Hemodinamik Monitörizasyon ve TEE Kullanımı
Özet
Referanslar
Rocca GD, Rocca AD. Hemodynamic monitoring in liver transplantation patients in the third millennium, Review. J Liver Transplant 2023; 11:100156. Reviews the updates in HDM in liver transplantation and suggests an algorithm for selection of the hemodynamic monitors for individual cases.
Hofer RE, Vogt MNP, Taner T, et al. Influence of intraoperative transesophageal echocardiography and pulmonary artery catheter monitoring on outcomes in liver transplantation. Transplant Direct 2020; 6:e525
Shillcutt SK, Ringenberg KJ, Chacon MM, et al. Liver transplantation: intraoperative transesophageal echocardiography findings and relationship to major postoperative adverse cardiac events. J Cardiothorac Vasc Anesth 2016; 30:107–114.
Bezinover D, Mukhtar A, Wagener G, et al. Hemodynamic instability during liver transplantation in patients with end-stage liver disease: a consensus document from ILTS, LICAGE, and SATA. Transplantation 2021; 105:2184–2200
Pinsky MR, Cecconi M, Chew MS, et al. Effective hemodynamic monitoring. Crit Care 2022; 26:294
Flick M, Bergholz A, Sierzputowski P, et al. What is new in hemodynamic monitoring and management? J Clin Monit Comput 2022; 36:305–313
Clin Monit Comput 2022; 36:17–31. 25. Meidert AS, Dolch ME, Muhlbauer K, et al. Oscillometric versus invasive blood pressure measurement in patients with shock: a prospective observational study in the emergency department. J Clin Monit Comput 2021; 35:387–393
Ahuja S, Mascha EJ, Yang D, et al. Associations of intraoperative radial arterial systolic, diastolic, mean, and pulse pressures with myocardial and acute kidney injury after noncardiac surgery: a retrospective cohort analysis. Anesthesiol J Am Soc Anesthesiol 2019; 132:291–306.
Bianchini A, Laici C, Bordini M, et al. Using transesophageal echocardiography in liver transplantation with veno-venous bypass is a tool with many applications: a case series from an Italian Transplant Center. J Cardiovasc Dev Dis 2023; 10:32.
Li X, Wang X, Guan Z. New onset atrial fibrillation during orthotopic liver transplantation induced by iced saline injection for transpulmonary thermodilution: a case report. J Int Med Res 2022; 50
Snowden CP, Hughes T, Rose J, et al. Pulmonary edema in patients after liver transplantation. Liver Transpl 2000; 6:466–470
Ali SA, Arman HE, Shamseddeen H, et al. Cirrhotic cardiomyopathy: predictors of major adverse cardiac events and assessment of reversibility after liver transplant. J Cardiol 2023; 82:113–121.
Kaur H, Premkumar M. Diagnosis and management of cirrhotic cardiomyopathy. J Clin Exp Hepatol 2022; 12:186–199.
De Pietri L, Mocchegiani F, Leuzzi C, et al. Transoesophageal echocardiography during liver transplantation. World J Hepatol 2015; 7:2432–2448
Sharma V, Kleb C, Sheth C, et al. Cardiac considerations in liver transplantation. Cleve Clin J Med 2022; 89:46–55.
Dunkman WJ, Williams DA, Manning MW. Bleeding complications from transesophageal echocardiography for liver transplantation: a systematic review. Semin Cardiothorac Vasc Anesth 2022; 26:304–309.
Smith NK, Zerillo J, Kim SJ, et al. Intraoperative cardiac arrest during adult liver transplantation: incidence and risk factor analysis from 7 academic Centers in the United States. Anesth Analg 2021; 132:130–139
Parker M, Pinsky M, Takala J, et al. The story of the pulmonary artery catheter: five decades in critical care medicine. J Crit Care Med 2023; 51:159–163. Reviews the history of the PAC, the causes of decline in its use, limitations of PAC, and potential role in HDM
Arias-Ortiz J, Vincent J. The pulmonary artery catheter. Curr Opin Crit Care 2023; 29:231–235. Reviews most recent literature and alternatives to PAC and provides recommendations on individualized use of PAC
Messina A, Alicino V, Cecconi M. Transpulmonary thermodilution. Curr Opin Crit Care 2023; 29:223–230
Giorgio Della Rocca, Alessandra Della Rocca bHemodynamic monitoring in liver Transplantation patients in the third millennium. Journal of Liver Transplantation Volume 11, August 2023, 100156
Kim UR, Wang AT, Garvanovic SH, et al. Central versus peripheral invasive arterial blood pressure monitoring in liver transplant surgery. Cureus 2022; 14:e33095.
