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In situ tensile testing of human aortas by time-resolved small-angle X-ray scattering

机译:时间分辨小角度X射线散射原位拉伸测试

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摘要

The collagen diffraction patterns of human aortas under uniaxial tensile test conditions have been investigated by synchrotron small- angle X- ray scattering. Using a recently designed tensile testing device the orientation and d- spacing of the collagen fibers in the adventitial layer have been measured in situ with the macroscopic force and sample stretching under physiological conditions. The results show a direct relation between the orientation and extension of the collagen fibers on the nanoscopic level and the macroscopic stress and strain. This is attributed first to a straightening, second to a reorientation of the collagen fibers, and third to an uptake of the increasing loads by the collagen fibers.
机译:已经通过同步加速器小角度X射线散射研究了在单轴拉伸试验条件下人主动脉的胶原蛋白衍射图。使用最近设计的拉伸测试设备,已经在生理条件下利用宏观力和样品拉伸原位测量了外膜层中胶原纤维的取向和d-间距。结果表明胶原蛋白纤维在纳米水平上的取向和延伸与宏观应力和应变之间存在直接关系。这首先归因于拉直,其次归因于胶原纤维的重新定向,其次归因于胶原纤维对增加的负荷的吸收。

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