Influence of surrounding tissues on biomechanics of aortic wall.

Jungsil Kim, Brooke Peruski, C. Hunley, Sebastian T. Kwon, S. Baek
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引用次数: 25

Abstract

The present study investigates effects of surrounding tissues and non-uniform wall thickness on the biomechanics of the thoracic aorta. We construct two idealised computational models exemplifying the importance of surrounding tissues and non-uniform wall thickness, namely the uniform-thickness model and the histology image-based model. While the former neglects a connective tissue layer surrounding the aorta, the latter takes it into account with non-uniform wall thickness. Using plane strain finite element analysis, stress distributions in the aortic media between the two models are compared. The histology image-based model substantially enhances the uniformity of stress throughout the aortic media. Furthermore, the altered mechanical properties of surrounding tissues change the stress distribution. These results suggest that surrounding tissues and non-uniform wall thickness should be included in biomechanical analysis to better understand regional adaptation of the aortic wall during normal physiological conditions or pathological conditions such as aortic aneurysms and dissections.
周围组织对主动脉壁生物力学的影响。
本文研究了胸主动脉周围组织和壁厚不均匀对其生物力学的影响。我们构建了两个理想化的计算模型,说明了周围组织和非均匀壁厚的重要性,即均匀厚度模型和基于组织学图像的模型。前者忽略了主动脉周围的结缔组织层,后者则考虑了其壁厚不均匀性。采用平面应变有限元分析方法,比较了两种模型主动脉介质的应力分布。基于组织学图像的模型大大增强了整个主动脉介质应力的均匀性。此外,周围组织力学性能的改变也改变了应力分布。这些结果表明,在生物力学分析中应包括周围组织和不均匀壁厚,以更好地了解在正常生理状态或病理状态(如主动脉动脉瘤和夹层)下主动脉壁的区域适应性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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