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July 1, 1989Circulation Research44 citations

Effect of acutely increased right ventricular afterload on work output from the left ventricle in conscious dogs. Systolic ventricular interaction.

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MFMichael P. FeneleyCommonwealth Scientific and Industrial Research OrganisationCOCraig O. OlsenUnited States Department of Veterans AffairsDGDonald D. GlowerCardiac Surgery

Key Result

Transient pulmonary arterial occlusion increased left ventricular stroke work at a given end-diastolic volume compared to vena caval occlusion (2,674 vs 1,886 10(-3) erg, p<0.05).

Structured PICO

P
Population
7 conscious, chronically instrumented dogs
I
Intervention
Graded pulmonary arterial occlusions
C
Comparator
Vena caval occlusion at matched left ventricular end-diastolic volumes
O
Outcome
Left ventricular stroke work at a given end-diastolic volumesurrogate

Transient pulmonary arterial occlusion augments septal shortening and assists left ventricular pump function at a given preload through direct systolic ventricular interaction.

Main Result

Absolute Event Rate: 2674% vs 1886%

p-value: p=<0.05

Abstract

In seven conscious, chronically instrumented dogs, left ventricular volume was calculated with an ellipsoidal model from the anteroposterior, septal-free wall, and base-to-apex left ventricular dimensions, measured by implanted ultrasonic transducers. Matched micromanometers measured left and right ventricular transmural and transseptal pressures. Ventricular pressures and volumes were varied by inflation of implanted vena caval and pulmonary arterial occluders. When compared with vena caval occlusion at matched left ventricular end-diastolic volumes, graded pulmonary arterial occlusions were associated with higher right ventricular systolic pressures, reduced left-to-right transseptal systolic pressure gradients, and leftward systolic septal displacement, with increased septal-free wall segment shortening (all p less than 0.05). Graded pulmonary arterial occlusions, like vena caval occlusions, reduced left ventricular end-diastolic volume, but left ventricular stroke work at a given end-diastolic volume was greater during pulmonary arterial occlusions (2,674 +/- 380 10(-3) erg) than during vena caval occlusion (1,886 +/- 450 10(-3) erg, p less than 0.05). These data indicate that, while transient pulmonary arterial occlusion reduces left ventricular preload, the concomitant increase in right ventricular systolic pressure, which is the pressure external to the interventricular septal segment of the left ventricle, augments septal shortening and assists left ventricular pump function at a given preload through direct systolic ventricular interaction.

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Cite This Study

Feneley et al. (1989) studied Normal physiology (animal model) (n=7). Graded pulmonary arterial occlusions vs. Vena caval occlusion was evaluated on Left ventricular stroke work at a given end-diastolic volume (p=<0.05). Transient pulmonary arterial occlusion increased left ventricular stroke work at a given end-diastolic volume compared to vena caval occlusion (2,674 vs 1,886 10(-3) erg, p<0.05).

synapsesocial.com/papers/6a0b9cea29a6fde3ef95d414https://doi.org/10.1161/01.res.65.1.135
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Also Consider

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

  1. 1Myocardial interaction between the ventricles1976 · 184 citations
  2. 2Influence of Left Ventricular Isovolumic Pressure Upon Right Ventricular Pressure Transients2008 · 66 citations
  3. 3The effects of geometry, elasticity, and external pressures on the diastolic pressure-volume and stiffness-stress relations. How important is the pericardium?1979 · 151 citations
  4. 4Effect of right ventricular pressure on the end-diastolic left ventricular pressure-volume relationship before and after chronic right ventricular pressure overload in dogs without pericardia.1984 · 102 citations
  5. 5The effect of right ventricular filling on the pressure-volume relationship of ejecting canine left ventricle.1981 · 69 citations