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Light scattering of normal human lens I. Application of random density and orientation fluctuation theory.

机译:正常人晶状体的光散射I.随机密度和取向波动理论的应用。

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摘要

Light-scattering intensities in the I parallel and I+ mode were obtained on thin sections of three human lenses. Random density and orientation fluctuation theory, without cross correlation, was employed to evaluate light-scattering parameters. Both the density correlation distances, as well as the orientation correlation distances, were related to structural elements in the lens fiber cell that have been observed by other investigators with different techniques. The magnitude of these fluctuations were evaluated, and it was demonstrated that the density fluctuations are the main contributors to light scattering in normal human lenses. Changes in the light-scattering parameters were evaluated as a function of position within the lens. The changes observed agree with the biochemical data in the literature that reflects that an aging process occurs when one proceeds from the periphery of the lens toward the center.
机译:I平行和I +模式下的光散射强度是在三个人类镜头的薄切片上获得的。没有互相关的随机密度和方向波动理论被用于评估光散射参数。密度相关距离以及取向相关距离都与晶状体纤维细胞中的结构元素有关,其他研究人员已经用不同的技术观察到了这些结构元素。评估了这些波动的幅度,并证明了密度波动是正常人晶状体中光散射的主要因素。评估光散射参数的变化作为透镜内位置的函数。观察到的变化与文献中的生化数据相吻合,后者反映了当人们从晶状体的边缘向中心前进时,就会发生老化过程。

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