Perioperatif İleri Hemodinamik Monitörizasyon ve Hedefe Yönelik Sıvı Tedavisi Yaklaşımları

Yazarlar

Havva Süheyla Akın Uzan
https://orcid.org/0000-0001-9111-1475

Özet

Referanslar

Holte K, Sharrock NE, Kehlet H. Pathophysiology and clinical implications of perioperative fluid excess. Vol. 89, British Journal of Anaesthesia. Oxford University Press; 2002. p. 622–32.

Heming N, Moine P, Coscas R, Annane D. Perioperative fluid management for major elective surgery. Vol. 107, British Journal of Surgery. John Wiley and Sons Ltd; 2020. p. e56–62.

Curry FE, Michel CC. A fiber matrix model of capillary permeability. Microvasc Res. 1980;20(1):96–9.

Brettner F, Von Dossow V, Chappell D. The endothelial glycocalyx and perioperative lung injury. Vol. 30, Current Opinion in Anaesthesiology. Lippincott Williams and Wilkins; 2017. p. 36–41.

Sequeira V, van der Velden J. Historical perspective on heart function: the Frank–Starling Law. Biophys Rev. 2015;7(4):421–47.

Kendrick JB, Kaye AD, Tong Y, Belani K, Urman RD, Hoffman C, et al. Goal-directed fluid therapy in the perioperative setting. J Anaesthesiol Clin Pharmacol [Internet]. 2019 Apr;35(Suppl 1):S29–34. Available from: https://pubmed.ncbi.nlm.nih.gov/31142956

Suess EM, Pinsky MR. Hemodynamic Monitoring for the Evaluation and Treatment of Shock: What is the Current State of the Art? Semin Respir Crit Care Med. 2015;36(6):890–8.

Dilken, Olcay, Erdoğan, Elif, Dikmen Y. Yoğun Bakımda Sıvı Tedavisi ve Sıvıya Yanıtlılık. Senoglu N, editor. Olcularla Yoğun Bakım Protokolleri. 1st ed. 2018;173–9.

Marik PE, Lemson J. Fluid responsiveness: An evolution of our understanding. Br J Anaesth. 2014;112(4):617–20.

Thiele RH, Bartels K, Gan TJ. Inter-device differences in monitoring for goal-directed fluid therapy. Canadian Journal of Anesthesia. 2015;62(2):169–81.

Hendy A, Bubenek Ş. Pulse waveform hemodynamic monitoring devices: recent advances and the place in goal-directed therapy in cardiac surgical patients. Rom J Anaesth Intensive Care. 2016;23(1):55–65.

de Waal EE, Wappler F, Buhre WF. Cardiac output monitoring. Curr Opin Anaesthesiol. 2009 Feb;22(1):71–7.

Cherpanath TGV, Geerts BF, Lagrand WK, Schultz MJ, Groeneveld ABJ. Basic concepts of fluid responsiveness. Netherlands Heart Journal. 2013;21(12):530–6.

Sabatier C, Monge I, Maynar J, Ochagavia A. Assessment of cardiovascular preload and response to volume expansion. Medicina Intensiva (English Edition). 2012;36(1):45–55.

Monnet X, Teboul JL. Passive leg raising: Five rules, not a drop of fluid! Crit Care. 2015;19(1):18–20.

Vincent JL, Cecconi M, De Backer D. The fluid challenge. Vol. 24, Critical Care. BioMed Central Ltd; 2020.

Biais M, De Courson H, Lanchon R, Pereira B, Bardonneau G, Griton M, et al. Mini-fluid Challenge of 100 ml of Crystalloid Predicts Fluid Responsiveness in the Operating Room. Anesthesiology. 2017 Sep 1;127(3):450–6.

Kendrick J, Kaye A, Tong Y, Belani K, Urman R, Hoffman C, et al. Goal-directed fluid therapy in the perioperative setting. Vol. 35, Journal of Anaesthesiology Clinical Pharmacology. Wolters Kluwer Medknow Publications; 2019. p. 29–34.

Scully TG, Huang Y, Huang S, McLean AS, Orde SR. The effects of static and dynamic measurements using transpulmonary thermodilution devices on fluid therapy in septic shock: A systematic review. Vol. 48, Anaesthesia and Intensive Care. SAGE Publications Inc.; 2020. p. 11–24.

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. 2010 Jun;16(6):773–82.

Aykac ZZ, Arslantas MK. Fluid Therapy and Management (II) Monitoring and Prediction of Fluid Responsiveness. Journal Of Cardio-Vascular-Thoracic Anaesthesia And Intensive Care Society. 2018;

Mayer J, Boldt J, Mengistu AM, Röhm KD, Suttner S. Goal-directed intraoperative therapy based on autocalibrated arterial pressure waveform analysis reduces hospital stay in high-risk surgical patients: A randomized, controlled trial. Crit Care. 2010 Feb 15;14(1).

Fischer MO, Lemoine S, Tavernier B, Bouchakour CE, Houard M, Daccache G, et al. Individualized fluid management using the pleth variability index: A randomized clinical trial. Anesthesiology. 2020;(1):31–40.

Siswojo AS, Wong DMY, Phan TD, Kluger R. Pleth variability index predicts fluid responsiveness in mechanically ventilated adults during general anesthesia for noncardiac surgery. J Cardiothorac Vasc Anesth [Internet]. 2014;28(6):1505–9. Available from: http://dx.doi.org/10.1053/j.jvca.2014.04.010

Forget P, Lois F, De Kock M. Goal-directed fluid management based on the pulse oximeter-derived pleth variability index reduces lactate levels and improves fluid management. Anesth Analg. 2010;111(4):910–4.

Yayınlanan

16 Nisan 2025

Lisans

Lisans