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Consideration of stiffness of wall layers is decisive for patient-specific analysis of carotid artery with atheroma

机译:对壁层刚度的考虑对于颈动脉患者特异性分析与运动瘤的特异性分析是决定性的

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The paper deals with the impact of chosen geometric and material factors on maximal stresses in carotid atherosclerotic plaque calculated using patient-specific finite element models. These stresses are believed to be decisive for the plaque vulnerability but all applied models suffer from inaccuracy of input data, especially when obtained in vivo only. One hundred computational models based on ex vivo MRI are used to investigate the impact of wall thickness, MRI slice thickness, lipid core and fibrous tissue stiffness, and media anisotropy on the calculated peak plaque and peak cap stresses. The investigated factors are taken as continuous in the range based on published experimental results, only the impact of anisotropy is evaluated by comparison with a corresponding isotropic model. Design of Experiment concept is applied to assess the statistical significance of these investigated factors representing uncertainties in the input data of the model. The results show that consideration of realistic properties of arterial wall in the model is decisive for the stress evaluation; assignment of properties of fibrous tissue even to media and adventitia layers as done in some studies may induce up to eightfold overestimation of peak stress. The impact of MRI slice thickness may play a key role when local thin fibrous cap is present. Anisotropy of media layer is insignificant, and the stiffness of fibrous tissue and lipid core may become significant in some combinations.
机译:本文涉及所选择的几何和材料因素对使用患者特定的有限元模型计算的颈动脉粥样硬化斑块的最大应力的影响。这些应力被认为是斑块脆弱性的决定性,但所有应用模型都患有输入数据的不准确性,特别是当仅在体内获得时。基于exVivo MRI的一百个计算模型用于研究壁厚,MRI切片厚度,脂质核心和纤维组织刚度的影响,以及媒体各向异性在计算的峰值斑块和峰帽应力上。通过基于已发表的实验结果的范围,调查的因素是连续的,通过与相应的各向同性模型进行比较,仅评估各向异性的影响。应用实验概念的设计以评估这些调查因子的统计学意义,这些因素代表了模型的输入数据中的不确定性。结果表明,模型中动脉壁的现实特性的考虑对于应力评估是决定性的;甚至在某些研究中均匀的纤维组织的性能分配甚至在某些研究中完成的培养基层可能会导致高度高估峰值应力。当存在局部薄纤维帽时,MRI切片厚度的影响可能起到关键作用。介质层的各向异性是微不足道的,并且在某些组合中纤维组织和脂质芯的刚度可能变得显着。

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