Rudnick MR, Marchi LD, Plotkin JS. Hemodynamic monitoring during liver transplantation: a state of the art review. World J Hepatol 2015; 7:1302–1311.
Krenn CG, De Wolf AM. Current approach to intraoperative monitoring in liver transplantation. Curr Opin Organ Transplant 2008; 13:285–290.
Fernandez TMA, SchofieldN, Krenn CG, etal. Whatistheoptimalanesthetic monitoring regarding immediate and short-term outcomes after liver trans plantation? A systematic review of the literature and expert panel recom mendations. Clin Transplant 2022; 36:e14643.
Wax DB, Lin HM, Leibowitz AB. Invasive and concomitant noninvasive intraoperative blood pressure monitoring: observed differences in measure ments and associated therapeutic interventions. Anesthesiology 2011; 115:973–978.
Shin BS, Kim GS, Ko JS, et al. Comparison of femoral arterial blood pressure with radial arterial blood pressure and noninvasive upper arm blood pressure in the reperfusion period during liver transplantation. Transplant Proc 2007; 39:1326–1328
Singh A, Bahadorani B, Wakefield BJ, et al. Brachial arterial pressure monitoring during cardiac surgery rarely causes complications. Anesthesiology 2017; 126:1065–1076.
Chemla D, Millasseau S. A systematic review of invasive, high-fidelity pressure studies documenting the amplification of blood pressure from the aorta to the brachial and radial arteries. J Clin Monit Comput 2021; 35:1245–1252.
Schellenberg M, Hawley L, Biswas S, et al. Complications following brachial arterial catheterization in the surgical intensive care unit. Am Surg 2020; 86:1260–1263.
Handlogten KS, Wilson GA, Clifford L, et al. Brachial artery catheterization: an assessment of use patterns and associated complications. Anesth Analg 2014; 118:288–295.
Matthew Lee, Laurence Weinberg, Brett Pearce , Nicholas Scurrah , David A Story , Param Pillai , Peter R McCall , Larry P McNicol , Philip J Peyton. Agreement between radial and femoral arterial blood pressure measurements during orthotopic liver transplantation. Crit Care Resusc. 2015 Jun;17(2):101-7.
Meidert AS, Dolch ME, Muhlbauer K, et al. Oscillometric versus invasive blood pressure measurement in patients with shock: a prospective observational study in the emergency department. J Clin Monit Comput 2021; 35:387–393.
Seidlerova J, Tumova P, Rokyta R, et al. Factors influencing the accuracy of noninvasive blood pressure measurements in patients admitted for cardiogenic shock. BMC Cardiovasc Disord 2019; 19:150.
Lehman LW, Saeed M, Talmor D, et al. Methods of blood pressure measurement in the ICU. Crit Care Med 2013; 41:34–40.
Shin BS, Kim GS, Ko JS, et al. Comparison of femoral arterial blood pressure with radial arterial blood pressure and noninvasive upper arm blood pressure in the reperfusion period during liver transplantation. Transplant Proc 2007; 39:1326–1328.
Brezeanu LN, Brezeanu RC, Diculescu M, et al. Anaesthesia for liver transplantation: an update. J Crit Care Med (Targu Mures) 2020; 6:91–100.
Fan YC, Wang XQ, Zhu DY, et al. Association of different central venous pressure levels with outcome of living-donor liver transplantation in children under 12 years. World J Pediatr 2023; 19:170–179.
Ye H, Wu H, Li B, et al. Application of cardiovascular interventions to decrease blood loss during hepatectomy: a systematic review and metaanalysis. BMC Anesthesiol 2023; 23:89.
Shih TH, Tsou YH, Huang CJ, et al. The correlation between CVP and SVV and intraoperative minimal blood loss in living donor hepatectomy. Transplant Proc 2018; 50:2661–2663
Bootsma IT, Boerma EC, Scheeren TWL, et al. The contemporary pulmonary artery catheter. Part 2: measurements, limitations, and clinical applications. J Clin Monit Comput 2022; 36:17–31.
Huan S, Dai J, Song S, et al. Stroke volume variation for predicting responsiveness to fluid therapy in patients undergoing cardiac and thoracic surgery: a systematic review and meta- analysis. BMJ Open 2022; 12:e051112.
