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Remodelling of the angular collagen fiber distribution in cardiovascular tissues

机译:重塑心血管组织中角胶原纤维的分布

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摘要

Understanding collagen fiber remodelling is desired to optimize the mechanical conditioning protocols in tissue-engineering of load-bearing cardiovascular structures. Mathematical models offer strong possibilities to gain insight into the mechanisms and mechanical stimuli involved in these remodelling processes. In this study, a framework is proposed to investigate remodelling of angular collagen fiber distribution in cardiovascular tissues. A structurally based model for collagenous cardiovascular tissues is extended with remodelling laws for the collagen architecture, and the model is subsequently applied to the arterial wall and aortic valve. For the arterial wall, the model predicts the presence of two helically arranged families of collagen fibers. A branching, diverging hammock-type fiber architecture is predicted for the aortic valve. It is expected that the proposed model may be of great potential for the design of improved tissue engineering protocols and may give further insight into the pathophysiology of cardiovascular diseases.
机译:需要了解胶原纤维的重塑以优化承重心血管结构的组织工程中的机械调节方案。数学模型为深入了解这些重构过程中涉及的机制和机械刺激提供了强大的可能性。在这项研究中,提出了一个框架来研究心血管组织中角胶原纤维分布的重塑。利用胶原结构的重塑规律扩展了胶原心血管组织的基于结构的模型,随后将该模型应用于动脉壁和主动脉瓣。对于动脉壁,该模型预测存在两个螺旋排列的胶原纤维家族。对于主动脉瓣,预测有分支,发散的吊床型纤维结构。预期所提出的模型对于设计改进的组织工程方案可能具有巨大潜力,并且可以提供对心血管疾病的病理生理学的进一步了解。

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