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Polarized light imaging of birefringence and diattenuation at high resolution and high sensitivity

机译:高分辨率和高灵敏度的双折射和双衰减的偏振光成像

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摘要

Polarized light microscopy provides unique opportunities for analyzing the molecular order in man-made and natural materials, including biological structures inside living cells, tissues, and whole organisms. 20 years ago, the LC-PolScope was introduced as a modern version of the traditional polarizing microscope enhanced by liquid crystal devices for the control of polarization, and by electronic imaging and digital image processing for fast and comprehensive image acquisition and analysis. The LC-PolScope is commonly used for birefringence imaging, analyzing the spatial and temporal variations of the differential phase delay in ordered and transparent materials. Here we describe an alternative use of the LC-PolScope for imaging the polarization dependent transmittance of dichroic materials. We explain the minor changes needed to convert the instrument between the two imaging modes, discuss the relationship between the quantities measured with each instrument, and touch on the physical connection between refractive index, birefringence, transmittance, diattenuation, and dichroism.
机译:偏振光显微镜为分析人造和天然材料(包括活细胞,组织和整个生物体内的生物结构)的分子顺序提供了独特的机会。 20年前,LC-PolScope被引入作为传统偏光显微镜的现代版本,它通过液晶装置来控制偏振,并通过电子成像和数字图像处理进行了增强,以进行快速,全面的图像采集和分析。 LC-PolScope通常用于双折射成像,分析有序和透明材料中差分相位延迟的时空变化。在这里,我们描述了LC-PolScope的另一种用途,用于对二向色性材料的偏振相关透射率进行成像。我们解释了在两种成像模式之间转换仪器所需的微小变化,讨论了用每种仪器测量的量之间的关系,并探讨了折射率,双折射,透射率,二色散和二色性之间的物理联系。

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