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Polarization-Resolved Second-Harmonic Generation in Tendon upon Mechanical Stretching

机译:机械拉伸时在极化过程中极化解析的二次谐波产生

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摘要

Collagen is a triple-helical protein that forms various macromolecular organizations in tissues and is responsible for the biomechanical and physical properties of most organs. Second-harmonic generation (SHG) microscopy is a valuable imaging technique to probe collagen fibrillar organization. In this article, we use a multiscale nonlinear optical formalism to bring theoretical evidence that anisotropy of polarization-resolved SHG mostly reflects the micrometer-scale disorder in the collagen fibril distribution. Our theoretical expectations are confirmed by experimental results in rat-tail tendon. To that end, we report what to our knowledge is the first experimental implementation of polarization-resolved SHG microscopy combined with mechanical assays, to simultaneously monitor the biomechanical response of rat-tail tendon at macroscopic scale and the rearrangement of collagen fibrils in this tissue at microscopic scale. These experiments bring direct evidence that tendon stretching corresponds to straightening and aligning of collagen fibrils within the fascicle. We observe a decrease in the SHG anisotropy parameter when the tendon is stretched in a physiological range, in agreement with our numerical simulations. Moreover, these experiments provide a unique measurement of the nonlinear optical response of aligned fibrils. Our data show an excellent agreement with recently published theoretical calculations of the collagen triple helix hyperpolarizability.
机译:胶原蛋白是一种三螺旋蛋白,可在组织中形成各种大分子组织,并负责大多数器官的生物力学和物理特性。次谐波生成(SHG)显微镜是探测胶原纤维组织的一种有价值的成像技术。在本文中,我们使用多尺度非线性光学形式学来提供理论证据,表明偏振分辨SHG的各向异性主要反映了胶原纤维分布中的微米尺度紊乱。我们的理论期望被鼠尾肌腱的实验结果所证实。为此,我们报告了我们所了解的是偏振分辨SHG显微镜与机械分析相结合的第一个实验性实施,以同时宏观监控鼠尾肌腱的生物力学响应和该组织中胶原纤维的重新排列。微观规模。这些实验提供了直接的证据,证明腱的拉伸对应于束中胶原纤维的拉直和排列。与我们的数值模拟一致,当肌腱在生理范围内拉伸时,我们观察到SHG各向异性参数降低。此外,这些实验提供了对排列的原纤维的非线性光学响应的​​独特测量。我们的数据表明与最近发表的胶原三螺旋超极化性的理论计算非常吻合。

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