Evaluation of corrected flow time in oesophageal Doppler as a predictor of fluid responsiveness.
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Cinoo Kim | Y. Jeon | J. Bahk | Y. Jeon | S. Yoon | J-H Lee | J-T Kim | S Z Yoon | Y-J Lim | Y Jeon | J-H Bahk | C S Kim | J-H Lee | Y. Lim | Jin-Tae Kim | S. Yoon | J. Bahk | C. S. Kim | J-T Kim | Jong-Hwan Lee
[1] J. E. de la Coussaye,et al. Noninvasive monitoring of cardiac output in critically ill patients using transesophageal Doppler. , 1998, American journal of respiratory and critical care medicine.
[2] S. King,et al. The use of the oesophageal Doppler monitor in the intensive care unit. , 2004, Critical care and resuscitation : journal of the Australasian Academy of Critical Care Medicine.
[3] M. Singer. The FTc is not an accurate marker of left ventricular preload , 2006, Intensive Care Medicine.
[4] Cheryl C. H. Yang,et al. Respiratory-related arterial pressure variability as an indicator of graded blood loss: involvement of the autonomic nervous system. , 2003, Clinical science.
[5] D. Conway,et al. Randomised controlled trial investigating the influence of intravenous fluid titration using oesophageal Doppler monitoring during bowel surgery * , 2002, Anaesthesia.
[6] F. Pillard,et al. Stroke output variations calculated by esophageal Doppler is a reliable predictor of fluid response , 2005, Intensive Care Medicine.
[7] G. Lebuffe,et al. Systolic Pressure Variation as a Guide to Fluid Therapy in Patients with Sepsis‐induced Hypotension , 1998, Anesthesiology.
[8] C. Baillard,et al. Haemodynamic Measurements (Continuous Cardiac Output and Systemic Vascular Resistance) in Critically Ill Patients: Transoesophageal Doppler versus Continuous Thermodilution , 1999, Anaesthesia and intensive care.
[9] Y Lecarpentier,et al. Total arterial compliance estimated by stroke volume-to-aortic pulse pressure ratio in humans. , 1998, The American journal of physiology.
[10] D. Chemla,et al. Relation between respiratory changes in arterial pulse pressure and fluid responsiveness in septic patients with acute circulatory failure. , 2000, American journal of respiratory and critical care medicine.
[11] G. Bernardin,et al. Continuous noninvasive measurement of aortic blood flow in critically ill patients with a new esophageal echo-Doppler system. , 1998, Journal of critical care.
[12] E. Bennett,et al. Continuous hemodynamic monitoring by esophageal Doppler. , 1989, Critical care medicine.
[13] P. Glass,et al. Goal-directed Intraoperative Fluid Administration Reduces Length of Hospital Stay after Major Surgery , 2002, Anesthesiology.
[14] Cheryl C. H. Yang,et al. Effect of esmolol on positive-pressure ventilation-induced variations of arterial pressure in anaesthetized humans. , 2004, Clinical science.
[15] C. Mazer,et al. The Use of Transesophageal Echocardiography for Preload Assessment in Critically Ill Patients , 2000, Anesthesia and analgesia.
[16] M. Pinsky,et al. Esophageal Doppler monitoring predicts fluid responsiveness in critically ill ventilated patients , 2005, Intensive Care Medicine.
[17] M. Singer,et al. The validity of trans-esophageal Doppler ultrasonography as a measure of cardiac output in critically ill adults , 2004, Intensive Care Medicine.
[18] F. Michard,et al. Changes in Arterial Pressure during Mechanical Ventilation , 2005, Anesthesiology.
[19] A. Madan,et al. Esophageal Doppler ultrasound monitor versus pulmonary artery catheter in the hemodynamic management of critically ill surgical patients. , 1998, The Journal of trauma.
[20] K. Chergui,et al. Superior vena caval collapsibility as a gauge of volume status in ventilated septic patients , 2004, Intensive Care Medicine.
[21] A. Webb,et al. Effects of alterations in left ventricular filling, contractility, and systemic vascular resistance on the ascending aortic blood velocity waveform of normal subjects , 1991, Critical care medicine.
[22] R M Gardner,et al. Direct blood pressure measurement--dynamic response requirements. , 1981, Anesthesiology.
[23] A. Perel,et al. The effect of tidal volume and intravascular volume state on systolic pressure variation in ventilated dogs , 2004, Intensive Care Medicine.
[24] M. Singer,et al. Intraoperative intravascular volume optimisation and length of hospital stay after repair of proximal femoral fracture: randomised controlled trial , 1997, BMJ.
[25] A. Goetz,et al. Influence of tidal volume on left ventricular stroke volume variation measured by pulse contour analysis in mechanically ventilated patients , 2003, Intensive Care Medicine.
[26] Yves Lecarpentier,et al. Total arterial compliance estimated by stroke volume-to-aortic pulse pressure ratio in humans. , 1998, American journal of physiology. Heart and circulatory physiology.
[27] E. Bennett,et al. Noninvasive optimization of left ventricular filling using esophageal Doppler , 1991, Critical care medicine.