De Backer D, Aissaoui N, Cecconi M, et al. How can assessing hemodynamics help to assess volume status? Intensive Care Med 2022; 48:1482–1494
Pinsky MR, Kellum JA, Bellomo R. Central venous pressure is a stopping rule, not a target of fluid resuscitation. Crit Care Resusc 2014; 16:245–246
Dahmani S, Paugam-Burtz C, Gauss T, et al. Comparison of central and mixed venous saturation during liver transplantation in cirrhotic patients: a pilot study. Eur J Anaesthesiol 2010; 27:714–719.
Squara P. Central venous oxygenation: when physiology explains apparent discrepancies. Crit Care 2014; 18:579.
Chetana Shanmukhappa S, Lokeshwaran S. Venous oxygen saturation. [Updated 24 October 2022]. StatPearls [Internet]. Treasure Island, FL: StatPearls Publishing; 2023 Jan
Equeux P, Bouckaert Y, Sekkat H, et al. Continuous mixed venous and central venous oxygen saturation in cardiac surgery with cardiopulmonary bypass. Eur J Anaesthesiol 2010; 27:295–299.
Thomas MA Fernandez, Nick Schofield , Claus G Krenn , Nicole Rizkalla , Michael Spiro Dimitri Aristotle Raptis , Andre M De Wolf , William T Merritt ,What is the optimal anesthetic monitoring regarding immediate and short‐term outcomes after liver transplantation?—A systematic review of the literature and expert panel recommendations. Clin Transplant. 2022 Dec 9;36(10):e14643
Recco DP, Roy N, Gregory AJ, et al. Invasive and noninvasive cardiovascular monitoring options for cardiac surgery. JTCVS Open 2022; 10:256–263
Rali AS, Butcher A, Tedford RJ, et al. Contemporary review of hemodynamic monitoring in the critical care setting. US Cardiol Rev 2022; 16:e12
De Backer D, Vincent JL. The pulmonary artery catheter: is it still alive? Curr Opin Crit Care 2018; 24:204–208.
Tamura Y, Tamura Y, Taniguchi Y, et al. Current clinical understanding and effectiveness of Porto pulmonary hypertension treatment. Review article. Front Med 2023; 10:2023.
Joosten A, Carrier FM, Menioui A, et al. Incidental finding of elevated pulmonary arterial pressures during liver transplantation and postoperative pulmonary complications. BMC Anesthesiol 2022; 22:300.
Koulava A, Sannani A, Levine A, et al. Diagnosis, treatment, and management of orthotopic liver transplant candidates with portopulmonary hypertension. Cardiol Rev 2018; 26:169–176.
Kandil S. Intraoperative anesthetic management of the liver transplant recipient with portopulmonary hypertension. Curr Opin Organ Transplant 2019; 24:121–130
Atsukawa M, Tsubota A, Tamura Y, et al. How do the 2022 European Society of Cardiology/European Respiratory Society guidelines modify the diagnosis of portopulmonary hypertension in patients with cirrhosis complicated by portal hypertension? A post hoc analysis. JGH Open 2023; 7:588–590.
Martino S, Cartin-Ceba R, Findlay JY, et al. Frequency and outcomes of patients with increased mean pulmonary artery pressure at the time of liver transplantation. Transplantation 2017; 101:101–106.
Steib A, Gohard R, Beller JP, et al. Mixed venous oxygen saturation monitoring during liver transplantation. Eur J Anaesthesiol 1993; 10:267–271.
El-Masry A, Mukhtar AM, el-Sherbeny AM, et al. Comparison of central venous oxygen saturation and mixed venous oxygen saturation during liver transplantation. Anaesthesia 2009; 64:378–382.
Gonzalez LS, Coghlan C, Alsatli RA, et al. The entrapped pulmonary artery catheter. J Cardiothorac Vasc Anesth 2022; 36:4198–4207.
Nakanishi T, Kato S, Tamura T, et al. Malposition of a pulmonary artery catheter in the left ventricle: a case report. JA Clin Rep 2023; 9:29
Su B, Tsai Y, Chen C, et al. Cardiac output derived from arterial pressure waveform analysis in patients undergoing liver transplantation: validity of a third-generation device. Transplant Proc 2012; 44:424–428
Szabo C, Betances-Fernandez M, Navas-Blanco JR, et al. PRO: the pulmonary artery catheter has a paramount role in current clinical practice. Ann Card Anaesth 2021; 24:4–7.
SoongW, SherwaniSS, AultML, etal. United States practice patterns in the use of transesophageal echocardiography during adult liver transplantation. J Cardiothorac Vasc Anesth 2014; 28:635–639.
