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January 31, 2004AJP Heart and Circulatory Physiology154 citationsOpen Access

Transmural left ventricular mechanics underlying torsional recoil during relaxation

HAHiroshi AshikagaJCJohn C. CriscioneJOJeffrey H. Omens

Key Result

In adult dogs, LV mechanics during early relaxation involves substantial deformation of fiber and sheet structures with significant transmural heterogeneity, including predominant epicardial stretch (P<0.05).

Structured PICO

P
Population
Five adult mongrel dogs
I
Intervention
Implantation of transmural markers and biplane cineangiography (125 Hz)
O
Outcome
Time course of three-dimensional fiber-sheet strains in the anterior wall during early relaxationsurrogate

Left ventricular mechanics during early relaxation involve substantial deformation of fiber and sheet structures with significant transmural heterogeneity, driving global torsional recoil to aid early diastolic filling.

Main Result

p-value: p=<0.05

Abstract

Early relaxation in the cardiac cycle is characterized by rapid torsional recoil of the left ventricular (LV) wall. To elucidate the contribution of the transmural arrangement of the myofiber to relaxation, we determined the time course of three-dimensional fiber-sheet strains in the anterior wall of five adult mongrel dogs in vivo during early relaxation with biplane cineangiography (125 Hz) of implanted transmural markers. Fiber-sheet strains were found from transmural fiber and sheet orientations directly measured in the heart tissue. The strain time course was determined during early relaxation in the epicardial, midwall, and endocardial layers referenced to the end-diastolic configuration. During early relaxation, significant circumferential stretch, wall thinning, and in-plane and transverse shear were observed (P < 0.05). We also observed significant stretch along myofibers in the epicardial layers and sheet shortening and shear in the endocardial layers (P < 0.01). Importantly, predominant epicardial stretch along the fiber direction and endocardial sheet shortening occurred during isovolumic relaxation (P < 0.05). We conclude that the LV mechanics during early relaxation involves substantial deformation of fiber and sheet structures with significant transmural heterogeneity. Predominant epicardial stretch along myofibers during isovolumic relaxation appears to drive global torsional recoil to aid early diastolic filling.

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Cite This Study

Ashikaga et al. (2004) studied Left ventricular mechanics during early relaxation (n=5). Biplane cineangiography of implanted transmural markers was evaluated on Time course of three-dimensional fiber-sheet strains in the anterior wall during early relaxation (p=<0.05). In adult dogs, LV mechanics during early relaxation involves substantial deformation of fiber and sheet structures with significant transmural heterogeneity, including predominant epicardial stretch (P<0.05).

synapsesocial.com/papers/6a0eb7d38da6dd046147a96bhttps://doi.org/10.1152/ajpheart.00575.2003
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