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A pragmatic approach to understand peripheral artery lumen surface stiffness due to plaque heterogeneity

机译:理解斑块异质性导致外周动脉腔表面硬度的实用方法

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摘要

The goal of this study was to develop a pragmatic approach to build patient-specific models of the peripheral artery that are aware of plaque inhomogeneity. Patient-specific models using element-specific material definition (to understand the role of plaque composition) and homogeneous material definition (to understand the role of artery diameter and thickness) were automatically built from intravascular ultrasound images of three artery segments classified with low, average, and high calcification. The element-specific material models had average surface stiffness values of 0.0735, 0.0826, and 0.0973 MPa/mm, whereas the homogeneous material models had average surface stiffness values of 0.1392, 0.1276, and 0.1922 MPa/mm for low, average, and high calcification, respectively. Localization of peak lumen stiffness and differences in patient-specific average surface stiffness for homogeneous and element-specific models suggest the role of plaque composition on surface stiffness in addition to local arterial diameter and thickness.
机译:这项研究的目的是开发一种实用的方法来建立了解斑块不均匀性的患者特定的外周动脉模型。从三个低平均的动脉节段的血管内超声图像中,自动建立使用特定元素的材料定义(以了解斑块成分的作用)和均质材料定义(以了解动脉直径和厚度的作用)的患者特定模型。 ,钙化程度高。特定于元素的材料模型的平均表面刚度值为0.0735、0.0826和0.0973 MPa / mm,而对于低,平均和高钙化,均质材料模型的平均表面刚度值为0.1392、0.1276和0.1922 MPa / mm。 , 分别。峰值管腔刚度的定位以及针对均质和特定于元件的模型的患者特定平均表面硬度的差异表明,除了局部动脉直径和厚度以外,斑块成分对表面硬度的作用也很明显。

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