Efrimescu CI, Moorthy A, Griffin M. Rescue transesophageal echocardio graphy: a narrative review of current knowledge and practice. J Cardiothorac Vasc Anesth 2023; 37:584–600.
Odewole M, Sen A, Okoruwa E, et al. Systematic review with meta-analysis: incidence of variceal hemorrhage in patients with cirrhosis undergoing transe sophagealechocardiography.AlimentPharmacolTher2022;55:1088–1098
Nguyen-Buckley C, Bezinover D, Bhangui P, et al. International Liver Trans plantation Society/Society for Advancement of Transplant Anesthesia Con sensus Statement on Essential Attributes of a Liver Transplant Anesthesiologist. Transplantation 2023; 107:1427–1433.
Reeves ST, Finley AC, Skubas NJ, etal. Basic perioperative transesophageal echocardiography examination: a consensus statement of the American Society of Echocardiography and the Society of Cardiovascular Anesthe siologists. J Am Soc Echocardiogr 2013; 26:443–456.
Ueda Y, Kawaji T, Komura H, et al. Usefulness of intraoperative transeso phageal echocardiography for hemodynamic management of liver transplan tation in a patient with massive polycystic liver disease: a case report. JA Clin Rep 2023; 9:54.
Rong LQ, Kaushal M, Mauer E, et al. Two- or 3-dimensional echocardio graphy-derived cardiac output cannot replace the pulmonary artery catheter in cardiac surgery. J Cardiothorac Vasc Anesth 2020; 34:2691–2697.
Kan CFK, Skaggs JD. Current commonly used dynamic parameters and monitoring systems for perioperative goal-directed fluid therapy: a review. Yale J Biol Med 2023; 96:107–123.
Biais M, Nouette-Gaulain K, Roullet S, et al. A comparison of stroke volume variation measured by Vigileo/FloTrac system and aortic Doppler echocar diography. Anesth Analg 2009; 109:466–469.
Odewole M, Sen A, Okoruwa E, et al. Systematic review with meta-analysis: incidence of variceal hemorrhage in patients with cirrhosis undergoing transe sophagealechocardiography.AlimentPharmacolTher2022;55:1088–1098.
Bezinover D, Mukhtar A, Wagener G, et al. Hemodynamic instability during liver transplantation in patients with end-stage liver disease: a consensus document from ILTS, LICAGE, and SATA. Transplantation 2021; 105:2184–2200.
De Marchi L, Wang CJ, Skubas NJ, et al. Safety and benefit of transoeso phageal echocardiography in liver transplant surgery: a position paper from the society for the advancement of transplant anesthesia (SATA). Liver Transpl 2020; 26:1019–1029.
Isaak RS, Kumar PA, Arora H. PRO: transesophageal echocardiography should be routinely used for all liver transplant surgeries. J Cardiothorac Vasc Anesth. 2017(31):2282‐2286.
Cywinski JB, Maheshwari K. Con: transesophageal echocardiography is not recommeded as a routine monitor for patients undergoing liver transplantation. J Cardiothorac Vasc Anesth. 2017(31):2287‐2289.
De Wolf AM. Pulmonary artery catheter: rest in peace? Not just quite yet. Liver Transpl. 2008(14):917‐918.
ChenX, OwenCA, HuangEC, etal. Artificialintelligenceinechocardiography for anesthesiologists. J Cardiothorac Vasc Anesth 2021; 35:251–261.
Zhou J, Du M, Chang S, Chen Z. Artificial intelligence in echocardiography: detection, functional evaluation, and disease diagnosis. Cardiovasc Ultra sound 2021; 19:29.
Ramachandran G, Sundar AS, Venugopal V, et al. Recent advances in cardiac anaesthesia. Indian J Anaesth 2023; 67:78–84. Describes the role of artificial intelligence in improving TEE practice in anesthesia.
Zerillo J, Hill B, Kim S, DeMaria S Jr, Mandell S. Amerika Birleşik Devletleri'ndeki anestezistler arasında yetişkin karaciğer naklinde transözofageal ekokardiyografinin kullanımı, eğitimi ve etkinliği hakkındaki görüşler. Semin Cardiothorac Vasc Anesth. 2018;22(2):137‐145.
Burger‐Klepp U, Karatosic R, Thum M, et al. Transesophageal echocardiography during orthotopic liver transplantation in patients with esophagogastric varices. Transplantation. 2012;94:192‐196.
Lu SY, Matsusaki T, Abuelkasem E, et al. Complications related to invasive hemodynamic monitors during adult liver transplantation. Clin Transplant. 2013;27:823‐828.
