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一种生物人工心脏瓣膜制备优化方法。

An approach to the optimization of preparation of bioprosthetic heart valves.

作者信息

Mavrilas D, Missirlis Y

机构信息

Department of Mechanical Engineering, University of Patras, Greece.

出版信息

J Biomech. 1991;24(5):331-9. doi: 10.1016/0021-9290(91)90351-m.

Abstract

The stress and strain states of the valve leaflets during fixation with glutaraldehyde affect their final mechanical parameters. Comparative studies of the stress-strain relationships of aortic valve leaflet strips from fresh, statically and dynamically fixed porcine and human valves were made. Static pressures of 5 mmHg, 16 mmHg, and 95 mmHg result in stress-strain relationships which are in a region between that of fresh porcine and fresh human leaflet strips in the circumferential direction, while they are far from that of fresh porcine tissue (larger strains) in the radial direction. Leaflet strips, fixed under dynamic loading between zero and a predefined maximum load, set at an early post-transition state, give parameters not significantly different from those of human valves.

摘要

戊二醛固定过程中瓣膜小叶的应力和应变状态会影响其最终的力学参数。对新鲜的、静态和动态固定的猪和人主动脉瓣膜小叶条带的应力-应变关系进行了比较研究。5 mmHg、16 mmHg和95 mmHg的静态压力导致的应力-应变关系在圆周方向上处于新鲜猪和新鲜人小叶条带之间的区域,而在径向方向上它们与新鲜猪组织(更大应变)的应力-应变关系相差甚远。在零到预定义最大载荷之间的动态加载下固定的小叶条带处于早期转变后状态,其参数与人瓣膜的参数无显著差异。

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