.06364. doi: 10.4187/respcare.06364.
Optimization of cardiac output by incremental fluid administration is associated with iatrogenic hemodilution and a paradoxical decrease in oxygen delivery.
Bubenek S, Valeanu L, Popescu M, Cacoveanu M, Tomescu D, and Perel A. Proceedings from Euroanaesthesia 2018, Copenhagen, Denmark.
Accuracy of haemoglobin estimation by non-invasive Pulse Co-oximetry method: A prospective observational study among Neonates, Children and Young Adults.
Panda P, Monimala Sen. J Med Res 2018; 4(1):10-15.
Economic Analysis of the Reduction of Blood Transfusions during Surgical Procedures While Continuous Hemoglobin Monitoring Is Used.
Ribed-Sánchez B, González-Gaya C, Varea-Díaz S, Corbacho-Fabregat C, Pérez-Oteyza J, Belda-Iniesta C. Sensors (Basel). 2018 Apr 27;18(5).
Noninvasive hematocrit assessment for cardiovascular magnetic resonance extracellular volume quantification using a point-of-care device and synthetic derivation.
Robison S, Karur GR, Wald RM, Thavendiranathan P, Crean AM, Hanneman K. J Cardiovasc Magn Reson. 2018 Mar 15;20(1):19.
Continuous hemoglobin monitoring in pediatric trauma patients with solid organ injury.
Welker E, Novak J, Jelsma L, Koehler T, Davis A, DeCou J, Durkin E. J Pediatr Surg. 2017 Dec 27. pii: S0022-3468(17)30842-4.
An evaluation of hemoglobin measurement tools and their accuracy and reliability when screening for child anemia in Rwanda: A randomized study.
Parker M, Han Z, Abu-Haydar E, Matsiko E, Iyakaremye D, Tuyisenge L, Magaret A, Lyambabaje A. PLoS One. 2018 Jan 4;13(1):e0187663.
Noninvasive Measurement of Hemoglobin Using Spectrophotometry: Is it Useful for the Critically Ill Child?
Akyildiz B.J Pediatr Hematol Oncol. 2018 Jan;40(1):e19-e22. doi: 10.1097/MPH.0000000000001038.
The Clinical Utility of Noninvasive Pulse Co-oximetry Hemoglobin Measurements in Dark Skinned Critically Ill Patients.
Murphy SM, Omar S. Anesth Analg. 2017 Dec 11. doi: 10.1213/ANE.0000000000002721. [Epub ahead of print] PubMed PMID: 29239951
Can noninvasive hemoglobin measurement reduce the need for preoperative venipuncture in pediatric outpatient surgery?
Zeng R, Svensen CH, Li H, Xu X, Skoog Svanberg A, Liu H, Li Y, Shangguan W, Lian Q. Paediatr Anaesth. 2017 Nov;27(11):1131-1135.
Evaluation of Noninvasive Hemoglobin Monitoring in Surgical Critical Care Patients.
Xu T, Yang T, Kim JB, Romig MC, Sapirstein A, Winters BD. Crit Care Med. 2016 Jun;44(6):e344-52.
Impact of acute changes in perfusion index and blood pressure on the accuracy of non-invasive continuous hemoglobin concentration measurements during induction of anesthesia.
Saito J, Kitayama M, Amanai E, Toyooka K, Hirota K. J Anesth 2017 Apr;31(2):193-197.
Impact of Continuous Perioperative SpHb Monitoring
Nathan et al. Proceedings of the American Society of Anesthesiologists 2016 Annual Congress Chicago, Illinois.
The Value of Continuous Noninvasive Hemoglobin Monitoring in Intraoperative Blood Transfusion Practice during Abdominal Cancer Surgery
Kamal AM et al. Open J Anesth 2016;13-19.
Point-of-Care Hemoglobin/Hematocrit Testing: Comparison of Methodology and Technology.
Maslow A, Bert A, Singh A, Sweeney J. J Cardiothorac Vasc Anesth. 2016 Apr;30(2):352-62.
Invasive versus noninvasive hemoglobin measurement by pulse CO-Oximeter in neonates admitted to NICU
Hetal Vora et al. NHL Journal of Medical Sciences/Jan 2014/Vol 3/Issue 1
Results of a Prospective Study Evaluating a Noninvasive Method of Hemoglobin Adjustment for Determining the Diffusing Capacity of the Lung.
Foster KE et al. Ann Am Thorac Soc. 2017 Jan;14(1):41-48.
Poor Validity of Noninvasive Hemoglobin Measurements by Pulse Oximetry Compared with Conventional Absorptiometry in Children in Côte d'Ivoire.
Bogoch II et al. Am J Trop Med Hyg. 2017 Jan 11;96(1):217-220. doi: 10.4269/ajtmh.16-0505. Epub 2016 Nov 14.
Noninvasive Hemoglobin Monitoring
Joseph B et al. Int Journal Surgery 2016; 33(B)254:257.
Perioperative calibration of noninvasive hemoglobin monitoring.
Kalmar AF, Poterman M, Scheeren TW. Anesth Analg. 2014 Feb;118(2):481.
Noninvasive hemoglobin measurement in pregnancy.
Bourke M, Cooley SM, McMorrow R, McAuliffe FM. Int J Gynaecol Obstet. 2014 Apr;125(1):78-9.
Continuous noninvasive hemoglobin monitoring: ready for prime time?
Suehiro K, Joosten A, Alexander B, Cannesson M. Curr Opin Crit Care. 2015 Jun;21(3):265-70.
Trends of Hemoglobin Oximetry: Do They Help Predict Blood Transfusion During Trauma Patient Resuscitation?
Yang S, Hu PF, Anazodo A, Gao C, Chen H, Wade C, Hartsky L, Miller C, Imle C, Fang R, Mackenzie CF. Anesth Analg. 2016 Jan;122(1):115-25.
Evaluation of multiwave pulse total-hemoglobinometer during general anesthesia.
Toyoda D, Yasumura R, Fukuda M, Ochiai R, Kotake Y. J Anesth. 2014 Jun;28(3):463-6.
Effects of indigo carmine intravenous injection on noninvasive and continuous total hemoglobin measurement with using the Revision L sensor.
Isosu T et al. J Clin Monit Comput. 2017 Apr;31(2):485-486. doi:10.1007/s10877-016-9850-8. Epub 2016 Feb 22. PubMed PMID: 26898593
Effects of indigo carmine intravenous injection on noninvasive and continuous total hemoglobin measurement.
Isosu T et al. J Clin Monit Comput. 2016 Jun;30(3):313-6. doi: 10.1007/s10877-015-9719-2. Epub 2015 Jun 17. PubMed PMID: 26076807
Noninvasive Continuous Hemoglobin Monitoring in Combat Casualties: A Pilot Study.
Bridges E, Hatzfeld JJ. Shock. 2016 Sep;46(3 Suppl 1):55-60.
Continuous Noninvasive Hemoglobin Monitoring: A Measured Response to a Critical Review.
Barker SJ, Shander A, Ramsay MA. Anesth Analg. 2016 Feb;122(2):565-72.
Validity of non-invasive point-of-care hemoglobin estimation in healthy and sick children-a method comparison study.
Bhat A, Upadhyay A, Jaiswal V, Chawla D, Singh D, Kumar M, Yadav CP. Eur J Pediatr. 2016 Feb;175(2):171-9. doi: 10.1007/s00431-015-2602-9. PubMed PMID: 26286814.
The measurement of dyshemoglobins and total hemoglobin by pulse oximetry.
Barker SJ, Badal JJ. Curr Opin Anaesthesiol. 2008 Dec;21(6):805-10. doi:10.1097/ ACO.0b013e328316bb6f. Review. PubMed PMID: 18997533.
Noninvasive Hemoglobin Monitoring: A Rapid, Reliable, and Cost-Effective Method Following Total Joint Replacement.
Martin JR, Camp CL, Stitz A, Young EY, Abdel MP, Taunton MJ, Trousdale RT. J Bone Joint Surg Am. 2016 Mar 2;98(5):349-55.
Utility of non-invasive haemoglobin monitoring in oncosurgery patients.
Gupta N, Kulkarni A, Bhargava AK, Prakash A, Gupta N. Indian J Anaesth. 2017 Jul;61(7):543-548. doi: 10.4103/ija.IJA_707_16. PubMed PMID: 28794525; PubMed Central PMCID: PMC5530738.
Evaluation of Non-Invasive Hemoglobin Monitoring in Trauma Patients with Low Hemoglobin Levels.
Gamal M, Abdelhamid B, Zakaria D, Dayem OAE, Rady A, Fawzy M, Hasanin A. Shock. 2017 Jul 19. doi: 10.1097/SHK.0000000000000949. [Epub ahead of print] PubMed PMID: 28727608.
Comprehensive Analysis of Liberal and Restrictive Transfusion Strategies in Pediatric Intensive Care Unit.
