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Precise motion-free polarization control in Second Harmonic Generation microscopy using a liquid crystal modulator in the infinity space

机译:使用无穷大空间中的液晶调制器在第二谐波产生显微镜中进行精确的无运动偏振控制

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摘要

Second Harmonic Generation (SHG) microscopy coupled with polarization analysis has great potential for use in tissue characterization, as molecular and supramolecular structural details can be extracted. Such measurements are difficult to perform quickly and accurately. Here we present a new method that uses a liquid crystal modulator (LCM) located in the infinity space of a SHG laser scanning microscope that allows the generation of any desired linear or circular polarization state. As the device contains no moving parts, polarization can be rotated accurately and faster than by manual or motorized control. The performance in terms of polarization purity was validated using Stokes vector polarimetry, and found to have minimal residual polarization ellipticity. SHG polarization imaging characteristics were validated against well-characterized specimens having cylindrical and/or linear symmetries. The LCM has a small footprint and can be implemented easily in any standard microscope and is cost effective relative to other technologies.
机译:由于可以提取分子和超分子的结构细节,因此二次谐波产生(SHG)显微镜与极化分析相结合具有很大的潜力用于组织表征。这种测量难以快速而准确地执行。在这里,我们介绍一种使用位于SHG激光扫描显微镜的无穷大空间中的液晶调制器(LCM)的新方法,该方法可以生成任何所需的线性或圆偏振态。由于该设备不包含运动部件,因此偏振比手动或电动控制可以更准确,更快速地旋转。使用斯托克斯矢量极化法验证了极化纯度方面的性能,发现其残留极化椭圆率最小。 SHG偏振成像特性已针对具有圆柱形和/或线性对称性的特征鲜明的标本进行了验证。 LCM占用空间小,可以在任何标准显微镜中轻松实现,并且相对于其他技术具有成本效益。

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