首页> 外文会议>Optical Interactions with Tissue and Cells XVII; Progress in Biomedical Optics and Imaging; vol.7, no.7 >Monitoring of collagen shrinkage by use of second harmonic generation microscopy
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Monitoring of collagen shrinkage by use of second harmonic generation microscopy

机译:通过二次谐波显微镜监测胶原蛋白的收缩

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Thermal treatment induced collagen shrinkage has a great number of applications in medical practice. Clinically, the there is lack of reliable non-invasive methods to quantify the shrinkage. Overt treatment by heat application can lead to devastating results. We investigate the serial changes of collagen shrinkage by thermal treatment of rat tail tendons. The change in length is correlated with the finding in second harmonic generation microscopy and histology. Rat tail tendon shortens progressively during initial thermal treatment. After a certain point in time, the length then remains almost constant despite further thermal treatment. The intensity of second harmonic generation signals also progressively decreases initially and then remains merely detectable upon further thermal treatment. It prompts us to develop a mathematic model to quantify the dependence of collagen shrinkage on changes of SHG intensity. Our results show that SHG intensity can be used to predict the degree of collagen shrinkage during thermal treatment for biomedical applications.
机译:热处理引起的胶原蛋白收缩在医学实践中具有大量应用。临床上,缺乏可靠的非侵入性方法来量化收缩。通过加热进行明显处理会导致毁灭性后果。我们研究了通过大鼠尾肌腱热处理胶原蛋白收缩的系列变化。长度的变化与二次谐波显微镜和组织学的发现有关。初始热处理期间,大鼠尾腱逐渐缩短。在某个时间点之后,尽管进行了进一步的热处理,长度仍保持几乎恒定。二次谐波产生信号的强度也开始逐渐减小,然后仅在进一步热处理时才可检测到。它促使我们建立一个数学模型来量化胶原蛋白收缩对SHG强度变化的依赖性。我们的结果表明,SHG强度可用于预测生物医学应用热处理过程中胶原蛋白的收缩程度。

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