Bing RJ, Heimbecker R, Falholt W (1951) An estimation of the residual volume of blood in the right ventricle of normal and diseased humans hearts in vivo. Am Heart J 42:483–502
Google Scholar
Holt JP (1956) Estimate of the residual volume of the ventricle of the dog's heart by two indicator techniques. Circ Res 4:187–195
Google Scholar
Rapaport E (1966) Usefulness and limitations of thermal washout technics in ventricular volume measurements. Am J Cardiol 18:226–233
Google Scholar
Vincent JL, Thirion M, Brimioulle S, Lejeune P, Kahn RJ (1986) Thermodilution measurement of right ventricular ejection fraction with a modified pulmonary artery catheter. Intensive Care Med 12:33–38
Google Scholar
Kay HR, Afshari M, Barash P, Webler W, Iskandrian A, Bemis C, Hakki AH, Mundth ED (1983) Measurement of ejection fraction by thermal dilution techniques. J Surg Res 34:337–346
Google Scholar
Daskalov IK, Gueorguiev LV, Matveev MG (1978) Hybrid computer for dye-dilution curves. Med Biol Eng Comput 16:86–72
Google Scholar
Maruschak GF, Schauble JF (1985) Limitations of thermodilution ejection fraction: degradation of frequency response by catheter mounting of fast-response thermistors. Crit Care Med 13:679–682
Google Scholar
Mukherjee R, Spinale FG, von Recum AF, Crawford FA (1990) Rapid response thermistors to measure ventricular ejection fraction: in vitro validation. Trans IEEE Med Biol 12:466–467
Google Scholar
Newman E, Merell M, Genecin A, Monge C, Milnor W, McKeever W (1951) The dye dilution method for describing the central circulation. Circulation 4:735–74
Google Scholar
Bland JM, Altman DG (1986) Statistical methods for assessing agreement between two methods of clinical measurement. Lancet 8476:307–310
Google Scholar
Hurford WE, Zapol WM (1988) The right ventricle and critical illness: a review of anatomy, physiology, and clinical evaluation of its function. Intensive Care Med 14:448–457
Google Scholar
Dhainaut J-F (1988) Evaluation and applications of right ventricular performance monitoring in the ICU. Appl Cardiopulmonol Pathophysiol 2:47–57
Google Scholar
Jardin F, Dubourg O (1987) Evaluation of right ventricular function: echocardiographic techniques. In: Vincent JL, Suter PM (eds) Cardiopulmonary interactions in acute respiratory failure. Springer, Berlin Heidelberg Tokyo, pp 107–119
Google Scholar
Kaul S, Tei C, Hopkins JM, Shah PM (1984) Assessment of right ventricular function using two-dimensional echocardiography. Am Heart J 107:526–531
Google Scholar
Berger HJ, Matthay RA (1981) Noninvasive radiographic assessment of cardiovascular function in acute and chronic respiratory failure. Am J Cardiol 47:950–962
Google Scholar
Legrand V, Rigo P (1987) Evaluation of right ventricular function: radioisotopic techniques. In: Vincent JL, Suter PM (eds) Cardiopulmonary interactions in acute respiratory failure. Springer, Berlin Heidelberg Tokyo, pp 81–94
Google Scholar
Unterberg R, Gruber HP, Ickrath O, Voelker W, Karsch KR (1989) Bestimmung der rechtsventrikulären Ejektionsfraktion aus dem exponentiellen Abfall der Thermodilutionskurve — Ein Vergleich zur biplanen Cineventrikulographie. Z Kardiol 78:313–319
Google Scholar
Dhainaut JF, Brunet F, Villemant D (1987) Evaluation of right ventricular function by thermodilution techniques. In: Vincent JL, Suter PM (eds) Cardiopulmonary interactions in acute respiratory failure. Springer, Berlin Heidelberg New York, pp 95–106
Google Scholar
Imai T, Katoh K, Kani H, Miyano H, Fujita T (1991) Effects of injection site on the accuracy of thermal washout right ventricular ejection fraction measurements in clinical and model investigations. Chest 99:436–443
Google Scholar
Assmann R, Heidelmeyer CF, Trampisch HJ, Mottaghy K, Versprille A, Sandmann W, Falke KJ (1991) Right ventricular function assessed by thermodilution technique during apnea and mechanical ventilation. Crit Care Med 19:810–817
Google Scholar
Pinsky MR (1990) The meaning of cardiac output (editorial). Intensive Care Med 16:415–417
Google Scholar
Jansen JRC, Vesprille A (1986) Improvement of cardiac output estimation by the thermodilution method during mechanical ventilation. Intensive Care Med 12:71–79
Google Scholar
Jansen JRC, Schreuder JJ, Bogaard JM, van Rooyen W, Versprille A (1981) Thermodilution technique for measurement of cardiac output during artificial ventilation. J Appl Physiol 50:584–591
Google Scholar
Armengol J, Man GCW, Balsys AJ, Wells AL (1981) Effects of the respiratory cycle on cardiac output measurements: reproducibility of data enhanced by timing the thermodilution injections in dogs. Crit Care Med 9:852–854
Google Scholar
Snyder JV, Powner DJ (1982) Effects of mechanical ventilation on the measurement of cardiac output by thermodilution. Crit Care Med 10:677–682
Google Scholar
Pinsky MR (1984) Instantaneous venous return curves in an intact canine preparation. J Appl Physiol 56:765–771
Google Scholar
Mollenholt P, Eriksson I, Andersson T (1987) Thrombogenicity of pulmonary-artery catheters. Intensive Care Med 13:57–59
Google Scholar