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June 1, 1987AJP Heart and Circulatory Physiology233 citations

Contractility-dependent curvilinearity of end-systolic pressure-volume relations

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DBD. BurkhoffSSSeiryo SugiuraDYDavid T. Yue

Key Result

Altering the contractile state in isolated canine hearts changed the ESPVR shape, though within the average E'max range of 3.4 to 7.8 mmHg/ml, a parabolic fit was not statistically better than linear.

Structured PICO

Does the shape of the end-systolic pressure-volume relationship change with contractile state in isolated canine hearts?

P
Population
Isolated canine hearts
I
Intervention
Alteration of contractility using dobutamine, BAY K 8644, nifedipine, lowering coronary blood flow, and extrasystolic/postextrasystolic stimulations
C
Comparator
Different contractile states within the same hearts
O
Outcome
Shape of the end-systolic pressure-volume relationship (ESPVR) and its correlation with contractility (E'max)surrogate

The shape of the end-systolic pressure-volume relationship in isolated canine hearts changes with contractile state, supporting the existence of length-dependent activation of cardiac muscle.

Abstract

The shape of the end-systolic tension-length relationship (ESTLR) changes when contractile state is changed, whereas the end-systolic pressure-volume relationship (ESPVR) remains linear despite changes in contractility. To investigate this disparity, the ESPVR was determined with contractility altered extensively by dobutamine, BAY K 8644, nifedipine, lowering coronary blood flow, and the introduction of extrasystolic and postextrasystolic stimulations. The ESPVRs were fitted by nonlinear regression analysis to the parabolic equation Pes = aVes2 + bVes + c, where Pes is end-systolic pressure, Ves is end-systolic volume, and a, b, and c are parameters. There was a negative, statistically significant correlation between a, which serves as a shape index of the ESPVR, and E'max, the slope of the ESPVR in a low volume range. When E'max was large a was negative, indicating increasing concavity of the ESPVR to the volume axis at high contractility. When E'max was small a was positive, indicating convexity of the ESPVRs to the volume axis at low contractility. Within the average range of E'max between 3.4 and 7.8 mmHg/ml, however, the parabolic fit to the data was not statistically better than a linear fit over the range of volumes testable in the isolated heart. We conclude that the shape of the ESPVR measured in the isolated canine heart changes with contractile state. In accordance with previous interpretations of shape changes in the muscle ESTLR, these results are consistent with the existence of length-dependent activation of cardiac muscle in the intact heart.

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Cite This Study

Burkhoff et al. (1987) studied Cardiac contractility. Contractility alteration (dobutamine, BAY K 8644, nifedipine, pacing) was evaluated on Shape of the end-systolic pressure-volume relationship (ESPVR). Altering the contractile state in isolated canine hearts changed the ESPVR shape, though within the average E'max range of 3.4 to 7.8 mmHg/ml, a parabolic fit was not statistically better than linear.

synapsesocial.com/papers/6a0b9983472871d26ec2037dhttps://doi.org/10.1152/ajpheart.1987.252.6.h1218
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