Literature DB >> 495762

Left ventricular systolic pressure-volume area correlates with oxygen consumption.

F Khalafbeigui, H Suga, K Sagawa.   

Abstract

In 13 excised, cross-circulated canine hearts, we studied the correlation between left ventricular oxygen consumption per beat (MVO2) and the magnitude of a specific pressure-volume (P-V) area circumscribed by the end-systolic and end-diastolic P-V relationship curves and the systolic segment of the P-V trajectory of a left ventricular contraction. The pressure and volume load of the ventricle were changed with a volume servo pump in order to alter the P-V area, and MVO2 was measured (after each change in the pressure and volume load). In the data collected from both isovolumic and ejecting contractions of each left ventricle contracting with a stable inotropic background, we found a linear correlation between MVO2 and the P-V area. The average correlation coefficient was 0.92 +/- 0.016 (SE). Linear regression analysis yielded the formula: MVO2 (ml/beat) = alpha[P-V area (mmHg.ml/beat)] + b, where alpha, the slope coefficient, was (1.53 +/- 0.14) x 10(-5) and b, which probably represents the basal O2 consumption, was 0.019 +/- 0.003 ml/beta. We propose that the P-V area as defined above may be a good index of ventricular oxygen consumption under a given inotropic background.

Entities:  

Mesh:

Year:  1979        PMID: 495762     DOI: 10.1152/ajpheart.1979.237.5.H566

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  19 in total

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5.  Interventricular comparison of the energetics of contraction of trabeculae carneae isolated from the rat heart.

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Review 6.  Relating components of pressure-volume area in Suga's formulation of cardiac energetics to components of the stress-time integral.

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Review 7.  Comparison of the Gibbs and Suga formulations of cardiac energetics: the demise of "isoefficiency".

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8.  Effect of halothane, enflurane and isoflurane on the end-systolic pressure-length relationship.

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Review 9.  Echocardiographic assessment of pressure volume relations in heart failure and valvular heart disease: using imaging to understand physiology.

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10.  Insights into the effects of contraction dyssynchrony on global left ventricular mechano-energetic function.

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