J Trop Pediatr. 2017 May 30. doi: 10.1093/tropej/fmx037. [Epub ahead of print] Akyildiz B, Ulgen Tekerek N, Pamukcu O, Dursun A, Karakukcu M, Narin N, Yay M, Elmali F.
Influence of Fraction of Inspired Oxygen on Noninvasive Hemoglobin Measurement: Parallel Assessment of 2 Monitors.
Gayat E, Imbert N, Roujansky A, Lemasle L, Fischler M. Anesth Analg. 2017 Jun;124(6):1820-1823.
Noninvasive hemoglobin monitoring in critically ill pediatric patients at risk of bleeding.
García-Soler P, Camacho Alonso JM, González-Gómez JM, Milano-Manso G. Med Intensiva. 2017 May;41(4):209-215.
Validation of Masimo Pronto 7 and HemoCue 201 for hemoglobin determination in children from 1 to 5 years of age
Shamah Levy T, Méndez-Gómez-Humarán I, Morales Ruán MdC, Martinez Tapia B, Villalpando Hernández S, Hernández Ávila M (2017) PLoS ONE12(2): e0170990.
Impact of Oxygenation Status on the Noninvasive Measurement of Hemoglobin
Gomaa D, Rodriquez D Jr, Petro M, Blakeman TC, Branson RD. Mil Med. 2017 Mar;182(S1):87-91.
Accuracy Of Non-Invasive Hemoglobin Monitoring By Pulse Co-Oximeter During Liver Transplantation.
Kayhan et al. Minerva Anestesiologica 2017.
Noninvasively Measured Hemoglobin Concentration Reflects Arterial Hemoglobin Concentration Before but Not After Cardiopulmonary Bypass in Patients Undergoing Coronary Artery or Valve Surgery
Riess ML, Pagel PS. J Cardiothorac Vasc Anesth. 2016 Mar 24.
Noninvasive hemoglobin measurement in pediatric trauma patients.
Ryan ML, Maxwell AC, Manning L, Jacobs JD, BachierRodriguez M, Feliz A, Williams RF. J Trauma Acute Care Surg. 2016 Jul 6. [Epub ahead of print] PubMed PMID: 27389126.
Does a digital regional nerve block improve the accuracy of noninvasive hemoglobin monitoring?
Miller RD, Ward TA, McCulloch CE, Cohen NH.J Anesth. 2012 Dec;26(6):845-50. doi: 10.1007/s00540-012-1452-0.
Assessing serum hemoglobin levels without venipuncture: accuracy and reliability of Pronto-7 noninvasive spot-check device.
DeBarros M, Shawhan R, Bingham J, Sokol K, Izenberg S, Martin M. Am J Surg. 2015 Mar 27. pii: S0002-9610(15)00115-4. doi: 10.1016/j.amjsurg.2015.01.014. [Epub ahead of print] PubMed PMID: 25869336.
Evaluation of a Noninvasive Hemoglobin Measurement Device to Screen for Anemia in Infancy.
Hsu DP, French AJ, Madson SL, Palmer JM, Gidvani-Diaz V. Matern Child Health J. 2015 Dec 24. [Epub ahead of print] PubMed PMID: 26702617.
Continuous monitoring of haemoglobin concentration after in-vivo adjustment in patients undergoing surgery with blood loss.
Frasca D, Mounios H, Giraud B, Boisson M, Debaene B, Mimoz O. Anaesthesia. 2015 Feb 13. doi: 10.1111/anae.13028. [Epub ahead of print] PubMed PMID: 25676902.
Continuous Hb and plethysmography variability index (PVI) monitoring is associated to a decreased mortality at the scale of a whole hospital.
Ponsonnard S, Yonnet S, Marin B, Cros J, Ben Miled S, Nathan N. Proceedings of the European Society of Anaesthesiology’s Euroanaesthesia 2015 Annual Congress, May 30-June 2, Berlin, Germany, 16AP3-2, Room A1 – Poster Abstract Presentation Session, e-Board 8.
Non-invasive blood haemoglobin and plethysmographic variability index during brachial plexus block.
Bergek C, Zdolsek JH, Hahn RG. Br J Anaesth. 2015 May;114(5):812-7. doi: 10.1093/bja/aeu484. Epub 2015 Jan 20. PubMed PMID:25603961.
Systematic review and meta-analysis of method comparison studies of Masimo pulse co-oximeters (Radical-7™ or Pronto-7™) and HemoCue® absorption spectrometers (B-Hemoglobin or 201+) with laboratory haemoglobin estimation
Hiscock R, Kumar D, Simmons SW. Anaesth Intensive Care. 2015 May;43(3):341-50. Review. PubMed PMID: 25943608.
The changes of non-invasive hemoglobin and perfusion index of Pulse CO-Oximetry during induction of general anesthesia.
Park SG, Lee OH, Park YH, Shin HY, Kang H, Baek CW, Jung YH, Woo YC Korean J Anesthesiol. 2015Aug;68(4):352-7. doi: 10.4097/kjae.2015.68.4.352. Epub 2015 Jul 28. PubMed PMID: 26257847.
Noninvasive Assessment of Excessive Erythrocytosis as a Screening Method for Chronic Mountain Sickness at High Altitude.
Vyas KJ, Danz D, Gilman RH, Wise RA, León-Velarde F, Miranda JJ, Checkley W. High Alt Med Biol. 2015 May 14. [Epub ahead of print] PubMed PMID: 25973777.
Comparison of the gold standard of hemoglobin measurement with the clinical standard (BGA) and noninvasive hemoglobin measurement (SpHb) in small children: a prospective diagnostic observational study.
Wittenmeier E, Bellosevich S, Mauff S, Schmidtmann I, Eli M, Pestel G, Noppens RR. Paediatr Anaesth. 2015 Jul 14. doi: 10.1111/pan.12683. [Epub ahead of print] PMID: 26179143 [PubMed - as supplied by publisher]
The impact of noninvasive, capillary, and venous hemoglobin screening on donor deferrals and the hemoglobin content of red blood cells concentrates: a prospective study.
Sümnig A, Hron G, Westphal A, Petersmann A, Kohlmann T, Greinacher A, Thiele T. Transfusion. 2015 Jul 15. doi: 10.1111/trf.13241. [Epub ahead of print] PMID: 26177874 [PubMed - as supplied by publisher]
Accuracy of continuous noninvasive hemoglobin monitoring for the prediction of blood transfusions in trauma patients.
Galvagno SM Jr, Hu P, Yang S, Gao C, Hanna D, Shackelford S, Mackenzie C. J Clin Monit Comput. 2015 Mar 10. [Epub ahead of print] PubMed PMID: 25753142.
Validation of noninvasive hemoglobin measurement by pulse co-oximeter in newborn infants.
Nicholas C, George R, Sardesai S, Durand M, Ramanathan R, Cayabyab R. J Perinatol. 2015 Mar 5. doi: 10.1038/jp.2015.12. [Epub ahead of print] PubMed PMID: 25742288.
A noninvasive hemoglobin monitor in the pediatric intensive care unit.
Phillips MR, Khoury AL, Bortsov AV, Marzinsky A, Short KA, Cairns BA, Charles AG, Joyner BL Jr, McLean SE. J Surg Res. 2015 Jan 9. pii: S0022-4804(15)00002-5. doi: 10.1016/j.jss.2014.12.051. [Epub ahead of print] PubMed PMID: 25724765.
Trending, Accuracy, and Precision of Noninvasive Hemoglobin Monitoring During Human Hemorrhage and Fixed Crystalloid Bolus.
Marques NR, Kramer GC, Voigt RB, Salter MG, Kinsky MP. Shock. 2014 Dec 18. [Epub ahead of print] PubMed PMID: 25521537.
Usefulness of non-invasive spectrophotometric haemoglobin estimation for detecting low haemoglobin levels when compared with a standard laboratory assay for preoperative assessment
A. A. Khalafallah, C. R. Chilvers, M. Thomas, C. M. Chilvers, M. Sexton, M. Vialle, and I. K. Robertson Br. J. Anaesth. published 13 December 2014, 10.1093/bja/aeu403
Low perfusion index affects the difference in glucose level between capillary and venous blood.
Acar N, Ozcelik H, Cevik AA, Ozakin E, Yorulmaz G, Kebapci N, Bilge U, Bilgin M. Ther Clin Risk Manag. 2014 Nov 20;10:985-991. eCollection 2014. PubMed PMID: 25429227; PubMed Central PMCID: PMC4242686.
Effects of thermoregulatory vasoconstriction on pulse hemoglobin measurements using a co-oximeter in patients undergoing surgery.
Ken Yamaura, MD, Noriko Nanishi, MD (Anesthesiologist), Midoriko Higashi, MD, Sumio Hoka, MD. Jour Clin Anesth. October 2014.
Trending and Accuracy of Noninvasive Hemoglobin Monitoring in Pediatric Perioperative Patients
Patino M, Schultz L, Hossain M, Moeller J, Mahmoud M, Gunter J, Kurth CD. Anesth Analg. 2014 Jul 17. [Epub ahead of print] PubMed PMID: 25036374.
