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January 1, 1984The Japanese Journal of Physiology15 citationsOpen Access

Constant mechanical efficiency of contractile machinery of canine left ventricle under different loading and inotropic conditions.

HSHiroyuki SugaOYOsamu YamadaYGYoichi Goto

Key Result

The mechanical efficiency of the contractile machinery remained constant at 30-50% (mean 40%) regardless of changes in loading conditions, heart rate, and contractile states.

Structured PICO

P
Population
Experimental study on excised, cross-circulated canine left ventricles to evaluate the mechanical efficiency of the contractile machinery under various loading and inotropic conditions.
I
Intervention
Variously loaded contractions, tachycardia by pacing, and enhanced contractile states with epinephrine and calcium
C
Comparator
Control contractions (unloaded, normal heart rate, no inotropic agents)
O
Outcome
Efficiency of energy conversion from excess oxygen consumption (VO2) to total mechanical energy (systolic pressure-volume area, PVA)surrogate

The mechanical efficiency of the cardiac contractile machinery remains constant at approximately 40% regardless of loading conditions or inotropic state, explaining the variability of conventional mechanical efficiency.

Main Result

Absolute Event Rate: 40% vs 40%

p-value: p=>0.05

Limitations

  • The assumption that oxygen consumption for basal metabolism and excitation-contraction coupling is constant may lead to slight underestimation of efficiencies if length-dependent excitation-contraction coupling exists.
  • The study relies on an experimental canine cross-circulated heart preparation, which may not perfectly reflect intact in vivo human physiology.

Abstract

We have recently proposed that the total mechanical energy generated in each cardiac contraction can be quantified by the systolic pressure-volume area (PVA). PVA is the area in the pressure-volume (P-V) diagram that is circumscribed by the end-systolic and end-diastolic P-V relation curves and the systolic segment of the P-V trajectory. This area has dimensions of energy and comprises the external mechanical work and the elastic potential energy. In the left ventricle of cross-circulated canine hearts, we studied the relation between PVA and oxygen consumption per beat (VO2) above VO2 for mechanically unloaded contraction. We assumed that this excess VO2 is utilized for mechanical contraction by the contractile machinery. The percentage of PVA in the excess VO2, both in the same unit of energy, J, would then represent the efficiency of energy conversion from the excess VO2 to the total mechanical energy in the contractile machinery. We obtained this efficiency in variously loaded contractions in both control and enhanced contractile states with epinephrine and calcium. We found that the efficiency was constant at 30-50 (mean 40) % regardless of the changes in both loading conditions and contractile states. By this constant efficiency and a variable fraction of external work in PVA, we accounted for the load- and contractility-dependent variability of the conventional mechanical efficiency (0-30%) of the heart.

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Cite This Study

Suga et al. (1984) studied Healthy canine model. Altered loading and inotropic conditions (epinephrine, calcium, pacing) vs. Control conditions (baseline loading and contractility) was evaluated on Efficiency of energy conversion from excess oxygen consumption to total mechanical energy (PVA/(excess VO2)) (p=>0.05). The mechanical efficiency of the contractile machinery remained constant at 30-50% (mean 40%) regardless of changes in loading conditions, heart rate, and contractile states.

synapsesocial.com/papers/6a201009d5e8712fdf65c3e0https://doi.org/10.2170/jjphysiol.34.679
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Regression of cardiac oxygen consumption on ventricular pressure-volume area in dog1981 · 108 citations
  2. 2Relaxing ventricle performs more external mechanical work than quickly released elastic energy1980 · 14 citations
  3. 3Instantaneous Pressure-Volume Relationships and Their Ratio in the Excised, Supported Canine Left Ventricle1974 · 1,336 citations
  4. 4"Pressure-volume" relations in isolated cat trabecula.1981 · 44 citations
  5. 5Does normal pulmonary impedance constitute the optimum load for the right ventricle?1982 · 56 citations