Myo Bui CC, Worapot A, Xia W, et al. Gastroesophageal and hemorrhagic complications associated with intraoperative transesophageal echocardiography in patients with model for end‐stage liver disease score 25 or higher. J Cardiothorac Vasc Anesth. 2015;29(3):594‐597.
Pai SL, Aniskevich S, Feinglass NG, et al. Complications related to intraoperative transesophageal echocardiography in liver transplantation. Springerplus. 2015;4:480. [DOI] [PMC free article] [PubMed] [Google Scholar
Markin NW, Sharma A, Grant W, Shillcut S. The safety of transesophageal echocardiography in patients undergoing orthotopic liver transplantation. J Cardiothorac Vasc Anesth. 2015;29(3):588‐593.
Shilcutt SK, Ringenberg KJ, Chacon MM, et al. Liver transplantation: intraoperative transesophageal echocardiography findings and relationship to major postoperative adverse cardiac events. J Cardiothorac Vasc Anesth. 2016;30(1):107‐114.
Couture EJ, Laferriere-Langlois P, Denault A. New developments in contin uous hemodynamic monitoring of the critically ill patient. Can J Cardiol 2023; 39:432–443. A comprehensive review of the recent advances in HDM including the integration of artificial intelligence with an emphasis on noninvasive and minimally invasive CO monitors. 8. & Arias O
Saugel B, Kouz K, Scheeren TWL, et al. Cardiac output estimation using pulse wave analysis—physiology, algorithms, and technologies: a narrative review. Br J Anaesth 2021; 126:67–76.
Kouz K. Scheeren TWL, de Backer D, et al. Pulse wave analysis to estimate cardiac output. Anesthesiology 2021; 134:119–126.
Grensemann J. Cardiac output monitoring by pulse contour analysis, the technical basics of less-invasive techniques. Front Med (Lausanne) 2018; 5:64.
Thomsen K, Kouz K, Saugel B. Pulse wave analysis: basic concepts and clinical application in intensive care medicine. Curr Opin Crit Care 2023; 29:215–222.
Della Rocca G, Costa MG, Chiarandini P, et al. Arterial pulse cardiac output agreement with thermodilution in patients in hyperdynamic conditions. J Cardiothorac Vasc Anesth 2008; 22:681–687.
Peyton PJ, Chong SW. Minimally invasive measurement of cardiac output during surgery and critical care: a meta-analysis of accuracy and precision. Anesthesiology 2010; 113:1220–1235.
Costa MG, Chiarandini P, Della Rocca G. Hemodynamics during liver transplantation. Transplant Proc 2007; 39:1871–1873
Della Rocca G, Costa MG, Chiarandini P, et al. Arterial pulse cardiac output agreement with thermodilution in patients in hyperdynamic conditions. J Cardiothorac Vasc Anesth 2008; 22:681–687.
Newby DE, Hayes PC. Hyperdynamic circulation in liver cirrhosis: not peripheral vasodilatation but ‘splanchnic steal’. QJM 2002; 95:827–830.
Teboul J-L, Monnet X, Chemla D, et al. Arterial pulse pressure variation with mechanical ventilation. Am J Respir Crit Care Med 2019; 199:22–31.
Reydellet L, Blasco V, Mercier MF, et al. Impact of a goal-directed therapy protocol on postoperative fluid balance in patients undergoing liver trans plantation: a retrospective study. Ann Fr Anesth Reanim 2014; 33:e47–e54.
Jessen MK, Vallentin MF, Holmberg MJ, et al. Goal-directed haemodynamic therapy during general anaesthesia for noncardiac surgery: a systematic review and meta-analysis. Br J Anaesth 2022; 128:416–433
De Backer D, Aissaoui N, Cecconi M, et al. How can assessing hemody namics help to assess volume status? Intensive Care Med 2022; 48:1482–1494.
Chong MA, Wang Y, Berbenetz NM, McConachie I. Does goal-directed haemodynamic and fluid therapy improve peri-operative outcomes? A sys tematic review and meta-analysis. Eur J Anaesthesiol 2018; 35:469–483
Sherif Kandil and Ashraf Sedra. Hemodynamic monitoring in liver transplantation ‘the hemodynamic system’. Curr Opin Organ Transplant 2024, 29:72–81
De Backer D, Vincent JL. The pulmonary artery catheter: Still alive? Curr Opin Crit Care. 2018;24(3):204–08. doi: 10.1097/MCC.0000000000000502.