Continuous Non-invasive Hemoglobin Monitoring during Orthopedic Surgery: A Randomized Trial
Ehrenfeld JM, Henneman JP, Bulka CM, Sandberg WS. 2014. J Blood Disorders Transf 5:237.doi:10.4172/2155-9864.1000237.
Accuracy of noninvasive hemoglobin monitoring in patients at risk for hemorrhage
Tsuei BJ, Hanseman DJ, Blakeman MJ, Blakeman TC, Yang SH, Branson RD, Gerlach TW. . 2014 Sep;77(3 Suppl 2):S134-S139.
Improved non-invasive total haemoglobin measurements after in-vivo adjustment.
Miyashita R, Hirata N, Sugino S, Mimura M, Yamakage M. Anaesthesia. 2014 Jul;69(7):752-6. doi: 10.1111/anae.12681. Epub 2014 May 7. PubMed PMID: 24800903.
A comparison of three methods of hemoglobin monitoring in patients undergoing spine surgery.
Miller RD, Ward TA, Shiboski SC, Cohen NH. Anesth Analg. 2011 Apr;112(4):858-63. doi: 10.1213/ANE.0b013e31820eecd1.
Utility of Noninvasive Transcutaneous Measurement of Postoperative Hemoglobin in Total Joint Arthroplasty Patients.
Stoesz M, Wood K, Clark W, Kwon YM, Freiberg AA. J Arthroplasty. 2014 Jul 8. pii: S0883-5403(14)00471-9.doi: 10.1016/j.arth.2014.06.029. [Epub ahead of print] PubMed PMID: 25087726.
Does a non-invasive hemoglobin monitor correlate with a venous blood sample in the acutely ill?
von Schweinitz BA, De Lorenzo RA, Cuenca PJ, Anschutz RL, Allen PB. Intern Emerg Med. 2014 Oct 17. [Epub ahead of print] PubMed PMID: 25322853
Comparison of three noninvasive methods for hemoglobin screening of blood donors
Ardin S, Störmer M, Radojska S, Oustianskaia L, Hahn M, Gathof BS.Transfusion. 2014 Aug 15.
A Comparison of Hemoglobin Measured by Co-Oximetry and Central Laboratory During Major Spine Fusion Surgery
Carabini LM, Navarre WJ, Ault ML, Bebawy JF, Gupta DK.Anesth Analg. 2014 Sep 3.
Comparison of Masimo Pronto-7 and HemoCue Hb 201+ with laboratory haemoglobin estimation: a clinical study
Hiscock R, Simmons S, Carstensen B, Gurrin L. Anaesth Intensive Care. 2014 Sep;42(5):608-13. PubMed PMID: 25233174.
Transforming Hemoglobin Measurement in Trauma Patients: Non- Invasive Spot Check Hemoglobin
Joseph B, Pandit V, Aziz H, Kulvatunyou N, Zangbar B, Tang A, Keeffe TO’, Jehangir Q, Snyder K, Rhee P, Journal of the American College of Surgeons (2014)
Agreement of Noninvasive Hemoglobin Monitoring by Pulse CO-Oximetry (SpHb) with Invasive Laboratory Measurements
Neto E., Francisco J., Laish J., Jun O. American Society of Anesthesiologists 2014; A3093.
Validation of Noninvasive Hemoglobin Measurements using the Masimo Radical-7 SpHb Station.
Causey M.W., Miller S., Foster A., Beekley A., Zenger D., Martin M. Am J Surg. 2011 May;201(5):590-6.
Use of Non-Invasive Total Hemoglobin Measurement as a Screening Tool for Anemia in Children
Amano I., Murakami A. Pediatr Int. 2013 Dec;55(6):803-5.
Absolute and Trend Accuracy of Continuous and Noninvasive Hemoglobin in Pediatric Surgery Patients.
Jou F., Kurth C., Beckman E., Istaphanous G. K. Anesth Analg. 2010; 110; S-401.
Validation of Continuous and Noninvasive Hemoglobin Monitoring by Pulse CO-Oximetry in Japanese Surgical Patients.
Isosu T., Obara S., Hosono A., Ohashi S., Nakano Y., Imaizumi T., Mogami M., Murakawa M. J Clin Monit Comput. 2013 Feb;27(1):55-60.
In-Vivo Calibration Improves Accuracy of Non-Invasive Hemoglobin Measurements
Torp K., Aniskevich S., Pai S., Shine T., Peiris P., Crawford C. Proceedings of the American Society of Anesthesiologists, October 13, 2012. Washington DC: A568
Continued Improvement in Absolute and Trend Accuracy of Non-Invasive and Continuous Hemoglobin Monitoring
Applegate R., Collier C., Macknet M., Hassanian M., Andrews G., Um M. American Society of Anesthesiologists 2013; A2282.
Blood Transfusion Prediction Using Continuous Non-invasive Hemoglobin Monitoring
Galvagno S., MacKenzie C., Grissom T., Qasim Z., Gao C. American Society of Anesthesiologists 2014; A3096.
The Effect of Cardioplumonary Bypass on the Accuracy of Non-Invasive Hemoglobin Measurement by Pulse Co-Oximetry
Tokuda K., Yamaura K., Higashi M., Saito M., Hoka S. American Society of Anesthesiologists 2014; A4266.
Pulse CO-Oximetry - Clinical Impact in the Emergency Department
Exadaktylos A, Braun CT, Ziaka M, Trends in Anaesthesia and Critical Care (2014), doi: 10.1016 j.tacc.2014.07.002.
The Accuracy of Non-Invasively Continuous Total Hemoglobin Measurement by Pulse CO-Oximetry Undergoing Acute Normovolemic Hemodilution and Reinfusion of Autologous Blood
Saito J., Kitayama M., Oishi M., Kudo T., Sawada M., Hashimoto H., Hirota K. J Anesth. 2014 Jun 28.
Accuracy of Continuous Noninvasive Hemoglobin Monitoring: A Systematic Review and Meta-Analysis
Kim S.H., Lilot M., Murphy L.S., Sidhu K.S., Yu Z., Rinehart J., Cannesson M. Anesth Analg. 2014 Jun 9.
Continuous Noninvasive Hemoglobin Measurement is Useful in Patients Undergoing Double-Jaw Surgery
Kim S.H., Choi J.M., Kim H.J., Choi S.S., Choi I.C. J Oral Maxillofac Surg. 2014 Mar 28. S0278-2391(14)00324-3.
The Relative Trending Accuracy of Noninvasive Continuous Hemoglobin Monitoring during Hemodialysis in Critically Ill Patients
Yamada H., Saeki M., Ito J., Kawada K., Higurashi A., Funakoshi H., Takeda K. J Clin Monit Comput. 2014 May 3.
Accuracy of Continuous and Noninvasive Hemoglobin Monitoring during Prolonged Surgery
Sazuka S., Koshika K., Watanabe Y., Ouchi T., Serita R., Koitabashi T. Euroanesthesia 2014: Abstract 3AP4-3.
Accuracy of Noninvasive Hemoglobin Measurement by Masimo Radical-7 Pulse CO Oximeter in Adult Patients; Comparison between Revision C and Revision K
Toju K., Isosu T., Morimoto I., Hosono A., Kurosawa S., Murakawa M. Euroanesthesia 2014: Abstract 3AP4-6
Noninvasive and Continuous Trending of Hemoglobin during Labor and in the Post-Partum Period
Tola G., Capogna G. Euroanesthesia 2014: Abstract 11AP3-1.
A Comparison of Lidocaine and Bupivacaine Digital Nerve Blocks on Noninvasive Continuous Hemoglobin Monitoring in a Randomized Trial in Volunteers
Miller R.D., Ward T.A., McCulloch CE., Cohen N.H. Anesth Analg. 2014 Apr;118(4):766-71.
The Use of a Noninvasive Hemoglobin Monitor for Determining Fluid Distribution and Elimination in Pediatric Patients undergoing Minor Surgery
Lian Q., Li H., Zeng R., Lang J., Shangguan W., Liu H., Wang B., Rodhe P.M., Svensen C.H. J Clin Monit Comput. 2014 Feb 19.
Transforming Hemoglobin Measurement in Trauma Patients: Non‐Invasive Spot Check Hemoglobin
Joseph B., Aziz H., Pandit V., Kulvatunyou N., Tang A.L., Wynne J.L., O'Keeffe T.,
Vercruysse G.A., Friese R.S., Rhee P. 27th Eastern Association for the Surgery of Trauma (EAST) Annual Scientific Assembly, January 14-18, 2014, Naples, Florida. Abs.20
Accuracy of Continuous Non-Invasive Hemoglobin Monitoring: A Systematic Review and Meta-Analysis
Cannesson M. 2014 STA Annual Meeting, January 15-18, Orlando, FL.
Alternate Analytical Technique for Trend Performance of SpHb
Pologe J.A. Anesth Analg. 2013 Dec;117(6):1510-1. [Letter]
Evaluation of Noninvasive Hemoglobin Monitoring in Surgical Critical Care Patients
Xu T.; Romig M. Sapirstein, A. Winters. Crit Care Med 2013; 41(12):A191: Abstract 767.
