Arterial pressure-based cardiac output monitoring: a multicenter validation of the third-generation software in septic patients
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J. Vincent | D. De Backer | F. Michard | G. Marx | Andrew Tan | C. Junker | M. Van Nuffelen | L. Hüter | W. Ching | G. Marx | J. Vincent | D. De Backer | Christopher D. Junker | Willy Ching | Jean-Louis Vincent | Frédéric Michard | Gernot Marx | Andrew Tan | Christopher Junker | Lars Hüter | Willy Ching
[1] T. Raffin,et al. Reliability of the thermodilution method in the determination of cardiac output in clinical practice. , 2015, The American review of respiratory disease.
[2] M. Singer,et al. Tracking changes in cardiac output: methodological considerations for the validation of monitoring devices , 2009, Intensive Care Medicine.
[3] C. Hofer,et al. Assessment of cardiac output changes using a modified FloTrac/Vigileo™ algorithm in cardiac surgery patients , 2009, Critical care.
[4] M. Saeed,et al. The cardiac output from blood pressure algorithms trial* , 2009, Critical care medicine.
[5] K. Yamashita,et al. The effects of vasodilation on cardiac output measured by PiCCO. , 2008, Journal of cardiothoracic and vascular anesthesia.
[6] G. Della Rocca,et al. Arterial pulse cardiac output agreement with thermodilution in patients in hyperdynamic conditions. , 2008, Journal of cardiothoracic and vascular anesthesia.
[7] Y. Mehta,et al. Cardiac output monitoring: comparison of a new arterial pressure waveform analysis to the bolus thermodilution technique in patients undergoing off-pump coronary artery bypass surgery. , 2008, Journal of cardiothoracic and vascular anesthesia.
[8] Biais Matthieu,et al. Cardiac Output Measurement in Patients Undergoing Liver Transplantation: Pulmonary Artery Catheter Versus Uncalibrated Arterial Pressure Waveform Analysis , 2008 .
[9] J. Boldt,et al. Cardiac output derived from arterial pressure waveform analysis in patients undergoing cardiac surgery: validity of a second generation device. , 2008, Anesthesia and analgesia.
[10] D. Chemla,et al. Effects of changes in vascular tone on the agreement between pulse contour and transpulmonary thermodilution cardiac output measurements within an up to 6-hour calibration-free period* , 2008, Critical care medicine.
[11] B. Trabold,et al. Evaluation of a new arterial pressure-based cardiac output device requiring no external calibration , 2007, BMC anesthesiology.
[12] K. Yamashita,et al. Effects of vasodilation on cardiac output measured by PulseCO™ , 2007, Journal of Clinical Monitoring and Computing.
[13] Benjamin Pratt,et al. Calculating arterial pressure-based cardiac output using a novel measurement and analysis method. , 2007, Biomedical instrumentation & technology.
[14] P. Myles,et al. Using the Bland-Altman method to measure agreement with repeated measures. , 2007, British journal of anaesthesia.
[15] S. Sakka,et al. Measurement of cardiac output: a comparison between transpulmonary thermodilution and uncalibrated pulse contour analysis. , 2007, British journal of anaesthesia.
[16] F. Michard. Pulse contour analysis: fairy tale or new reality? , 2007, Critical care medicine.
[17] J. Mayer,et al. Semi-invasive monitoring of cardiac output by a new device using arterial pressure waveform analysis: a comparison with intermittent pulmonary artery thermodilution in patients undergoing cardiac surgery. , 2007, British journal of anaesthesia.
[18] C. Spies,et al. Comparison of uncalibrated arterial waveform analysis in cardiac surgery patients with thermodilution cardiac output measurements , 2006, Critical care.
[19] Mitchell M. Levy,et al. 2001 SCCM/ESICM/ACCP/ATS/SIS International Sepsis Definitions Conference , 2003, Intensive Care Medicine.
[20] K. H. Wesseling,et al. Editorial II Continuous cardiac output by pulse contour analysis , 2001 .
[21] K. Wesseling,et al. Continuous cardiac output in septic shock by simulating a model of the aortic input impedance: a comparison with bolus injection thermodilution. , 1999, Anesthesiology.
[22] D. Altman,et al. Measuring agreement in method comparison studies , 1999, Statistical methods in medical research.
[23] L. Critchley,et al. A Meta-Analysis of Studies Using Bias and Precision Statistics to Compare Cardiac Output Measurement Techniques , 1999, Journal of Clinical Monitoring and Computing.
[24] T. Dorman,et al. Radial artery pressure monitoring underestimates central arterial pressure during vasopressor therapy in critically ill surgical patients. , 1998, Critical care medicine.
[25] D. Mangano,et al. On the accuracy of intra-arterial pressure measurement: the pressure gradient effect. , 1998, Critical care medicine.
[26] F. B. Allen,et al. Can We Trust the Direct Radial Artery Pressure Immediately Following Cardiopulmonary Bypass? , 1985, Anesthesiology.
[27] A. Lee,et al. Evaluation of an uncalibrated arterial pulse contour cardiac output monitoring system in cirrhotic patients undergoing liver surgery. , 2009, British journal of anaesthesia.
[28] R. Beale,et al. Monitoring Arterial Blood Pressure and Cardiac Output using Central or Peripheral Arterial Pressure Waveforms , 2009 .
[29] Mohammed Saeed,et al. The cardiac output from blood pressure algorithms trial. , 2009, Critical care medicine.
[30] F. Sztark,et al. Cardiac output measurement in patients undergoing liver transplantation: pulmonary artery catheter versus uncalibrated arterial pressure waveform analysis. , 2008, Anesthesia and analgesia.
[31] A. Groeneveld,et al. Decreased reflection coefficient as a possible cause of low blood pressure in severe septicaemia , 2004, Intensive Care Medicine.
[32] K. Wesseling,et al. Continuous cardiac output by pulse contour analysis? , 2001, British journal of anaesthesia.
[33] G. Langewouters,et al. The pressure dependent dynamic elasticity of 35 thoracic and 16 abdominal human aortas in vitro described by a five component model. , 1985, Journal of biomechanics.
[34] G. Langewouters,et al. The static elastic properties of 45 human thoracic and 20 abdominal aortas in vitro and the parameters of a new model. , 1984, Journal of biomechanics.