Halvorsen PS, Espinoza A, Lundblad R, et al. Agreement between PiCCO pulse-contour analysis, pulmonary artery thermodilution and transthoracic thermodilution during off-pump coronary artery bypass surgery. Acta Anaesthesiol Scand. 2006;50(9):1050–57.
Quintana-Villamandos B, Barranco M, Fernandez I, et al. Cardiac output monitoring with pulmonary and trans-cardiopulmonary thermodilution in left ventricular assist devices. Interchangeable Methods? Front Physiol. 2022;13:889190.
Friesecke S, Heinrich A, Abel P, et al. Comparison of pulmonary artery and aortic transpulmonary thermodilution for monitoring cardiac output in patients with severe heart failure: validation of a new method. Crit Care Med. 2009;37(1):119–23
Pittman J, Bar-Yosef S, SumPing J, et al. Continuous cardiac output monitoring by pulse contour analysis: comparison with lithium-indicator dilution cardiac output measurement. Crit Care Med. 2005;33(9):2015–21.
Kouz K, Michard F, Bergholz A, Vokuhl C, et al. Concordance between continuous and intermittent pulmonary artery thermodilution for cardiac output measurement in perioperative and critical care medicine: a systematic review and meta-analysis. Crit Care. 2021;25(1):125.
Vetrugno L, Bignami E, Barbariol F, et al. Cardiac output measurement in liver transplant patients using lung and transpulmonary thermodilution: a comparative study. J Clin Monit Comput. 2019;33(2):223–31.
Della Rocca G, Costa MG, Pompei L, et al. Continuous and intermittent cardiac output measurement: comparison of pulmonary artery catheter and aortic transpulmonary technique. Br J Anesth. 2002;88(3):350–6.
Yulu Feng, Zexi Ye, Yuekun Shen, Wei Xiong, Xiaoxiang Chen, Xiaoliang Gan, Shihong Wen and Lu Yang.A comparison of hemodynamic measurement methods during orthotopic liver transplantation: evaluating agreement and trending ability of PiCCO versus pulmonary artery catheter techniques. Feng et al. BMC Anesthesiology (2024) 24:201
Costa MG, Della Rocca G, Chiarandini P, et al. Continuous and intermittent cardiac output measurement in hyperdynamic conditions: pulmonary artery catheter andlithium dilution technique. Intensive Care Med. 2008;34:257‐263.
Costa MG, Chiarandini P, Scudeller L, et al. Uncalibrated continuous cardiac output measurement in liver transplant patients: liDCOrapid™ system and pulmonary artery catheter. J Cardiothorac Vasc Anesth. 2014;28(3):540‐546.
Krejci V, Vannucci A, Abbas A, Chapman W, Kangrga IM. Comparison of calibrated and uncalibrated arterial pressure-based cardiac output monitors during orthotopic liver transplantation. Liver Transplantation 2020;16:773‐782.
Biais M, Nouette-Gaulain K, Cottenceau V, et al. Measurement of cardiac output in patients undergoing liver transplantation: pulmonary artery catheter and uncalibrated arterial pressure waveform analysis. Anesth Analg. 2008;106(5):1480‐1486.
Tsai YF, Su BC, Lin CC, Liu FC, Lee WC, Yu HP. Cardiac output derived from arterial pressure waveform analysis: validation of third-generation software in patients undergoing orthotopic liver transplantation. Transplant Proc. 2012;44:433–437.]
Hashimoto DA, Witkowski E, Gao L, et al. Artificial intelligence in anesthe siology: current techniques, clinical applications, and limitations. Anesthe siology 2020; 132:379–394.
Sribar A, Jurinjak IS, Almahariq H, et al. Hypotension prediction index guided versus conventional goal directed therapy to reduce intraoperative hypoten sion during thoracic surgery: a randomized trial. BMC Anesthesiol 2023; 23:101.
Kurz A, Sessler DI, Lenhardt R. Perioperative normothermia to reduce the incidence of surgical wound infection and shorten hospital stay. Wound infection and temperature group study. N Engl J Med. 1996;334(19):1209–1215. ]
Lewis ME, Al‐Khalidi AH, Townend JN, Coote J, Nonser RS. Effects of hypothermia on human left ventricular contractile function during cardiac surgery. J Am Coll Cardiol. 2002;39(1):102–108.
Warnaar N., Molenaar IQ, Colquhoun SD, Slooff MJ, Sherwani S., de Wolf AM, Porte RJ Karaciğer transplantasyonunu zorlaştıran intraoperatif pulmoner emboli ve intrakardiyak tromboz: Sistematik bir inceleme. J. Thromb. Haemost. 2008;6:297–302.
