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猪主动脉瓣的双轴应变分析。

Biaxial strain analysis of the porcine aortic valve.

作者信息

Lo D, Vesely I

机构信息

John P. Robarts Research Institute, University of Western Ontario, London, Canada.

出版信息

Ann Thorac Surg. 1995 Aug;60(2 Suppl):S374-8. doi: 10.1016/0003-4975(95)00249-k.

Abstract

The function of a bioprosthetic heart valve is determined largely by the material properties of the valve cusps. The mechanics of natural and bioprosthetic valve cusps have been studied extensively using uniaxial tensile testing. This type of testing, however, does not duplicate the natural biaxial loading condition. Whole-valve biaxial testing therefore is preferred. The objective of the present study was to investigate the heterogeneity of the valve cusps by mapping out the regional variability of the biaxial strain versus pressure relationship. Whole porcine aortic valves were mounted horizontally, submerged in physiologic saline solution at 37 degrees C, and pressurized in the range of 0 to 130 mm Hg of pressure. The ventricular side of the cusps were marked with black dots and the three-dimensional position of these dots was recorded together with the aortic pressure. By calculating the distance between the dots in the radial and circumferential directions in different regions, the local strain versus pressure relationship was determined. The results showed that the valve cusp material strained by 23% +/- 0.8% in the radial direction and 10.0% +/- 0.5% in the circumferential direction before lock-up. It was also found that while the valve cusp was highly anisotropic in the central region, the basal region was relatively isotropic, and the cusp as a whole was asymmetrical in its distensibility.

摘要

生物人工心脏瓣膜的功能很大程度上取决于瓣膜尖的材料特性。使用单轴拉伸试验对天然和生物人工瓣膜尖的力学性能进行了广泛研究。然而,这种类型的试验并不能复制天然的双轴加载条件。因此,全瓣膜双轴试验更受青睐。本研究的目的是通过绘制双轴应变与压力关系的区域变异性来研究瓣膜尖的异质性。将完整的猪主动脉瓣膜水平安装,浸入37℃的生理盐溶液中,并在0至130mmHg的压力范围内加压。瓣膜尖的心室侧用黑点标记,这些点的三维位置与主动脉压力一起记录。通过计算不同区域中径向和圆周方向上点之间的距离,确定局部应变与压力的关系。结果表明,在锁定前,瓣膜尖材料在径向方向上应变23%±0.8%,在圆周方向上应变10.0%±0.5%。还发现,虽然瓣膜尖在中心区域高度各向异性,但基部区域相对各向同性,并且瓣膜尖整体在可扩张性方面不对称。

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