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猪生物瓣膜退变中的机械因素:综述

Mechanical factors in the degeneration of porcine bioprosthetic valves: an overview.

作者信息

Sabbah H N, Hamid M S, Stein P D

机构信息

Henry Ford Heart and Vascular Institute, Detroit, Michigan 48202.

出版信息

J Card Surg. 1989 Dec;4(4):302-9. doi: 10.1111/j.1540-8191.1989.tb00294.x.

Abstract

Predilection of certain sites of the porcine bioprosthetic valve (PBV) leaflets to calcification and tissue disruption has provoked suggestions that design factors and mechanical stresses may be major reasons leading to degeneration. In recent years, computer based numerical models of PBVs have shown a close association between sites of leaflet calcification and disruption and sites of leaflet stress concentration. These numerical models have also provided a means through which methodical design optimization can be carried out. Increasing stent flexibility, for instance, was shown to lead to an overall reduction of mechanical stresses on the PBV leaflets. Reducing the stent height, on the other hand, was accompanied by an undesirable increase of overall leaflet stresses. Despite encouraging work in this field, more research is needed to further elucidate means by which the structural integrity of bioprosthetic valves can be preserved through a minimization of the adverse effects of mechanical stresses.

摘要

猪生物瓣膜(PBV)瓣叶某些部位易于钙化和组织破坏,这引发了人们的猜测,即设计因素和机械应力可能是导致其退化的主要原因。近年来,基于计算机的PBV数值模型显示,瓣叶钙化和破坏部位与瓣叶应力集中部位密切相关。这些数值模型还提供了一种方法,通过该方法可以进行系统的设计优化。例如,增加支架柔韧性可导致PBV瓣叶上的机械应力总体降低。另一方面,降低支架高度会伴随瓣叶总体应力的不良增加。尽管该领域的工作令人鼓舞,但仍需要更多研究来进一步阐明如何通过最小化机械应力的不利影响来保持生物瓣膜的结构完整性。

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