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首页> 外文期刊>Biophysical Journal >Imaging the Nonlinear Susceptibility Tensor of Collagen by Nonlinear Optical Stokes Ellipsometry
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Imaging the Nonlinear Susceptibility Tensor of Collagen by Nonlinear Optical Stokes Ellipsometry

机译:非线性光学斯托克斯椭圆仪对胶原蛋白的非线性磁化张量成像

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Nonlinear optical Stokes ellipsometric (NOSE) microscopy was demonstrated for the analysis of collagen-rich biological tissues. NOSE is based on polarization-dependent second harmonic generation imaging. NOSE was used to access the molecular-level distribution of collagen fibril orientation relative to the local fiber axis at every position within the field of view. Fibril tilt-angle distribution was investigated by combining the NOSE measurements with ab initio calculations of the predicted molecular nonlinear optical response of a single collagen triple helix. The results were compared with results obtained previously by scanning electron microscopy, nuclear magnetic resonance imaging, and electron tomography. These results were enabled by first measuring the laboratory-frame Jones nonlinear susceptibility tensor, then extending to the local-frame tensor through pixel-by-pixel corrections based on local orientation.
机译:非线性光学斯托克斯椭偏(NOSE)显微镜被证明可用于分析富含胶原蛋白的生物组织。 NOSE基于偏振相关的二次谐波生成成像。在视野内的每个位置,使用NOSE来获取相对于局部纤维轴的胶原原纤维取向的分子水平分布。通过将NOSE测量值与单个胶原三螺旋的预测分子非线性光学响应的​​从头算计算相结合,研究了原纤维的倾斜角分布。将结果与先前通过扫描电子显微镜,核磁共振成像和电子断层扫描获得的结果进行比较。通过首先测量实验室框架的Jones非线性磁化率张量,然后通过基于局部方向的逐像素校正将其扩展到局部框架张量,可以实现这些结果。

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