Use of Non-Invasive Total Hemoglobin Measurement as a Screening Tool for Anemia in Children
Amano I., Murakami A. Pediatr Int. 2013 Dec;55(6):803-5.
Evaluation of Non-Invasive Hemoglobin Measurements Using the Masimo Rainbow Radical-7® Device in a Patient with Extracorporeal Membrane Oxygenation
Moreno I., Artieda O., Vicente R., Zarragoikoetxea I., Vicente J.L., Barberá M. Rev Esp Anestesiol Reanim. 2013 Dec 23 [Article in Spanish]
Accuracy in Noninvasive and Continuous Hemoglobin Monitoring Trends during Liver Transplantation.
Ramsay M.A.E., Lagow E.E. Proceedings of the 67th Annual Post Graduate Assembly in Anesthesiology, December 13-17; New York, NY; 2013: P-9134
Validation of a Non-Invasive Pulse CO-Oximetry Based Hemoglobin Estimation in Normal Blood Donors.
Al-Khabori M., Al-Riyami A.Z., Al-Farsi K., Al-Huneini M., Al-Hashim A., Al-Kemyani N., Daar S. Transfus Apher Sci. 2013 Nov 4. pii: S1473-0502(13)00326-1.
Continuous and noninvasive hemoglobin monitoring may reduce excessive intraoperative RBC transfusion.
Imaizumi et al. Proceedings from the 16th World Congress of Anaesthesiologists, Hong Kong. Abstract #PR607.
Impact of Sudden Changes in Oxygenation on the Measurement of Non-Invasive Hemoglobin (Sphgb)
Gomaa D., BlakemanT.C., Rodriquez D., Gerlach T., Tseui B.J. Branson R.D. Respiratory Care 2013; 58(10):1784.
Anemia, Bleeding, and Blood Transfusion in the Intensive Care Unit: Causes, Risks, Costs, and New Strategies
McEvoy M.T., Shander A. Am J Crit Care November 2013 22:eS1-eS13.
Evaluation of Noninvasive Hemoglobin Measurements in Trauma Patients
Moore L.J., Wade C.E., Vincent L., Podbielski J., Camp E., Junco D.D., Radhakrishnan H., McCarthy J., Gill B, Holcomb J.B. Am J Surg. 2013 Oct 21
Quantitative Review and Comparison of Noninvasive Hemoglobin Accuracy and Trend Ability
Ribeiro Marques N, Kramer G, Moisi M, Pedraza I, Khan M. Kinsky M. Proceedings of the American Society of Anesthesiologists, October 13, 2013. San Francisco. A2287
How Noninvasive Haemoglobin Measurement with Pulse CO-Oximetry Can Change Your Practice: An Expert Review
Lindner G., Exadaktylos A.K. Emerg Med Int. 2013;2013:701529.
Continuous Hemoglobin Monitoring During Massive Blood Transfusion in a Multivisceral Pediatric Transplant Patient
Beethe A.B., Agrawal A., Jones B.M., Sullivan J.N., Adams J.J., Duhacheck-Stapleman A.L. J Clin Anesth. 2013 Aug 16
Continuous Noninvasive Hemoglobin Monitor from Pulse Ox: Ready for Prime Time?
Joseph B., Hadjizacharia P., Aziz H., Snyder K., Wynne J., Kulvatunyou N., Tang A., O'Keeffe T., Latifi R., Friese R., Rhee P. World J Surg. 2013 Mar;37(3):525-9.
Noninvasive Hemoglobin Monitoring: How Accurate Is Enough?
Rice MJ, Gravenstein N, Morey TE. Anesth Analg. 2013 Jul 10.
Comparison of Haemoglobin Measurement Methods in the Operating Theatre
Giraud B., Frasca D., Debaene B., Mimoz O. Br J Anaesth. 2013 Jul 17
Accuracy of Noninvasive Hemoglobin and Invasive Point-Of-Care Hemoglobin Testing Compared with a Laboratory Analyzer.
Shah N., Osea E.A., Martinez G.J. Int J Lab Hematol. 2013 Jun 27.
Accuracy of the Masimo Pronto-7 System in Patients with Left Ventricular Assist Device-
Bruells C.S., Menon A.K., Rossaint R., Goetzenich A., Czaplik M., Zoremba N., Autschbach R., Schaelte G. J Cardiothorac Surg. 2013 Jun 24;8(1):159.
Noninvasive Monitoring of Hemoglobin Concentration in Pediatric Critical Patients
García-Soler P., Camacho-Alonso J.M., Milano-Manso G. 24th Annual Meeting of the European Society of Paediatric and Neonatal Intensive Care. June 12-15, Rotterdam, Netherlands
Accuracy of Noninvasive and Continuous Hemoglobin Measurement by Pulse CO-Oximetry during Preoperative Phlebotomy.
Dewhirst E., Naguib A., Winch P., Rice J., Galantowicz M., McConnell P., Tobias J.D. J Intensive Care Med. 2013 Apr 22.
Non-invasive detection of hemoglobin concentration by Pulse CO-Oximetry in severely traumatized patients
Baulig W., Prassler S., Sulser S., Dambach M., Biro P., Theusinger O. Eur J Anaesthesiol. 2013; 30 (Supplement 51)
Noninvasive Hemoglobin Monitoring: Absolute and Trend Accuracy and Impact on Blood Management
Awada W., Elkadi H., Zahry G., Fawezy M., Radwan T., Neuro Surgical Anesthesia Team Eur J Anaesthesiol. 2013; 30 (Supplement 51)
Methodological queries about point-of-care haemoglobin data. Butwick A. Anaesthesia. 2013 May;68(5):540-1. A reply.
Wijayasinghe N., Anaesthesia. 2013 May;68(5):541-2.
Evaluation of a New Noninvasive Device in Determining Hemoglobin Levels in Emergency Department Patients.
Knutson T., Della-Giustina D., Tomich E., Wills B., Luerssen E., Reynolds P. West J Emerg Med. 2013 May;14(3):283-286
Noninvasive Methods for Haemoglobin Screening in Prospective Blood Donors
Belardinelli A., Benni M., Tazzari P.L., Pagliaro P. Vox Sang. 2013 Apr 19. doi: 10.1111/vox.12033
Validation of Non-Invasive Hemoglobin Measurement by Pulse CO-Oximeter in Newborn Infants with Birth Weight of Less Than 3000 Grams
Nicholas C., George R., Cayabyab R., Sardesai S., Durand M., Ramanathan R. Pediatric Academic Societies Annual Meeting 2013 May 4-7, 2013 Washington, D.C. Abs# E-PAS2013:3833.560
Trending, Accuracy and Precision of Noninvasive Hemoglobin Monitoring During Hemodilution
Marques N.R. Kramer G.C. Salter M., Voigt R.B., Kinsky M. Annual Meeting of the International Anesthesia Research Society. San Diego, CA. May 4-7.
Increasing Error of Non-Invasive Hemoglobin Measurement after Cardiopulmonary Bypass
Riess M., Nabor D.S. Page P.S. Annual Meeting of the International Anesthesia Research Society. San Diego, CA. May 4-7.
Evaluation of Absolute and Trend Accuracy of Revision G Noninvasive and Continuous Hemoglobin Monitoring During Major Surgery
Applegate R., Collier C., Mangus D., Barr S.J., Macknet M., Hassanian M., Allard M. 2013 Annual Meeting of the. International Anesthesia Research Society. San Diego, CA. May 4-7.
Effect of Hydroxocobalamin on Surface Oximetry in Nonexposed Humans
Cashin B.V., Matlock A.G., Kang C., Reynolds P.S., Wills B.K. Prehosp Disaster Med. 2013 May 1:1-3.
The author replies.
Ouattara A. Crit Care Med. 2013 May;41(5):e53.
Understanding Noninvasive and Continuous Hemoglobin Monitoring.
O'Reilly M. Crit Care Med. 2013 May;41(5):e52.
Factors Affecting Hemoglobin Measurement.
Berkow L. J Clin Monit Comput. 2013 Mar 26. PMID: 23529342
Validation of a Noninvasive Pulse CO-Oximetry-based Hemoglobin Estimation in Patients with Sickle Cell Disease.
Al-Khabori M., Al-Hashim A., Jabeen .Z, Al-Farsi K., Al-Huneini M., Al-Riyami A., Al-Kemyani N., Daar S. Int J Lab Hematol. 2013 Mar 11
Continuous Measurement of Hemoglobin: Methodological Approach and Lessons for the Future.
Riou B. Anesthesiology. 2013 Mar;118(3):497-9.
A Comparison of Non-Invasive Hemoglobin Measurements to Laboratory Hemoglobin and to Red Blood Cell Volume-Derived Hemoglobin
Shifflette V., Stahler P., Inouye D., Hayashi M., Pei K., Takiguchi S., Machi R., Takanishi D., Yu M. Crit Care Med; 40(12):1071
Can Non-Invasive Hemoglobin Predict Use of Universal Blood or Urgent Transfusion During Trauma Patient Resuscitation?
