首页> 外文会议>Conference on Multiphoton Microscopy in the Biomedical Sciences Ⅱ Jan 20-22, 2002 San Jose, USA >Biological photonic crystals revealed by multimodality nonlinear microscopy
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Biological photonic crystals revealed by multimodality nonlinear microscopy

机译:多模态非线性显微镜揭示的生物光子晶体

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A novel multi-modality nonlinear microscopy reveals highly optically-active biophotonic crystal structures in living cells. Numerous biological structures, including stacked membranes and arranged protein structures are highly organized in optical scale and are found to exhibit strong optical activities through second-harmonic-generation (SHG) interactions, behaving similar to man-made photonic crystals. The microscopic technology developed is based on a combination of imaging modalities including not only SHG, but also third-harmonic-generation and multi-photon-fluorescence. With no energy deposition during harmonic generation processes, the demonstrated highly-penetrative yet non-invasive microscopy is useful for investigating the dynamics of structure-function relationship at the molecular and subcellular levels and is ideal for studying living cells that require minimal or no preparation.
机译:新型的多模态非线性显微镜揭示了活细胞中高度光学活性的生物光子晶体结构。包括堆叠的膜和排列的蛋白质结构在内的许多生物结构在光学尺度上高度组织化,并发现它们通过二次谐波产生(SHG)相互作用表现出强大的光学活性,其行为与人造光子晶体相似。所开发的显微技术是基于成像模式的组合,不仅包括SHG,还包括三次谐波产生和多光子荧光。在谐波产生过程中没有能量沉积,已证明的高穿透性且非侵入性显微镜对于研究分子和亚细胞水平上的结构-功能关系的动力学非常有用,并且是研究需要最少或无需制备的活细胞的理想选择。

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