Lerner AB, Sundar E., Mahmood F., Sarge T., Hanto DW, Panzica PJ Antifibrinolitik ilaç kullanılmadan karaciğer nakli sırasında dört kardiyopulmoner tromboembolizm vakası. Anestezi. Analg. 2005;101:1608–1612.
Görlinger K., Schaden E., Saner F.H. Perioperative hemostasis in hepatic surgery. In: Marcucci C.E., Schoettker P., editors. Perioperative Hemostasis: Coagulation for Anesthesiologists. Springer; Berlin/Heidelberg, Germany: 2015. pp. 267–283. [Google Scholar]
Lisman T., Stravitz R.T. Rebalanced hemostasis in patients with acute liver failure. Semin. Thromb. Hemost. 2015;41:468–473. doi: 10.1055/s-0035-1550430. [DOI] [PubMed] [Google Scholar]
Salami A., Qureshi W., Kuriakose P., Moonka D., Yoshida A., Abouljoud M. Frequency and predictors of venous thromboembolism in orthotopic liver transplant recipients: A single-centre retrospective review. Transplant. Proc. 2013;45:315–319. doi: 10.1016/j.transproceed.2012.06.060. [DOI] [PubMed] [Google Scholar]
Prah G.N., Lisman S.R., Maslow A.D., Freeman R.B., Rohrer R.J. Transesophageal echocardiography reveals an unusual cause of hemodynamic collapse during orthotopic liver transplantation—Two case reports. Transplantation. 1995;59:921–925
Luddington R.J. Thrombelastography/thromboelastometry. Clin. Lab. Haematol. 2005;27:81–90. doi: 10.1111/j.1365-2257.2005.00681.x. [DOI] [PubMed] [Google Scholar][Ref list]
Mallett S. Clinical utility of viscoelastic tests in liver diseases and during liver transplantation. Semin. Thromb. Hemost. 2015;41:527–537.
Dimitrova-Karamfilova A., Patokova Y., Solarova T., Petrova I., Natchev G. Rotation thromboelastography for assessment of hypercoagulation and thrombosis in patients with cardiovascular diseases. J. Life Sci. 2012;6:28–35.
Hincker A , Feit J., Sladen R.N., Wagener G. Rotational thromboelastometry predicts thromboembolic complications after major non-cardiac surgery. Crit. Care. 2014;18:549. doi: 10.1186/s13054-014-0549-2.
de Boer MT, Christensen MC, Asmussen M, van der Hilst CS, Hendriks HG, Slooff MJ, Porte RJ. Effect of intraoperative transfusion of platelets and red blood cells on survival after liver transplantation. Anesth Analg. 2008;106:32–44, table of contents.
Pereboom IT, de Boer MT, Haagsma EB, Hendriks HG, Lisman T, Porte RJ. Platelet transfusion during liver transplantation is associated with increased postoperative mortality from acute lung injury. Anesth Analg. 2009;108:1083–1091.
Tenza E, Bernardo CG, Escudero D, Otero J, Quindós B, Miyar A, Vázquez L, Taboada F, Rodríguez M, González-Dìéguez L, et al. Complications of liver transplantation in the intensive care unit and at 6 months. Transplant Proc. 2009;41:1050–1053
Yildirim IO, Salihoglu Z, Bolayirli MI, Colakoglu N, Yuceyar L. Prospective evaluation of factors affecting morbidity and mortality of patients undergoing liver resection surgery. Hepatogastroenterology. 2012;59:1928–1932.
Tobin JM, Tanaka KA, Smith CE. Factor concentrates in trauma. Curr Opin Anesthesiol. 2015;28:217–226.
Massicotte L, Denault AY, Beaulieu D, Thibeault L, Hevesi Z, Nozza A, Lapointe R, Roy A. Transfusion rate for 500 consecutive liver transplants: experience of a liver transplant center. Transplantation. 2012;93:1276–1281.
Kirchner C, Dirkmann D, Treckmann JW, Paul A, Hartmann M, Saner FH, Görlinger K. Coagulation management with factor concentrates in liver transplantation: a single-center experience. Transfusion. 2014;54:2760–2768.
Weeder PD, Porte RJ, Lisman T. Hemostasis in liver disease: implications of new concepts for perioperative management. Transfus Med Rev. 2014;28:107–113.
Planinsic RM, van der Meer J, Testa G, Grande L, Candela A, Porte RJ, Ghobrial RM, Isoniemi H, Schelde PB, Erhardtsen E, et al. Safety and efficacy of single bolus administration of recombinant factor VIIa in liver transplantation due to chronic liver disease. Liver Transplantation 2005;11:895–900.
