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Alignment maps of tissues: I. Microscopic elliptical polarimetry.

机译:组织的对准图:I.微观椭圆极化仪。

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摘要

An automated method for generating a fiber alignment map in tissues, tissue-equivalents, and other fibrillar materials exhibiting linear and circular optical properties and scattering is presented. This method consists of interrogating the sample with elliptically polarized light from a rotated quarter-wave plate and an effective circular analyzer, and implementing nonlinear regression techniques to estimate parameters defining the optical properties of the optic train and the sample. Thus, an account is made for imperfect and misaligned optic elements. The optic train was modeled using the Mueller matrix representation and the combined sample properties by an exponential matrix. Because a sample's Mueller matrix does not uniquely determine the linear, circular, or scattering properties, the circular properties and effective scattering are estimated for a matched isotropic sample to determine and correct for the linear birefringence of an aligned sample. The method's utility is demonstrated by generating an alignment map of an arterial media-equivalent, a relevant test case because of its circumferential alignment and thus showing the method's sample orientation independence.
机译:提出了一种自动方法,用于在组织,等效组织和其他具有线性和圆形光学特性以及散射的原纤维材料中生成纤维排列图。该方法包括用来自旋转的四分之一波片和有效的圆形分析仪的椭圆偏振光询问样品,以及实施非线性回归技术以估计定义光学系统和样品光学特性的参数。因此,考虑了光学元件的不完美和未对准。使用Mueller矩阵表示法和组合的样本属性通过指数矩阵对光学系统进行建模。由于样品的Mueller矩阵不能唯一地确定线性,圆形或散射特性,因此需要为匹配的各向同性样品估算圆形特性和有效散射,以确定并校正对齐样品的线性双折射。该方法的实用性通过生成等效于动脉介质的对齐图(由于其周向对齐)而成为一个相关的测试案例,从而证明了该方法的样本方向独立性,从而证明了该方法的实用性。

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