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Selective imaging in second-harmonic-generation microscopy by polarization manipulation

机译:通过偏振操作在第二谐波产生显微镜中进行选择性成像

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摘要

Second-harmonic-generation (SHG) has proved itself as an important contrast mechanism in microscopic applications. Its noninvasiveness, optical sectioning capability, and high-penetrability provide attractive features in observation of thick biological tissues. Fibrous proteins, such as myosin and collagen, are dominant SHG harmonophores in vertebrates. Due to their biophotonic crystal nature, SHGs from these proteins are known to exhibit specific polarization dependencies, reflecting local molecule arrangements. Here the authors demonstrate a scheme to distinguish SHG from myosin-based muscle fibers and intertwined collagenous perimysium through polarization selection, without complicated staining or sample/image processing required.
机译:次谐波生成(SHG)已证明自己是微观应用中的重要对比机制。它的无创性,光学切片能力和高穿透性为厚厚的生物组织的观察提供了诱人的功能。纤维蛋白,例如肌球蛋白和胶原蛋白,是脊椎动物的主要SHG harmonophores。由于它们的生物光子晶体性质,已知来自这些蛋白质的SHG表现出特定的极化依赖性,反映了局部分子排列。在这里,作者展示了一种方案,该方案可通过极化选择将SHG与基于肌球蛋白的肌纤维和交织在一起的胶原性周围肌层区分开,而无需复杂的染色或样品/图像处理。

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