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Volumn 31, Issue 10, 2009, Pages 1299-1306
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In vitro, in vivo and numerical assessment of the working principle of the truCCOMS™ continuous cardiac output catheter system
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Author keywords
Calibration; Cardiac output; Catheter; Continuous; truCCOMS
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Indexed keywords
ANIMAL MODEL;
BLOOD FLOW;
BLOOD TEMPERATURE;
CARDIAC OUTPUT;
CLINICAL PERFORMANCE;
CLINICAL STUDY;
CONTINUOUS CARDIAC OUTPUT;
IN-VITRO;
IN-VIVO;
IN-VIVO MEASUREMENT;
INSTANTANEOUS MEASUREMENT;
LINEAR CALIBRATION;
LOW FLOW;
MONITOR SYSTEM;
NON-LINEAR RELATIONSHIPS;
NUMERICAL MODELS;
POWER INPUT;
PULMONARY ARTERY;
WORKING PRINCIPLES;
BLOOD;
CALIBRATION;
CATHETERS;
ELECTRIC HEATING ELEMENTS;
HEATING;
HEMODYNAMICS;
ACCURACY;
ANIMAL EXPERIMENT;
ARTICLE;
CALIBRATION;
CONTROLLED STUDY;
CORONARY ARTERY BLOOD FLOW;
HEART CATHETER;
HEART CATHETERIZATION;
HEART OUTPUT MEASUREMENT;
HEAT TRANSFER;
HEATING;
IN VITRO STUDY;
IN VIVO STUDY;
LUNG ARTERY CATHETER;
MATHEMATICAL ANALYSIS;
MATHEMATICAL MODEL;
MONITOR;
NONHUMAN;
NONLINEAR SYSTEM;
PRIORITY JOURNAL;
SIMULATION;
ANIMALS;
BODY TEMPERATURE;
CALIBRATION;
CARDIAC OUTPUT;
COMPUTER SIMULATION;
EQUIPMENT DESIGN;
HEART CATHETERIZATION;
HEMODYNAMICS;
HUMANS;
MODELS, THEORETICAL;
MONITORING, PHYSIOLOGIC;
REPRODUCIBILITY OF RESULTS;
SHEEP;
TEMPERATURE;
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EID: 70449729409
PISSN: 13504533
EISSN: None
Source Type: Journal
DOI: 10.1016/j.medengphy.2009.08.010 Document Type: Article |
Times cited : (1)
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References (13)
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