Cardiac Pressure-Volume Loop Analysis Using Conductance Catheters in Mice.
Cardiac pressure-volume loop analysis is the "gold-standard" in the assessment of load-dependent and load-independent measures of ventricular systolic and diastolic function. Measures of ventricular contractility and compliance are obtained through examination of cardiac response to changes in afterload and preload. These techniques were originally developed nearly three decades ago to measure cardiac function in large mammals and humans. The application of these analyses to small mammals, such as mice, has been accomplished through the optimization of microsurgical techniques and creation of conductance catheters. Conductance catheters allow for estimation of the blood pool by exploiting the relationship between electrical conductance and volume. When properly performed, these techniques allow for testing of cardiac function in genetic mutant mouse models or in drug treatment studies. The accuracy and precision of these studies are dependent on careful attention to the calibration of instruments, systematic conduct of hemodynamic measurements and data analyses. We will review the methods of conducting pressure-volume loop experiments using a conductance catheter in mice.
Duke Scholars
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Related Subject Headings
- Ventricular Function, Left
- Stroke Volume
- Mice
- Heart Conduction System
- Heart
- Catheters
- Cardiac Catheterization
- Calibration
- Animals
- 3101 Biochemistry and cell biology
Citation
Published In
DOI
EISSN
Publication Date
Issue
Location
Related Subject Headings
- Ventricular Function, Left
- Stroke Volume
- Mice
- Heart Conduction System
- Heart
- Catheters
- Cardiac Catheterization
- Calibration
- Animals
- 3101 Biochemistry and cell biology