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二尖瓣组织的本构定律。

A constitutive law for mitral valve tissue.

作者信息

May-Newman K, Yin F C

机构信息

Department of Medicine, Johns Hopkins School of Medicine, Baltimore, MD 21205, USA.

出版信息

J Biomech Eng. 1998 Feb;120(1):38-47. doi: 10.1115/1.2834305.

Abstract

Biaxial mechanical testing and theoretical continuum mechanics analysis are employed to formulate a constitutive law for cardiac mitral valve anterior and posterior leaflets. A strain energy description is formulated based on the fibrous architecture of the tissue, accurately describing the large deformation, highly nonlinear transversely isotropic material behavior. The results show that a simple three-coefficient exponential constitutive law provides an accurate prediction of stress-stretch behavior over a wide range of deformations. Regional heterogenity may be accommodated by spatially varying a single coefficient and incorporating collagen fiber angle. The application of this quantitative information to mechanical models and bioprosthetic development could provide substantial improvement in the evaluation and treatment of valvular disease, surgery, and replacement.

摘要

采用双轴力学测试和理论连续介质力学分析来制定心脏二尖瓣前后叶的本构定律。基于组织的纤维结构制定了应变能描述,准确描述了大变形、高度非线性的横向各向同性材料行为。结果表明,一个简单的三系数指数本构定律能够在很宽的变形范围内准确预测应力-拉伸行为。通过在空间上改变单个系数并纳入胶原纤维角度,可以考虑区域不均匀性。将这些定量信息应用于力学模型和生物假体开发,可以在瓣膜疾病、手术和置换的评估与治疗方面带来实质性的改进。

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