Mackenzie C., Amechi A., Hu P., Hegegeorge G. Imle, C. Stansbury L., Chen, H., Ninardo T., Fang R. Crit Care Med 2012; 40(12): 755.
Evaluation of the Non-Invasive Spot Check for Hemoglobin in the Trauma Intensive Care Unit
Bellal J., Hassan A., Pandit V., Narong K. Wynne J., Tang A., Rhee P. Crit Care Med 2012; 40(12): 231
The Use of a Noninvasive Hemoglobin Monitor for Volume Kinetic Analysis in an Emergency Room Setting
Sjöstrand F., Rodhe P., Berglund E., Lundström N., Svensen C. Anesth Analg. 2013 Feb;116(2):337-42.
Value of Continuous Noninvasive Hemoglobin Monitoring During Surgery
Yan Y., Ge H. J Third Mil Med Univ. 2012;34(23):2425-24-27 [Article in Chinese]
Reduction in Red Blood Cell Transfusions during Neurosurgery with Noninvasive and Continuous Hemoglobin Monitoring
Awada WNFM et al. Anesth Analg 2013; (117 suppl): 50 (abstract).
Noninvasive Total Hemoglobin Monitoring with Multiwave Spectrophotometry in Obstetrics and Gynecology
Anesteziol Reanimatol. 2012 Nov-Dec;(6):36-9. [Article in Russian]
Non-Invasive Hemoglobin Estimation in Patients with β-Thalassemia Major
Al-Khabori M.K., Al-Riyami A.Z., Al-Huneini M., Al Farsi K., Al-Hashim A., Al-Kemyani N., Mohsin H.M., Daar S. Blood (ASH Annual Meeting Abstracts) 2012 120: Abstract 5179
Validation of a Non-Invasive Hemoglobin Estimation in Whole Blood Donors
Al-Khabori M.K., Al Farsi K., Al-Huneini M., Daar S., Al-Hashim A., Al-Kemyani, N.,. Al-Riyami A.Z., Blood (ASH Annual Meeting Abstracts) 2012 120: Abstract 2280.
Validation of a Non-Invasive Hemoglobin Estimation in Patients with Sickle Cell Disease
Al-Khabori M.K., Al-Hashim A., Al Farsi K., Al-Huneini M., Al-Riyami A.Z., Al-Kemyani N. Blood (ASH Annual Meeting Abstracts) 2012 120: Abstract 4470
The Accuracy of Noninvasive Hemoglobin Monitoring Using the Radical-7 Pulse CO-Oximeter in Children Undergoing Neurosurgery.
Park Y.H., Lee J.H., Song H.G., Byon H.J., Kim H.S., Kim J.T. Anesth Analg 2012 Dec;115(6):1302-7.
The Efficacy of Noninvasive Hemoglobin Measurement by Pulse CO-Oximetry in Neonates
Jung Y.H., Lee J., Kim H.S., Shin S.H., Sohn J.A., Kim E.K., Choi J.H. Pediatr Crit Care Med. 2013 Jan;14(1):70-3.
Noninvasive Monitoring of Hemoglobin Concentration in Pediatric Cardiac Postoperative Patients
García Soler P., Camacho Alonso J.M., Morales Martínez A, Milano Manso G. Arch Dis Child 2012;97:A471.
Evaluation of Point-Of-Care Haemoglobin Measuring Devices: A Comparison of Radical-7™ Pulse CO-Oximetry, Hemocue(®) and Laboratory Haemoglobin Measurements in Obstetric Patients*
Skelton V.A., Wijayasinghe N., Sharafudeen S., Sange A., Parry N.S., Junghans C. Anaesthesia. 2013 Jan;68(1):40-5.
Continuous Non-invasive Hemoglobin Monitoring in Infants and Neonates Undergoing Cardiac and Abdominal Surgery
Carstens A. G., Broch O., Francksen Ohnesorge H., Scheewe J., Bein B., Renner R. Proceedings of the American Society of Anesthesiologists, October 13, 2012. Washington DC. A172
Continuous SpHb Monitoring does not Impact Maintenance of Target Hemoglobin during Spinal Fusion.
Heitmiller E.S., Smith M.C., Greenberg R.S., Ajuba-Iwuji C., Bembea M. Proceedings of the American Society of Anesthesiologists, October 13, 2012. Washington DC. A560
Accuracy of Non-invasive Hemoglobin Measurement by Pulse CO-Oximetry at Various Peripheral Circulatory States
Nanishi N., Ken Yamaura K., Hoka S. Proceedings of the American Society of Anesthesiologists, October 13, 2012. Washington DC. A575
Evaluation of Pulse CO-Oximetry to Non-Invasively Monitor Hemoglobin Concentration in Pediatrics
Patino M., Schultz L., Prim J., Mahmoud M., Gunter J., Kurth C.D. Proceedings of the American Society of Anesthesiologists, October 13, 2012. Washington DC.A785
Performance of Pronto-7 Noninvasive Hemoglobin Pulse CO-Oximeter in a Dark Skinned Population
Shah N., Modi D. Proceedings of the American Society of Anesthesiologists, October 13, 2012. Washington DC A573
In-Vivo Calibration Improves Accuracy of Non-Invasive Hemoglobin Measurements
Torp K., Aniskevich S., Pai S., Shine T., Peiris P., Crawford C. Proceedings of the American Society of Anesthesiologists, October 13, 2012. Washington DC: A568
Measurement of Relative Change in Blood Volume and Plasma Refilling Rate during Hemodialysis by Noninvasive Continuous Hemoglobin Monitoring using Pulse Oximetry
Yamada H., Saeki M., Sakamoto S., Ito J., Saitoh M., Minoguchi,K., Kawada K., M Higurashi A., Takahash S., Takeda K. Proceedings of the American Society of Anesthesiologists, October 13, 2012. Washington DC: A811
Considerations for Evaluating the Accuracy of Hemoglobin Monitoring.
O’Reilly M. Anesthesiology. 2012 Aug;117(2):429-30; author reply 430-1. doi: 10.1097/ALN.0b013e31825d95d6.
Accuracy of Noninvasive Haemoglobin Measurement By Pulse Oximetry Depends On the Type of Infusion Fluid.
Bergek C., Zdolsek J.H., Hahn R.G. Eur J Anaesthesiol. 2012 Dec;29(12):586-92.
Validation of Continuous and Noninvasive Hemoglobin Monitoring by Pulse CO-Oximetry in Japanese Surgical Patients.
Isosu T., Obara S., Hosono A., Ohashi S., Nakano Y., Imaizumi T., Mogami M., Murakawa M. J Clin Monit Comput. 2013 Feb;27(1):55-60.
New Technologies in Pediatric Anesthesia.
Holtby H., Skowno J.J., Kor D.J., Flick R.P., Uezono S. Paediatr Anaesth. 2012 Oct;22(10):952-61.
Noninvasive or invasive hemoglobin measurement?
Lacroix J., Tucci M. Crit Care Med. 2012 Sep;40(9):2715-6.
Accuracy of Non-Invasive Measurement of Haemoglobin Concentration by Pulse CO-Oximetry during Steady-State and Dynamic Conditions in Liver Surgery.
Vos J.J., Kalmar A. F., Struys M. M. R. F., Porte R. J., Wietasch J. K. G, Scheeren T. W. L. and. Hendriks H. G. D. Br. J. Anaesth. 2012 Oct;109(4):522-8.
Does a digital regional nerve block improve the accuracy of noninvasive hemoglobin monitoring?
Miller RD, Ward TA, McCulloch CE, Cohen NH.J Anesth. 2012 Dec;26(6):845-50. doi: 10.1007/s00540-012-1452-0.
Accuracy of Non-Invasive Measurement of Haemoglobin Concentration by Pulse CO-Oximetry during Steady-State and Dynamic Conditions in Liver Surgery.
Vos J.J., Kalmar A. F., Struys M. M. R. F., Porte R. J., Wietasch J. K. G, Scheeren T. W. L. and. Hendriks H. G. D. Br. J. Anaesth. 2012 Oct;109(4):522-8.
Precision of Noninvasive Hemoglobin-Level Measurement by Pulse CO-Oximetry in Patients Admitted to Intensive Care Units for Severe Gastrointestinal Bleeds.
Coquin J., Dewitte A., Le Manach Y., Caujolle M., Joannes-Boyau O., Fleureau C., Janvier G., Ouattara A. Crit Care Med. 2012 Sep;40(9):2576-82.
Comparison Noninvasive Hemoglobin and Invasive Spun Hematocrit Testing in WIC Participants.
Payton M. National WIC Association 2012 Annual Education and Networking Conference May 20–23, 2012 Denver, CO.
The Accuracy of Noninvasive and Continuous Total Hemoglobin Measurement by Pulse CO-Oximetry Undergoing Hemodilutional Autologous Transfusion.
