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A method for mechanical characterization of small blood vessels and vascular grafts

机译:小血管和血管移植物的机械表征方法

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摘要

For small animal vascular disease models and for the development of small-diameter vascular prosthesis, biomechanical data is important. However, these tiny structures with low diameter (< 1 mm) require special handling and testing. To allow investigation of a high sample number, a custom designed, easy probe fixation was connected to a tensile testing system. In hoop tensile measurements, ring-shaped specimens were loaded circumferentially via two pins. The setup was used for an atherosclerosis experiment in mice where 238 ring-samples of thoracic aortae were tested. Significantly higher ultimate tensile force (413 +/- 123mN) and aortic stiffness (34.3 +/- 4.3 N/m) were seen in atherosclerotic group, compared to control group (347 +/- 108mN and 31.5 +/- 3.8 N/m). Mechanical properties also varied in both groups along the aorta, with tendency to increased strength and higher stiffness in distal locations. A sensitive preparation and measurement technique has been developed for the characterization of very small tubular specimens.
机译:对于小动物血管疾病模型和小直径血管假体的开发,生物力学数据很重要。但是,这些小直径(<1 mm)的微小结构需要特殊的处理和测试。为了调查大量样品,将定制设计,易于固定的探针连接到拉伸测试系统。在环向拉伸测量中,环形样品通过两个销钉沿周向加载。该装置用于小鼠的动脉粥样硬化实验,其中测试了238个胸主动脉环样本。与对照组(347 +/- 108mN和31.5 +/- 3.8 N / m)相比,动脉粥样硬化组的终极拉伸力(413 +/- 123mN)和主动脉刚度(34.3 +/- 4.3 N / m)明显更高)。沿主动脉的两组的机械特性也各不相同,并有在远端位置增加强度和提高刚度的趋势。已经开发了一种敏感的制备和测量技术来表征非常小的管状样品。

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