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主动脉心脏瓣膜中胶原纤维结构预测的改进

Improved prediction of the collagen fiber architecture in the aortic heart valve.

作者信息

Driessen Niels J B, Bouten Carlijn V C, Baaijens Frank P T

机构信息

Department of Biomedical Engineering, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.

出版信息

J Biomech Eng. 2005 Apr;127(2):329-36. doi: 10.1115/1.1865187.

Abstract

Living tissues show an adaptive response to mechanical loading by changing their internal structure and morphology. Understanding this response is essential for successful tissue engineering of load-bearing structures, such as the aortic valve. In this study, mechanically induced remodeling of the collagen architecture in the aortic valve was investigated. It was hypothesized that, in uniaxially loaded regions, the fibers aligned with the tensile principal stretch direction. For biaxial loading conditions, on the other hand, it was assumed that the collagen fibers aligned with directions situated between the principal stretch directions. This hypothesis has already been applied successfully to study collagen remodeling in arteries. The predicted fiber architecture represented a branching network and resembled the macroscopically visible collagen bundles in the native leaflet. In addition, the complex biaxial mechanical behavior of the native valve could be simulated qualitatively with the predicted fiber directions. The results of the present model might be used to gain further insight into the response of tissue engineered constructs during mechanical conditioning.

摘要

活组织通过改变其内部结构和形态对机械负荷表现出适应性反应。理解这种反应对于成功进行诸如主动脉瓣等承重结构的组织工程至关重要。在本研究中,对主动脉瓣中胶原结构的机械诱导重塑进行了研究。假设在单轴加载区域,纤维沿拉伸主应变方向排列。另一方面,对于双轴加载条件,假定胶原纤维沿主应变方向之间的方向排列。这一假设已成功应用于研究动脉中的胶原重塑。预测的纤维结构呈现为分支网络,类似于天然瓣叶中宏观可见的胶原束。此外,利用预测的纤维方向可以定性模拟天然瓣膜复杂的双轴力学行为。本模型的结果可用于进一步深入了解组织工程构建体在机械调节过程中的反应。

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