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Measurement of stress and strain applied to electrochemically aligned collagen fibres by second harmonic generation microscopy

机译:通过二次谐波显微镜测量施加到电化学排列的胶原纤维上的应力和应变

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In this study, we developed a novel strain measurement technique for electrochemically aligned collagen (ELAC) fibres using second harmonic generation (SHG) microscopy. The ELAC fibres were prepared by a typical electrochemical method and were subjected to cross-linking. For comparison with natural collagen fibres, polarization dependency of the prepared ELAC fibres and that of a human Achilles' tendon were evaluated. The results showed that, because of cross-linking, the ELAC fibres exhibit polarization dependency similar to that of the tendon but only in a region close to the tendon. The relationship between SHG and the applied strain was determined by a combination of SHG microscopy and tensile tests. The SHG from the ELAC fibres changed in the high strain region because of the applied stress.
机译:在这项研究中,我们开发了一种使用二次谐波(SHG)显微镜对电化学排列的胶原蛋白(ELAC)纤维进行应变测量的新技术。通过典型的电化学方法制备ELAC纤维,并使其交联。为了与天然胶原纤维进行比较,评估了制备的ELAC纤维和人跟腱的极化依赖性。结果表明,由于交联,ELAC纤维显示出与肌腱相似的偏振依赖性,但仅在靠近肌腱的区域显示。 SHG和施加的应变之间的关系是通过SHG显微镜和拉伸试验的组合来确定的。由于施加的应力,来自ELAC纤维的SHG在高应变区域发生了变化。

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