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主动脉瓣机械诱导胶原纤维合成与降解的有限元模型

Finite element model of mechanically induced collagen fiber synthesis and degradation in the aortic valve.

作者信息

Boerboom Ralf A, Driessen Niels J B, Bouten Carlijn V C, Huyghe Jacques M, Baaijens Frank P T

机构信息

Laboratory for Biomechanics and Tissue-Engineering, Department of Biomedical Engineering, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.

出版信息

Ann Biomed Eng. 2003 Oct;31(9):1040-53. doi: 10.1114/1.1603749.

Abstract

Tissue-engineered trileaflet aortic valves are a promising alternative to current valve replacements. However, the mechanical properties of these valves are insufficient for implantation at the aortic position. To simulate the effect of collagen remodeling on the mechanical properties of the aortic valve, a finite element model is presented. In this study collagen remodeling is assumed to be the net result of collagen synthesis and degradation. A limited number of fibers with low initial fiber volume fraction is defined, and depending on the loading condition, the fibers are either synthesized or degraded. The synthesis and degradation of collagen fibers are both assumed to be functions of individual fiber stretch and fiber volume fraction. Simulations are performed for closed aortic valve configurations and the open aortic valve configuration. The predicted fiber directions for the closed configurations are close to the fiber directions as measured in the native aortic valve. The model predicts the evolution in collagen fiber content and the effect of remodeling on the mechanical properties.

摘要

组织工程三叶主动脉瓣是当前瓣膜置换术的一种有前景的替代方案。然而,这些瓣膜的力学性能不足以植入主动脉位置。为了模拟胶原重塑对主动脉瓣力学性能的影响,提出了一个有限元模型。在本研究中,胶原重塑被假定为胶原合成和降解的净结果。定义了数量有限、初始纤维体积分数较低的纤维,并且根据加载条件,这些纤维要么合成要么降解。胶原纤维的合成和降解都被假定为单个纤维拉伸和纤维体积分数的函数。对闭合主动脉瓣构型和开放主动脉瓣构型进行了模拟。预测的闭合构型的纤维方向与在天然主动脉瓣中测量的纤维方向接近。该模型预测了胶原纤维含量的演变以及重塑对力学性能的影响。

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