Saito J., Kitayama M., Kudo T., Hashimoto H., Hirota K. Anesth Analg 2012; 113; S-268.
Non-Invasive Hemoglobin Monitoring During Cardiovascular Surgery.
Nabor D., Ekstrom B., Pagel P. S., Riess M. L. Anesth Analg 2012; 113; S-257
Statistical Assessment of the Clinical Performance of the Masimo Radical-7.
Pologe J.A., Menschik M. Am J Surg. 2012 Nov;204(5):810.
Expansion of Statistical Analysis in Noninvasive Hemoglobin Monitoring.
Causey M.W., Miller S., Martin M. Am J Surg. 2012 Nov;204(5): 811-2
Clinical Interpretation of Noninvasive Hemoglobin (SpHb) Revised: Single Capillary-Bed rather than Arterial Hemoglobin.
Andrijauskas A., Svensen C., Ivaskevicius J., Porvaneckas N., Kvederas G., Andrijauskas P. EJA 2012; 29: May 2012 Supplement. Abs 945.
Masimo Radical-7 Continuous Hemoglobin Measurement Error Grid Approach Results.
Gomez Diago L., Soliveres J., Balaguer J., Hernández M.J., Sánchez A., Solaz C. EJA 2012; 29: May 2012 Supplement. Abstract 453.
Comparison of Three Methods of Hemoglobin Measures during Major Surgery.
Cegarra V., Remartínez F., Martínez A., Garcia-Alvarez M., Moral M.V. EJA 2012; 29: May 2012 Supplement. Abs 1734.
Noninvasive Monitoring of Hemoglobin (SpHb) During Preoperative Stepwise Infusion of Ringer's Acetate: Accuracy for the Evaluation of Arterial Plasma Dilution.
Andrijauskas A., Svensen C., Ivaskevicius J., Porvaneckas N., Kvederas G., Andrijauskas P. EJA 2012; 29: May 2012 Supplement. Abs 707.
Evaluation of the Masimo® Rainbow SET Radical-7 in a 6-month-old Pediatric Multivisceral Organ Transplant.
Agrawal A., Sullivan J.N., Zink M.A., Jones B.M. J Anesth. 2012 Aug;26(4):629-30.
The current status of continuous noninvasive measurement of total, carboxy, and methemoglobin concentration.
Shamir M.Y., Avramovich A., Smaka T. Anesth Analg. 2012 May;114(5):972-8.
Ability of the Masimo Pulse CO-Oximeter to Detect Changes in Hemoglobin.
Colquhoun D.A., Forkin K.T., Durieux M.E., Thiele R.H. J Clin Monit Comput. 2012 Apr;26(2):69-73.
Comparative Assessment of Invasive and Noninvasive Methods for Detection of Total Hemoglobin in Gynecological Patients’ Blood.
Pyregov A.V., Petrov S.V. Crit Care 2012; 16 (1):P427.
Measurement of Hemoglobin in the Operating Room: What Methods Can We Trust?
Giraud B., Frasca D., Mimoz O. Crit Care 2012;16(1): P433
Validity and Correspondence of Non-invasively Determined Hemoglobin Concentrations by Two Trans-cutaneous Digital Measuring Devices.
Crowley C., Montenegro-Bethancourt G., Solomons N.W., Schumann K. Asia Pac J Clin Nutr. 2012;21(2):191-200
Correlation Between Deviations of Target Parameters During a Perioperative Crystalloid Fluid Loading in a 3-Step Minimal Volume Loading Test for Total Knee Arthroplasty Patient.
Andrijauskas A., Svensen C., Ivaskevicius J. 2012 BJA 108 (S2): paper no. 1084.0
The Accuracy of Continuous Noninvasive Measurement of Hemoglobin via Pulse CO-Oximetry in Patients Undergoing Knee Arthroplasty.
Garcıa Alvarez R., Abad Motos A., Stolle Duenas D., Gonzalez Montero L., Marıa Calvo Vecino J. BJA 108 (S2): paper no. 10.00
O'Reilly, M. Response to: Non-invasive haemoglobin measurement in patients undergoing elective Caesarean section.
Brit Journal Anesth 2012 Jan 26
Non-Invasive Haemoglobin Measurement in Patients Undergoing Elective Caesarean Section.
Butwick A., Hilton G., Carvalho B. Br J Anaesth. 2012 Feb;108(2):271-7.
Non-Invasive Measurement of Hemoglobin: Assessment of Two Different Point-of-Care Technologies.
Gayat E., Aulagnier J., Matthieu E., Boisson M., Fischler M. ; PLoS One. 2012;7(1):e30065. Epub 2012 Jan 6
Evaluation of Pulse Cooximetry in Patients Undergoing Abdominal or Pelvic Surgery.
Applegate R.L. 2nd, Barr S.J., Collier C.E., Rook J.L., Mangus D.B., Allard M.W. Anesthesiology. 2012 Jan;116(1):65-72.
Considerations for Evaluating the Accuracy of Hemoglobin Monitoring.
O'Reilly, M. Anesthesiology 1 Aug 2012 117(2): p. 429.
Noninvasive Hemoglobin Monitoring In Seriously Injured Combat Casualties
Bridges E. Crit Care Med 2011; 39(12) Abs 407.
Advocacy to extend the use of continuous noninvasive hemoglobin measurement
Boutonnet M., Pasquier P., Salvadori A., Auroy Y., Tourtier J.P. Crit Care Med. 2011 Dec;39(12):2783-4.
Continuous Noninvasive Hemoglobin Monitoring for Jehovah’s Witness Patients Undergoing Intraoperative Autologous Normovolemic Hemodilution.
Frank S.M., Rothschild J., Ulatowski J.A. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A408.
The Accuracy of Noninvasive Hemoglobin Measurement by Multiwavelength Pulse Oximetry after Cardiac Surgery.
Nguyen B.V., Vincent J.L., Nowak E., Coat M., Paleiron N., Gouny .P, Ould-Ahmed M., Guillouet M., Arvieux C.C., Gueret G. Anesth Analg. 2011 Nov;113(5):1052-7.
Continuous Noninvasive Hemoglobin Monitoring for Jehovah’s Witness Patients Undergoing Intraoperative Autologous Normovolemic Hemodilution.
Frank S.M., Rothschild J., Ulatowski J.A. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A408.
Improved Accuracy and Trending of Noninvasive Hemoglobin Measurements with "In Vivo" Adjustment.
Richard K.M., Quill T.J., Dodds T.M., Koff M.D. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A1667.
Accuracy of Non-invasive Hemoglobin Measurement through a Pulse CO-Oximeter Compare to Venous Blood Draw in a Community Setting.
Shah N.K., Modi D. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A285.
Evaluation of a Pulse CO-Oximeter for Non-invasive Hemoglobin Measurement in adult population in Rural India.
Shah N.K., Shah K. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A408.
Accuracy of Noninvasive and Continuous Hemoglobin Measurement during Urological Surgery.
Shimamura M., Morioka N., Igarashi T., Sakuma S., Osawa Y., Ozaki, M. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A672.
Evaluation of Noninvasive and Continuous Hemoglobin Monitoring in Children with Sickle Cell Disease.
Szmuk P., Pickering B., Farris L., Rogers Z.R., Buchanan G.R. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A408.
The Accuracy of Non-Invasive Hemoglobin Monitoring Following Phlebotomy in a Pediatric Population.
Winch P.D., Naguib A., Rice J., Tobias J. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A411
The Accuracy of Total Hemoglobin Measured by Pulse CO-Oximeter Compared with that by Blood Gas Analyzer.
Nagata H., Yamada T., Kotake Y., Morisaki H., Takeda J. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A78.
Effects of Nail Polish of Different Colors on SpHb Determined by Masimo Radical-7™.
Mochidome M., Kawamata T., Imai E., Urasawa M., Kawamata M. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A408.
Improved Noninvasive Total Hemoglobin Measurements after in Vivo Adjustment.
Miyashita R., Sugino S., Niiyama Y., Mimura M., Yamakage M. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A410.
Accuracy of Noninvasive Total Hemoglobin Measurement after Acute Normovolemic Hemodilution in Urological Surgical Patients.
Miyashita R., Sugino S., Tanabe M., Mimura M., Yamakage M. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A289.
Accuracy of Non-invasive Measurement of Hemoglobin using Pulse CO-Oximetry in an Intensive Care Unit.
Mimuro S., Aoki Y., Shiraishi Y., Suzuki A., Morita K., Sato S. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A888.
A Preliminary Quality Investigation of Continuous Non-Invasive Hemoglobin Monitoring in Pediatric Patients Undergoing Cranial Vault Remodeling.
Loveland-Baptist L., Staudt S.R., Hoffman G. Proceedings of the 2011 Annual Meeting of the American Society of Anesthesiologists. A050.
Error in Noninvasive Spectrophotometric Measurement of Blood Hemoglobin Concentration under Conditions of Blood Loss.
Naftalovich R., Naftalovich D. Med Hypotheses. 2011 Oct;77(4):665-7.
