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November 1, 1985AJP Heart and Circulatory Physiology29 citations

Electrophysiological effects of transient aortic occlusion in intact canine heart

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DBD. G. BendittJKJolene M. KriettHTH. Gareth Tobler

Structured PICO

Does transient aortic occlusion alter myocardial electrophysiological characteristics in intact canine hearts?

P
Population
9 anesthetized open-chest dogs
I
Intervention
Transient aortic occlusion applied just prior to the last beat of each eight-beat atrial drive train and released immediately following the programmed ventricular extrastimulus
C
Comparator
Prior to transient aortic occlusion (baseline measurements)
O
Outcome
Ventricular effective refractory period (ERP) and left ventricular systolic mechanical parameterssurrogate

Transient aortic occlusion in a canine model prolongs left ventricular refractoriness, with electrophysiological changes closely paralleling the severity of systolic mechanical disturbance.

Abstract

This study utilized sonomicrometers transmural multipolar electrodes and cardiac electrical stimulation techniques to examine the effect on myocardial electrophysiological characteristics of altering ventricular systolic mechanical properties by transient aortic occlusion. Nine anesthetized open-chest dogs were atrially paced, and timed extrastimuli were inserted during alternate drive-train sequences at right or left ventricular (RV, LV) epicardial sites to measure ventricular effective refractory period (ERP). Sonomicrometer measurements of LV systolic mechanical parameters and both RV and LV electrophysiological findings were determined prior to and during periods of transient aortic occlusion. Aortic occlusion was applied just prior to the last beat of each eight-beat atrial drive train and released immediately following the programmed ventricular extrastimulus. Aortic occlusion increased LV systolic pressure (+42 +/- 26.6 mmHg, P less than 0.01) and diminished segmental stroke shortening (0.100 +/- 0.059 mm, P less than 0.02), shortening fraction (0.086 +/- 0.048, P less than 0.001), mean velocity of stroke shortening (0.444 +/- 0.186 mm/s, P less than 0.001), and stroke work (P less than 0.001). LV epicardial and endocardial ERP were prolonged as a result of aortic occlusion (5 +/- 7.2 and 6 +/- 6.5 ms, respectively, P less than 0.05), whereas RV ERP was unchanged. Latency of premature beats at equivalent coupling intervals was unaltered. ERP prolongation correlated most strongly with reductions of segmental stroke shortening (r = 0.928, P less than 0.001), shortening fraction (r = 0.901, P less than 0.001), and mean shortening velocity (r = 0.819, P less than 0.01). Thus transient aortic occlusion prolonged LV refractoriness, and electrophysiological changes closely paralleled the severity of systolic mechanical disturbance.

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Cite This Study

Benditt et al. (1985) studied this question.

synapsesocial.com/papers/6a7a795ce357fbdac58987ffhttps://doi.org/10.1152/ajpheart.1985.249.5.h1017
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Also Consider

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

  1. 1Effect of abrupt changes in ventricular loading on repolarization induced by transient aortic occlusion in humans1992 · 52 citations
  2. 2Regional myocardial functional and electrophysiological alterations after brief coronary artery occlusion in conscious dogs.1975 · 1,006 citations
  3. 3Effects of systemic hypertension on ischemic and nonischemic regional left ventricular function in awake, unsedated dogs after experimental coronary occlusion.1982 · 22 citations
  4. 4Relationship between regional contractile function and S-T segment elevation after experimental coronary artery occlusion in the dog1978 · 21 citations
  5. 5Electrophysiological effect of varied rate and extent of acute in vivo left ventricular load increase1991 · 25 citations