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May 1, 1987AJP Heart and Circulatory Physiology52 citations

Effects of ventricular pacing on finite deformation in canine left ventricles

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LWLewis K. WaldmanOncoMed (United States)JCJ W CovellKirklees College

Key Result

Epicardial ventricular pacing significantly altered the principal directions of deformation in canine left ventricles compared to normal atrial activation (P≤0.05).

Structured PICO

P
Population
open-chest anesthetized dogs
I
Intervention
epicardial ventricular pacing (VP) at the site of deformation measurement
C
Comparator
normal atrial activation (AA)
O
Outcome
local three-dimensional finite deformation in the anterior free wall of the left ventriclesurrogate

Ventricular pacing substantially alters the principal directions of myocardial deformation, supporting the concept that the heart wall deforms locally as a unit with significant transmural tethering.

Main Result

p-value: p=≤0.05

Abstract

Despite the fact that myofibers would be expected to shorten only along their axes, there is now evidence for substantial deformation away from the local myofiber direction in the left ventricle. To determine if the principal directions of deformation could be altered by a physiological stimulus, we examined local three-dimensional finite deformation in the anterior free wall of the left ventricle during normal atrial activation (AA) and, subsequently, during epicardial ventricular pacing (VP) at the site of deformation measurement in open-chest anesthetized dogs. An analysis of variance by repeated measures revealed the following significant changes (P less than or equal to 0.05) in the overall (average of epicardial and endocardial data) strain variables at end systole. Circumferential strain increased from -0.07 (AA) to 0.14 (VP), radial strain decreased from 0.16 (AA) to 0.01 (VP), shear in the tangent plane of the local epicardium decreased from 0.04 (AA) to -0.02 (VP), shear in the plane of the longitudinal and radial coordinates decreased from 0.03 (AA) to -0.03 (VP). Neither the first (greatest shortening) nor the third (greatest lengthening) principal strain changed significantly, but the direction of the first principal axis of deformation projected on the epicardial tangent plane changed from -51 degrees (AA) to -80 degrees (VP) from circumferential. In addition, substantial tipping of the plane of principal shortening away from the epicardial tangent plane was observed, particularly with ventricular pacing. These data indicate that the principal directions of deformation can be altered substantially by changing the activation sequence. In conjunction with the observed shearing deformations, particularly near the endocardium, they support the concept that locally the heart wall deforms as a unit with significant transmural tethering.

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Cite This Study

Waldman et al. (1987) studied Ventricular deformation. Epicardial ventricular pacing (VP) vs. Normal atrial activation (AA) was evaluated on Local three-dimensional finite deformation in the anterior free wall of the left ventricle (strain variables at end systole) (p=≤0.05). Epicardial ventricular pacing significantly altered the principal directions of deformation in canine left ventricles compared to normal atrial activation (P≤0.05).

synapsesocial.com/papers/6a0e9bbb1c7919c41b4c3a02https://doi.org/10.1152/ajpheart.1987.252.5.h1023
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Also Consider

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

  1. 1Effects of ventricular pacing on regional left ventricular performance in the dog1980 · 179 citations
  2. 2Transmural mechanics at left ventricular epicardial pacing site2004 · 44 citations
  3. 3Regional left ventricular epicardial deformation in the passive dog heart.1989 · 70 citations
  4. 4Sequential deformation and physiological considerations in unipolar right or left ventricular pacing2006 · 24 citations
  5. 5Asynchronous Electrical Activation Induces Asymmetrical Hypertrophy of the Left Ventricular Wall1998 · 364 citations