Load-sensitive measures may overestimate global systolic function in the presence of left ventricular hypertrophy: a comparison with load-insensitive measures
- 1 April 2006
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Heart and Circulatory Physiology
- Vol. 290 (4) , H1699-H1705
- https://doi.org/10.1152/ajpheart.00577.2005
Abstract
Transgenic animal models have provided a vital insight into the pathogenesis of cardiovascular disease, but functional cardiac assessment is often limited by high heart rates and small heart size. We hypothesized that in the presence of concentric left ventricular (LV) hypertrophy (LVH), load-sensitive measures of contractility may be misinterpreted as overestimating global cardiac function, because the normal function of excess sarcomeres may displace a greater volume of blood during contraction. Conductance catheter technology was used to evaluate pressure-volume (P-V) relationships as a load-insensitive method of assessing cardiac function in vivo in 18-wk-old heterozygous (mRen-2)27 transgenic rats (a model of LVH), compared with age-matched Sprague-Dawley (SD) controls. Anesthetized animals underwent echocardiography followed by P-V loop analysis. Blood pressure, body weight, and heart rate were higher in the Ren-2 rats (P < 0.05). Load-sensitive measures of systolic function, including fractional area change, fractional shortening, ejection fraction, and positive peak rate of LV pressure development, were greater in the Ren-2 than control animals (P < 0.05). Load-insensitive measures of systolic function, including the preload recruitable stroke work relationship and the end-systolic P-V relationship, were not different between Ren-2 and SD rats. Regional wall motion assessed by circumferential shortening velocity suggested enhanced circumferential fiber contractility in the Ren-2 rats (P = 0.02), but tissue Doppler imaging, used to assess longitudinal function, was not different between groups. Although conventional measures suggested enhanced systolic function in the Ren-2 rat, load-insensitive measures of contractility were not different between Ren-2 and SD animals. These findings suggest that the normal range of values for load-sensitive indexes of contractility needs to be altered according to the degree of LVH. To accurately identify changes in systolic function, we suggest that a combination of echocardiography with assessment of load-insensitive measures be used routinely.Keywords
This publication has 35 references indexed in Scilit:
- Effect of Aldosterone Antagonism on Myocardial Dysfunction in Hypertensive Patients With Diastolic Heart FailureCirculation, 2004
- Relationship between longitudinal and radial contractility in subclinical diabetic heart diseaseClinical Science, 2004
- Evaluation of the longitudinal contraction of the left ventricle in normal subjects by doppler tissue tracking and strain rateJournal of the American Society of Echocardiography, 2003
- Evolution of the Study of Left Ventricular FunctionCirculation, 2002
- L-arginine reduces structural remodeling in the diabetic rat myocardiumMethods and Findings in Experimental and Clinical Pharmacology, 2002
- Fulminant hypertension in transgenic rats harbouring the mouse Ren-2 geneNature, 1990
- Left ventricular chamber filling and midwall fiber lengthening in patients with left ventricular hypertrophy: overestimation of fiber velocities by conventional midwall measurements.Circulation, 1985
- Left ventricular end-systolic wall stress-velocity of fiber shortening relation: A load-independent index of myocardial contractilityJournal of the American College of Cardiology, 1984
- Hemodynamic determinants of the time-course of fall in canine left ventricular pressure.Journal of Clinical Investigation, 1976
- The evaluation of left ventricular function in man. A comparison of methods.Circulation, 1975