Sıvı Yönetiminin Değerlendirilmesinde Ultrasonografinin Yeri
Özet
Referanslar
Charron, C., et al., Echocardiographic measurement of fluid responsiveness. Curr Opin Crit Care, 2006. 12(3): p. 249-54.
Sakr, Y., et al., Does dopamine administration in shock influence outcome? Results of the Sepsis Occurrence in Acutely Ill Patients (SOAP) Study. Crit Care Med, 2006. 34(3): p. 589-97.
Cecconi, M., et al., Consensus on circulatory shock and hemodynamic monitoring. Task force of the European Society of Intensive Care Medicine. Intensive Care Med, 2014. 40(12): p. 1795-815.
Bouchard, J.E. and R.L. Mehta, Fluid balance issues in the critically ill patient. Contrib Nephrol, 2010. 164: p. 69-78.
Ilyas, A., et al., Correlation of IVC Diameter and Collapsibility Index With Central Venous Pressure in the Assessment of Intravascular Volume in Critically Ill Patients. Cureus, 2017. 9(2): p. e1025.
Jardin, F., et al., Cyclic changes in arterial pulse during respiratory support. Circulation, 1983. 68(2): p. 266-74.
Beaulieu, Y. and P.E. Marik, Bedside ultrasonography in the ICU: part 2. Chest, 2005. 128(3): p. 1766-81.
Au, S.M. and A. Vieillard-Baron, Bedside echocardiography in critically ill patients: a true hemodynamic monitoring tool. J Clin Monit Comput, 2012. 26(5): p. 355-60.
Vieillard-Baron, A., et al., Echocardiography in the intensive care unit: from evolution to revolution? Intensive Care Med, 2008. 34(2): p. 243-9.
International expert statement on training standards for critical care ultrasonography. Intensive Care Med, 2011. 37(7): p. 1077-83.
Lichtenstein, D. and O. Axler, Intensive use of general ultrasound in the intensive care unit. Intensive Care Medicine, 1993. 19(6): p. 353-355.
Poelaert, J.I., et al., Evaluation of transesophageal echocardiography as a diagnostic and therapeutic aid in a critical care setting. Chest, 1995. 107(3): p. 774-9.
Jacob, M. and D. Chappell, Reappraising Starling: the physiology of the microcirculation. Curr Opin Crit Care, 2013. 19(4): p. 282-9.
Woodcock, T.E. and T.M. Woodcock, Revised Starling equation and the glycocalyx model of transvascular fluid exchange: an improved paradigm for prescribing intravenous fluid therapy. Br J Anaesth, 2012. 108(3): p. 384-94.
Vogel, J., et al., Influence of the endothelial glycocalyx on cerebral blood flow in mice. J Cereb Blood Flow Metab, 2000. 20(11): p. 1571-8.
Michard, F., et al., Relation between respiratory changes in arterial pulse pressure and fluid responsiveness in septic patients with acute circulatory failure. Am J Respir Crit Care Med, 2000. 162(1): p. 134-8.
Tousignant, C.P., F. Walsh, and C.D. Mazer, The use of transesophageal echocardiography for preload assessment in critically ill patients. Anesth Analg, 2000. 90(2): p. 351-5.
Feissel, M., et al., Respiratory changes in aortic blood velocity as an indicator of fluid responsiveness in ventilated patients with septic shock. Chest, 2001. 119(3): p. 867-73.
Michard, F. and J.L. Teboul, Predicting fluid responsiveness in ICU patients: a critical analysis of the evidence. Chest, 2002. 121(6): p. 2000-8.
Vincent, J.L., Hemodynamic support in septic shock. Intensive Care Med, 2001. 27 Suppl 1: p. S80-92.
Bernier-Jean, A., et al., The Diagnostic and Therapeutic Impact of Point-of-Care Ultrasonography in the Intensive Care Unit. J Intensive Care Med, 2017. 32(3): p. 197-203.
Feissel, M., et al., The respiratory variation in inferior vena cava diameter as a guide to fluid therapy. Intensive Care Med, 2004. 30(9): p. 1834-7.
Vieillard-Baron, A., et al., Influence of superior vena caval zone condition on cyclic changes in right ventricular outflow during respiratory support. Anesthesiology, 2001. 95(5): p. 1083-8.
Vieillard-Baron, A., et al., Cyclic changes in arterial pulse during respiratory support revisited by Doppler echocardiography. Am J Respir Crit Care Med, 2003. 168(6): p. 671-6.
Reuse, C., J.L. Vincent, and M.R. Pinsky, Measurements of right ventricular volumes during fluid challenge. Chest, 1990. 98(6): p. 1450-4.
Diebel, L.N., et al., End-diastolic volume. A better indicator of preload in the critically ill. Arch Surg, 1992. 127(7): p. 817-21; discussion 821-2.
Wagner, J.G. and J.W. Leatherman, Right ventricular end-diastolic volume as a predictor of the hemodynamic response to a fluid challenge. Chest, 1998. 113(4): p. 1048-54.
Tavernier, B., et al., Systolic pressure variation as a guide to fluid therapy in patients with sepsis-induced hypotension. Anesthesiology, 1998. 89(6): p. 1313-21.
Magder, S., More respect for the CVP. Intensive Care Med, 1998. 24(7): p. 651-3.
Practice parameters for hemodynamic support of sepsis in adult patients in sepsis. Task Force of the American College of Critical Care Medicine, Society of Critical Care Medicine. Crit Care Med, 1999. 27(3): p. 639-60.
Feissel, M., et al., Pre-ejection period variations predict the fluid responsiveness of septic ventilated patients. Crit Care Med, 2005. 33(11): p. 2534-9.