首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Mapping Molecular Orientation with Phase Sensitive Vibrationally Resonant Sum-Frequency Generation Microscopy
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Mapping Molecular Orientation with Phase Sensitive Vibrationally Resonant Sum-Frequency Generation Microscopy

机译:相敏感的振动和频率生成显微镜的映射分子取向。

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We demonstrate a phase sensitive, vibrationally resonant sum-frequency generation (PSVR-SFG) microscope that combines high resolution, fast image acquisition speed, chemical selectivity, and phase sensitivity. Using the PSVR-SFG microscope, we generate amplitude and phase images of the second-order susceptibility of collagen I fibers in rat tail tendon tissue on resonance with the methylene vibrations of the protein. We find that the phase of the second-order susceptibility shows dependence on the effective polarity of the fibril bundles, revealing fibrous collagen domains of opposite orientations within the tissue. The presence of collagen microdomains in tendon tissue may have implications for the interpretation of the mechanical properties of the tissue.
机译:我们展示了一种相敏,振动共振和频生成(PSVR-SFG)显微镜,该显微镜结合了高分辨率,快速图像采集速度,化学选择性和相敏性。使用PSVR-SFG显微镜,我们通过与蛋白质的亚甲基振动共振,在大鼠尾腱组织中生成了胶原I纤维的二次敏感性的振幅和相位图像。我们发现二阶磁化率的相位显示出对原纤维束有效极性的依赖性,揭示了组织内相反方向的纤维胶原蛋白域。肌腱组织中胶原微区的存在可能对组织机械性能的解释有影响。

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