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A novel technique for the assessment of mechanical properties of vascular tissue

机译:一种评估血管组织力学性能的新技术

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Accurate estimation of mechanical properties of the different atherosclerotic plaque constituents is important in assessing plaque rupture risk. The aim of this study was to develop an experimental set-up to assess material properties of vascular tissue, while applying physiological loading and being able to capture heterogeneity. To do so, a ring-inflation experimental set-up was developed in which a transverse slice of an artery was loaded in the radial direction, while the displacement was estimated from images recorded by a high-speed video camera. The performance of the set-up was evaluated using seven rubber samples and validated with uniaxial tensile tests. For four healthy porcine carotid arteries, material properties were estimated using ultrasound strain imaging in whole-vessel-inflation experiments and compared to the properties estimated with the ring-inflation experiment. A 1D axisymmetric finite element model was used to estimate the material parameters from the measured pressures and diameters, using a neo-Hookean and Holzapfel-Gasser-Ogden material model for the rubber and porcine samples, respectively. Reproducible results were obtained with the ring-inflation experiment for both rubber and porcine samples. Similar mean stiffness values were found in the ring-inflation and tensile tests for the rubber samples as 202 kPa and 206 kPa, respectively. Comparable results were obtained in vessel-inflation experiments using ultrasound and the proposed ring-inflation experiment. This inflation set-up is suitable for the assessment of material properties of healthy vascular tissue in vitro. It could also be used as part of a method for the assessment of heterogeneous material properties, such as in atherosclerotic plaques.
机译:准确估计不同动脉粥样硬化斑块成分的机械性质在评估斑块破裂风险方面是重要的。本研究的目的是开发一种实验性设置,以评估血管组织的材料特性,同时施加生理负荷并能够捕获异质性。为此,开发了一种振铃膨胀实验设置,其中动脉的横向切片在径向方向上加载,而从高速摄像机记录的图像估计位移。使用七个橡胶样品评估设置的性能,并用单轴拉伸试验验证。对于四个健康的猪颈动脉,使用全血管膨胀实验中的超声菌株成像估计物质性质,并与随着环形通胀实验估计的性能相比。使用橡胶和猪样品的Neo-Hookean和Holzapfel-Gasser-Ogden材料模型,使用1D轴对称有限元模型来估计来自测量的压力和直径的材料参数。用橡胶和猪样品的环状实验获得可重复的结果。在橡胶样品的环胀和拉伸试验中,分别发现了类似的平均刚度值分别为202kPa和206kPa。在使用超声波和所提出的环通化实验的血管膨胀实验中获得了可比的结果。这种通胀设置适用于在体外评估健康血管组织的材料特性。它还可以用作评估异质材料性质的方法的一部分,例如在动脉粥样硬化斑块中。

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