Accuracy of a Continuous Noninvasive Hemoglobin Monitor in Intensive Care Unit Patients.
Frasca D., Dahyot-Fizelier C., Catherine K., Levrat Q., Debaene B., Mimoz O. Crit Care Med. 2011 Oct;39(10):2277-82.
Continuous noninvasive hemoglobin monitoring: the standard of care and future impact
Kost GJ, Tran NK. Crit Care Med. 2011 Oct;39(10):2369-71.(Editorial).
Comparison of the Accuracy of Noninvasive Hemoglobin Monitoring by Spectrophotometry (SpHb) and HemoCue with Automated Laboratory Hemoglobin Measurement.
Lamhaut L., Apriotesei R., Combes X., Lejay M., Carli P., Vivien, B. Anesthesiology. 2011 Sep;115(3):548-54.
Instability in non-invasive haemoglobin measurement: a possible influence of oxygen administration.
Gayat E., Bodin A., Fischler M. Acta Anaesthesiol Scand. 2011 Aug;55(7):902.
Multi-Wavelength Pulse Oximeter Is Not Suitable for Adjusting D(LCO) Measurements.
Ruppel G.L., Wilson H.A., Gall V.K., Hempkens J.A. Respir Care. 1 Aug 2011 56(8): 1115-21.
Noninvasive Measurement of Hemoglobin During Cesarean Hysterectomy: A Case Series.
Butwick A.J., Hilton G., Riley E.T., Carvalho B. Int J Obstet Anesth. 2011 Jul;20(3):240-5.
Let's Think Clinically instead of Mathematically about Device Accuracy.
Morey T.E., Gravenstein N., Rice M.J. Anesth Analg. 2011 Jul;113(1):89-91.
Noninvasive Hemoglobin Monitoring In Trauma Patients.
Engels P.T., Romanovsky A., Bagshaw S.M. Am J Respir Crit Care Med. 2011:183: A5851.
Effect of Intermittent Noninvasive Blood Pressure Monitoring on the Continuous Noninvasive Hemoglobin Monitoring by Pulse CO-Oximetry (SpHb) with the Masimo Radical-7 Hemoglobin Monitor
Balaguer J., Soliveres J., Estruck M., Sánchez, A., Hernández M.J., Solaz C. Eur J Anaesthesiol. May 2011. Abs 1416.
Determination of the Coefficient of Variation of Continuous Noninvasive Hemoglobin Measurement.
Soliveres J., Balaguer J., Sánchez A., Estruch M., Hernández M.J., Solaz C. Eur J Anaesthesiol. May 2011. Abs 331.
Accuracy of Continuous and Noninvasive Total Hemoglobin Measurement Using Multi-wavelength Pulse-Oximetry in ICU Patients.
Gölzenleuchter M., Kees M.G., Hilpert J., Gramm H.J., Reich C.A. Eur J Anaesthesiol. May 2011. Abs 308.
Accuracy of a Noninvasive Measurement of Hemoglobin via Pulse CO-Oximetry in Japanese Population
Ishida C., Shiraishi Y., Mimuro S., Yu S., Katoh T., Sato S. Eur J Anaesthesiol. May 2011. Abs 1611.
Use of a Noninvasive Hemoglobin Monitor for Volume Kinetic Analysis in an Emergency Room Setting.
Svensen C.H., Rodhe P., Lundström N., Berglund E., Sjöstrand F. Eur J Anaesthesiol. May 2011. Abs 665.
Continuous Noninvasive Measurement of Total Hemoglobin Concentration During Major Liver Resection by Pulse CO-Oximetry.
Vos J.J., Scheeren T.W.L., Struys M.M.R.F., Hendriks H.G.D. Eur J Anaesthesiol. May 2011. Abs 1712.
Validation of Noninvasive Hemoglobin Measurements using the Masimo Radical-7 SpHb Station.
Causey M.W., Miller S., Foster A., Beekley A., Zenger D., Martin M. Am J Surg. 2011 May;201(5):590-6.
Noninvasive Measurement of Hemoglobin Concentration in Children with Sickle Cell Disease.
Strouse J., Muntz D., Brady K. Proceeding of the American Society of Pediatric Hematology Oncology Annual Meeting. 2011.
Noninvasive Measurement of Hemoglobin Concentration in Children with Chronic Anemia.
Muntz D., Brady K., Strouse J. Proceeding of the American Society of Pediatric Hematology Oncology Annual Meeting. 2011.
Can We Predict Hemoglobin Noninvasively in Obstetric Patients during Delivery and Postpartum Hemorrhage?
Chow L., Chang L.Y., Farber M.K., Kodali B.S. Society for Obstetric Anesthesia and Perinatology. 2011; Abs. 17
Digital Regional Nerve Block and Accuracy of Non-invasive Hemoglobin Monitor
Miller R.D., Ward T.A., Shiboski S., Cohen N.H. IARS 2011 Annual Meeting. S-233.
A comparison of three methods of hemoglobin monitoring in patients undergoing spine surgery.
Miller RD, Ward TA, Shiboski SC, Cohen NH. Anesth Analg. 2011 Apr;112(4):858-63. doi: 10.1213/ANE.0b013e31820eecd1.
Performance Evaluation of a Noninvasive Hemoglobin Monitoring Device.
Gayat E., Bodin A., Sportiello C., Boisson M., Dreyfus J.F., Mathieu E., Fischler M. Ann Emerg Med. 2011;57(4):330-3.
Response to Gayat et al.
O'Reilly M. Response to Gayat et al. Ann Emerg Med. 2011 Jul;58(1):106-7.
Correspondence of Hemoglobin Values Obtained by a Noninvasive, Cutaneous-Contact Method with Values Obtained by Conventional Methods from Whole Blood Samples in a Guatemalan Field Setting.
Crowley C., Montenegro-Bethancourt G., Arriaga C., Solomons N.W., Schümann K. Food and Nutrition Bulletin. 2010; 31(4): 503-512.
The Accuracy of Noninvasive and Continuous Total Hemoglobin Measurement by Pulse CO-Oximetry Undergoing Hemodilutional Autologous Transfusion.
Saito J., Kitayama M., Kudo T., Hashimoto H., Hirota K. Anesth Analg 2012; 113; S-268.
Accuracy of Noninvasive Hemoglobin Monitoring in Intensive Care Unit Patients with Very Low Hemoglobin.
Juhl A., Naqvi S., Aregbeyen O., Demir S. Crit Care Med. 2010; 38 (12):215.
Noninvasive Monitoring of Blood Haemoglobin for Analysis of Fluid Volume Kinetics.
Hahn R.G., Li Y., Zdolsek J. Acta Anaesthesiol Scand. 2010; 54: 1233–1240.
Real-Time Hemoglobin Monitoring During Liver Transplantation: A Case Report.
Peiris P., Torp K., Nguyen J., Shine T., Aniskevich S., Shapiro D. Proceeding for the Society for the Advancement of Blood Medicine 2010 Annual Meeting. Abs 4091.
Noninvasive and Continuous Hemoglobin Monitoring in an Intensive Care Unit Patient with Low Hemoglobin.
Juhl A., Naqvi S., Aregbeyen O., Shander A. Proceeding for the Society for the Advancement of Blood Medicine 2010 Annual Meeting. Abs 4323.
Comparison of Pulse Hemoglobin to Arterial Blood Gas Hemoglobin during Major Surgical Procedures.
Barr S.J., Collier C.L., Applegate R.L., Rook J., Allard M. Proceedings of the 2010 Annual Meeting of the American Society of Anesthesiologists. A1151.
Continuous Noninvasive Hemoglobin: Impact of Hemorrhage on Volume Expansion of Crystalloid in Humans.
Kinsky M., Salter M., Daneshvari S., Indrikovs A., Kramer G. Proceedings of the 2010 Annual Meeting of the American Society of Anesthesiologists. Abs A391.
Perioperative Use of Noninvasive Hemoglobin Monitoring: A Multi-Center Study in a Large HMO.
Qiu C., LaPlace D., Smith M., Friedman M, Etrata R. Proceedings of the 2010 Annual Meeting of the American Society of Anesthesiologists. Abs A393.
Noninvasive Estimation of Hemoglobin by Pulse-CO-Oximetry in Infants Undergoing Major Surgery.
Renner J., Broch O., Scheewe J, Gruenewald M, Bein B. Proceedings of the 2010 Annual Meeting of the American Society of Anesthesiologists. Abs 1668.
Evaluation of Noninvasive Hemoglobin Measurements on High Risk Surgical Patients
Richard K.M., Quill T.J., Surgenor S.D., Trummel J.M., Koff M.D. Proceedings of the 2010 Annual Meeting of the American Society of Anesthesiologists. Abs A187.
Validation of Continuous and Noninvasive Hemoglobin Monitoring from Pulse CO-Oximetry during Surgery.
Soliveres J., Balaguer J., Sánchez A., Estruch M., Hernández M.J., Solaz C. Proceedings of the 2010 Annual Meeting of the American Society of Anesthesiologists. Abs 255.
