Characterization of passive embryonic myocardium by quasi-linear viscoelasticity theory

被引:31
|
作者
Miller, CE
Vanni, MA
Keller, BB
机构
[1] NIH SCOR in Pediat. Cardiovasc. Dis., Univ. Rochester Sch. Med. and Dent., Department of Pediatrics, Rochester, NY 14642
[2] University of Rochester, Department of Pediatrics, Box 631, Rochester, NY 14642
关键词
viscoelasticity; quasi-linear viscoelasticity; cardiac development; stress relaxation; cardiovascular biomechanics;
D O I
10.1016/S0021-9290(97)00048-1
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
The mechanical properties of embryonic cardiac tissue, an important link between form and function, are largely unknown. This study provides new information on the viscoelastic behavior of the stage-16 and stage-18 (21/2 and 3 d) chick ventricle. The cylindrical ventricles were removed from the embryo, arrested in diastole, and mounted between two small wires in a specially designed experimental workstation. After preconditioning, ramp-and-hold stress relaxation tests were performed at 10, 20 and 40% stretch. The resulting reduced relaxation functions were fit by graphical approach with a quasi-linear viscoelastic representation. All functions were highly linear with natural log time between 1 and 60 s; mean slopes were -0.051 to -0.067. Other mean values were: fast time constant tau(1), 0.037-0.052 s; slow time constant tau(2), 296-486 s; and final relaxation G(infinity), 0.38-0.59. There results agree closely with those adult tissue. The differences in parameters were not significant tither between stretch within stage or between stages at the same stretch level. An extrapolation/renormalization procedure increased agreement in slope between stretch levels but decreased agreement in G(infinity). Events occurring on the short time scale may represent extracellular fluid filtration while final relaxation may be a function of true tissue viscoelasticity. These results will provide a baseline for extension to later developmental stages in cases of both normal and altered growth. (C) 1997 Elsevier Science Ltd.
引用
收藏
页码:985 / 988
页数:4
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