Bräuer A, Quintel M. Forced air warming: technology, physical background and practical aspects. Curr Opin Anaesthesiol. 2009;22:769–774.
Campbell G, Alderson P, Smith AF, Warttig S. Warming of intravenous and irrigation fluids to prevent unintended perioperative hypothermia. Cochrane Database Syst Rev. 2015;4:CD009891.
Hiippala ST, Myllylä GJ, Vahtera EM. Modification of major blood loss with hemostatic factors and plasma-poor red blood cell concentrates. Anesth Analg. 1995;81:360–365.
Uzung Yoon, Justyna Bartoszko, Dmitri Bezinover, Gianni Biancofiore, Katherine T Forkin, Suehana Rahman, Michael Spiro, Dimitri Aristotle Raptis, Yoogoo Kang; ERAS4OLT.org Working Group. Intraoperative transfusion management, antifibrinolytic therapy, coagulation monitoring and the impact on short-term outcomes after liver transplantation-A systematic review of the literature and expert panel recommendations. Clin Transplant. 2022 Oct;36(10
Shangraw RE, Jahoor F. Mechanism of dichloroacetate-induced hypolactatemia in humans with or without cirrhosis. Metabolism. 2004;53:1087–1094. 47.
Kruszynska YT, Home PD, McIntyre N. Relationship between insulin sensitivity, insulin secretion, and glucose tolerance in cirrhosis. Hepatology. 1991;14:103–111.
Shmueli E., Walker M., Alberti G. Normal splanchnic but impaired peripheral insulin-stimulated glucose uptake in cirrhosis. Hepatology. 1993;18:86–95.
Wallia A., Parikh ND, Molitch ME Posttransplant hyperglycemia is associated with increased risk of liver allotransplant rejection. Transplantation. 2010;89:222–226.
Park C., Hsu C., Neelakanta G. Severe intraoperative hyperglycemia is independently associated with surgical site infection after liver transplantation. Transplantation. 2009;87:1031–1036.
Marik PE, Preiser JC Toward an understanding of tight glycemic control in the intensive care unit: a systematic review and meta-analysis. Chest. 2009;137:544–551.
Finfer S., Chittock DR, Su SY Intensive and conventional glucose control in critically ill patients. N Engl J Med. 2009;360:1283–1297.
Hackworth WA, Heuman DM, Sanyal AJ Effect of hyponatremia on outcomes after orthotopic liver transplantation. Liver Int. 2009;29:1071–1077
Merritt WT Metabolism and liver transplantation: a review of perioperative issues. Liver Transplantation 2000;6(4 suppl. 1):S76–S84.
Dawwas M.F. Lewsey J.D., Watson C.J. The impact of serum potassium concentration on mortality after liver transplantation: a cohort multicenter study. Transplantation. 2009;88:402–410
Xia V.W., Ghobrial R.M., Du B. Predictors of hyperkalemia in the prereperfusion, early postreperfusion, and late post reperfusion periods during adult liver transplantation. Anesth Analg. 2007;105:780–785
Diaz J., Acosta F., Parrilla P. Serum ionized magnesium monitoring during orthotopic liver transplantation. Transplantation. 1996;61:835–837.
Ranasinghe D.N., Mallett S.V. Hypomagnesaemia, cardiac arrhythmias and orthotopic liver transplantation. Anaesthesia. 1994;49:403–405.
Scott V.L., De Wolf A.M., Kang Y. Ionized hypomagnesemia in patients undergoing orthotopic liver transplantation: a complication of citrate. Liver Transpl Surg. 1996 Sep;2(5):343–347.
Bennett M.W., Webster N.R., Sadek S.A. Alterations in plasma magnesium concentrations during liver transplantation. Transplantation. 1993;56:859–861
Moreau R., Hadengue A., Soupison T. Arterial and mixed venous acid-base status in patients with cirrhosis. Effect of liver failure. Liver. 1993;13:20–24.
Shangraw RE Acid-base balance. Miller RD, ed. Anesthesia. 5th ed. Churchill Livingstone; Philadelphia: 2000. pp. 1390–1413.
Shangraw RE, Robinson ST Oxygen metabolism during liver transplantation: effect of dichloroacetate. Anesth Analg. 1997;85:746–752.
Shangraw RE, Winter R., Hromco J. Amelioration of lactic acidosis with dichloroacetate during human liver transplantation. Anesthesiology. 1994;81:1127–1138.