Continuous Noninvasive Hemoglobin Measurement in Cardiac Surgical Patients.
Yao A., Dastrange M., Fleming N.W. Proceedings of the 2010 Annual Meeting of the American Society of Anesthesiologists. Abs 670.
Does a Portable, Noninvasive Hemoglobin Monitor Effectively Correlate With Venous Blood Levels?
Knutson C., Della-Giustina C., Tomich C., Wills B., Leurssen C. Ann Emerg Med. 2010; 56(3).
Impact of Masimo Continuous Pulse Hemoglobin Sensor Modifications.
Lee M., Dastrange M., Yao A., Fleming N. Proceedings of WARC 2010. Abs A3.
Continuous Noninvasive Measurement of Hemoglobin via Pulse CO-Oximetry During Rapid Intra-Operative Fluid Shifts, a Dual Case Report.
Noone M., Macknet M., Applegate R. Proceedings of WARC. 2010: 191.
Noninvasive Hemoglobin Measurement in Emergency Patients.
Chung J.W., Park J.S., Kim A.J., Shin D.W., Roh J.Y., Kim K.H., Lee K.M. Korean J of Emerg Med. 2010 21(1): 67-72.
Validation of a New Noninvasive Hemoglobin Algorithm in Patients Undergoing Liver Transplantation.
Torp K.D., Aniskevich S., M.D., Shine T.S.J., Shapiro D.P., Peiris P. Proceedings of the 2009 Annual Meeting of the American Society of Anesthesiologists. Abs 751.
Comparison of Coulter Counter and CO-Oximeter (pHOx) Measurements for Hemoglobin.
Torp K.D., Shine T.S.J., Aniskevich S., Peiris P., Shapiro D.P. Proceedings of the 2009 Annual Meeting of the American Society of Anesthesiologists. Abs 937.
Arterio-Venous Hemoglobin Differences in Healthy Subjects during Rapid Volume Expansion.
Rook J.L., Khezri S., Bertolizio G., Allard M. Proceedings of the 2009 Annual Meeting of the American Society of Anesthesiologists. A1294
Initial Evaluation of a New Continuous Noninvasive Haemoglobin Monitor (Pulse CO-Oximeter) in Surgical Patients.
Pérez A, Bisbe E., Álvarez J., Tarragón S., Escolano F. Eur J Anaesthesiol. 2009; 26 (Suppl 45): 3AP6-8E.
Noninvasive Measurement of Continuous Hemoglobin Concentration via Pulse CO-Oximetry.
Macknet M.R., Kimball-Jones P.L., Applegate R.L., Martin R.D., Allard M.W. Anesthesiology. 2007; 107: A1545.
Continuous Noninvasive Measurement of Hemoglobin via Pulse CO-Oximetry.
Macknet M.R., Norton S., Kimball-Jones P., Applegate R., Martin R., Allard M. Proceedings of the 17th Annual Meeting for Society for Technology in Anesthesia. 2007; STA-32.
Accuracy and Trending of Continuous Noninvasive Hemoglobin Monitoring in Patients Undergoing Liver Transplantation.
Huang PH, Shih BF, Tsai YF, Chung PC, Liu FC, Yu HP, Lee WC, Chang CJ, Lin CC. Transplant Proc. 2016 May;48(4):106770. doi: 10.1016/j.transproceed.2015.12.121. PubMed PMID: 27320558.
Continuous hemoglobin monitoring in pediatric trauma patients with solid organ injury.
Welker E, Novak J, Jelsma L, Koehler T, Davis A, DeCou J, Durkin E. J Pediatr Surg. 2017 Dec 27. pii: S0022-3468(17)30842-4.
Methaemoglobinemia after Liposuction under Tumescent Local Anaesthesia – Diagnostic Value of Pulse Oximetry
Brandt S, Kimberger O, Weber B, Klose A, Stockmann S, Schmeller W, et al . WJPS. 2022; 11 (1) :111-116. doi: 10.52547/wjps.11.1.111.
Methemoglobin and nitric oxide therapy in Ugandan children hospitalized for febrile illness: results from a prospective cohort study and randomized double-blind placebo-controlled trial.
Conroy AL, Hawkes M, Hayford K, Hermann L, McDonald CR, Sharma S, Namasopo S, Opoka RO, John CC, Liles WC, Miller C, Kain KC. BMC Pediatr. 2016 Nov 4;16(1):177.
The Measurement of Carboxyhemoglobin and Methemoglobin using a Non-Invasive Pulse CO-Oximeter.
Zaouter C., Zavorsky G.S. Respir Physiol Neurobiol. 2012 May 15;182(2-3):88-92.
Improved Accuracy of Methemoglobin Detection by Pulse CO-Oximetry during Hypoxia.
Feiner J.R., Bickler P.E. Anesth Analg. 2010 Nov;111(5):1160-7.
Non-Invasive Measurements of Carboxyhemoglobin and Methemoglobin in Children with Sickle Cell Disease.
Caboot J.B., Jawad A.F., McDonough J.M., Bowdre C.Y., Arens R., Marcus C.L., Mason T.B., Smith-Whitley K., Ohene-Frempong K., Allen J.L. Pediatr Pulmonol. 2012 Aug;47(8):808-15.
Pulse CO-Oximetry - Clinical Impact in the Emergency Department
Exadaktylos A, Braun CT, Ziaka M, Trends in Anaesthesia and Critical Care (2014), doi: 10.1016 j.tacc.2014.07.002.
Methemoglobinemia Precipitated by Benzocaine Used During Intubation
Afzal A, Collazo R, Fenves AZ, Schwartz J. Proc (Bayl Univ Med Cent). 2014 Apr;27(2):133-5.
Methemoglobin Levels in Generally Anesthetized Pediatric Dental Patients Receiving Prilocaine versus Lidocaine.
Gutenberg L.L., Chen J.W., Trapp L.. Anesth Prog. 2013 Fall;60(3):99-108.
The current status of continuous noninvasive measurement of total, carboxy, and methemoglobin concentration.
Shamir M.Y., Avramovich A., Smaka T. Anesth Analg. 2012 May;114(5):972-8.
The Usefulness of Noninvasive MetHb Monitoring at HBOT Department (Pulse CO-Oximetry Masimo Rainbow SET RAD-57).
Nakashima M., Tsutsumi Y., Ifuku T., Tachibana H., Tamehiro K. , Taki K., Shima H. Crit Care Med. 2010 Vol. 38, No. 12 (Suppl.).
Pulse Oximeter Methemoglobin Measurements in Patients with Tumescent Anaesthesia and Prilocaine.
Boye S., Opp A., Klose A., Schmeller W., Gehring H. Proceedings of the 2010 Annual Meeting of the American Society of Anesthesiologists. A886.
Pulse-Oximetric Measurement of Prilocaine-Induced Methemoglobinemia in Regional Anesthesia.
Soeding P., Deppe M., Gehring H. Anesth Analg. 2010 Oct;111(4):1065-8.
Accuracy of Methemoglobin Detection by Pulse CO-Oximetry during Hypoxia.
Feiner J.R., Bickler P.E., Mannheimer P.D. Anesth Analg. 2010 Jul;111(1):143-8.
Severe Methemoglobinemia Detected by Pulse Oximetry.
Annabi E.H., Barker S,J. Anesth Analg. 2009;108:898–9.
The Prevalence of Methemoglobin in HIV Infected Patients on Chronic Dapsone Therapy for Prophylaxis of Pneumocystis jirovecii Infection.
O'Neal H.R. Crit Care Med. 2008 Vol. 36(12) (Suppl):682.
The Measurement of Dyshemoglobins and Total Hemoglobin by Pulse Oximetry.
Barker S.J., Badal J.J. Curr Opin Anaesthesiol. 2008 Dec;21(6):805-10.
Do Pulse CO-Oximeter Measures of SpMet and SpO2 Correlate with Blood Gas CO-Oximetry in Neonates?
Goldstein M.R., Saesim D., Macknet M., Allard M., Peverini R. Anesthesiology. 2008; 109 A1218.
Benzocaine Induced Methhemoglobin after T.E.E
Macknet M.R., Kimball-Jones P.L. Applegate R.L., Martin R.D., Allard M.W. Respir Care. 2007;52(11).
Rad-57 Rainbow CO-Oximeter in Detecting Methemoglobin during Upper GI Endoscopy - A Case Report
Padakandla U.B. Anesthesiology. 2007; 107: A1543.
Measurement of Carboxyhemoglobin and Methemoglobin by Pulse Oximetry: A Human Volunteer Study.
Barker S.J., Curry J., Redford D., Morgan S. Anesthesiology. 2006 Nov;105(5):892-7.
Noninvasive Monitoring for Methemoglobinemia after Topical Application of Benzocaine during Upper Endoscopy and Trans-esophageal Echocardiography
Schembre D., Ayub K., Gibbons E., Simmons S., Hampson N. Gastroenterol. 126(4) April 2004 Supplement 2. W1284.