Quantification of 3-D regional myocardial deformation: shape-based analysis of magnetic resonance images

Author:

Sinusas Albert J.12,Papademetris Xenophon2,Constable R. Todd2,Dione Donald P.1,Slade Martin D.1,Shi Pengcheng3,Duncan James S.23

Affiliation:

1. Section of Cardiovascular Medicine, Department of Internal Medicine,

2. Department of Diagnostic Radiology, and

3. Department of Electrical Engineering, Yale University School of Medicine, New Haven, Connecticut 06520-8042

Abstract

A comprehensive three-dimensional (3-D) shape-based approach for quantification of regional myocardial deformations was evaluated in a canine model ( n = 8 dogs) with the use of cine magnetic resonance imaging. The shape of the endocardial and epicardial surfaces was used to track the 3-D trajectories of a dense field of points over the cardiac cycle. The shape-based surface displacements are integrated with a continuum biomechanics model incorporating myofiber architecture to estimate both cardiac- and fiber-specific endocardial and epicardial strains and shears for 24 left ventricular regions. Whereas radial and circumferential end-systolic strains were fairly uniform, there was a significant apex-to-base gradient in longitudinal strain and radial-longitudinal shear. We also observed transmural epicardial-to-endocardial gradients in both cardiac- and fiber-specific strains. The increase in endocardial strain was accompanied by increases in radial-longitudinal shear and radial-fiber shears in the endocardium, supporting previous theories of regional myocardial deformation that predict considerable sliding between myocardial fibers.

Publisher

American Physiological Society

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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