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Directional sensitivity of the retina: A layered scattering model of outer-segment photoreceptor pigments

机译:视网膜的方向敏感性:外段光感受器色素的分层散射模型

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Photoreceptor outer segments have been modeled as stacked arrays of discs or membrane infoldings containing visual pigments with light-induced dipole moments. Waveguiding has been excluded so fields diffract beyond the physical boundaries of each photoreceptor cell. Optical reciprocity is used to argue for identical radiative and light gathering properties of pigments to model vision. Two models have been introduced: one a macroscopic model that assumes a uniform pigment density across each layer and another microscopic model that includes the spatial location of each pigment molecule within each layer. Both models result in highly similar directionality at the pupil plane which proves to be insensitive to the exact details of the outer-segment packing being predominantly determined by the first and last contributing layers as set by the fraction of bleaching. The versatility of the microscopic model is demonstrated with an array of examples that includes the Stiles-Crawford effect, visibility of a focused beam of light and the role of defocus.
机译:感光器外部部分已被建模为包含视觉色素的圆盘或膜折叠的堆叠阵列,这些色素具有光诱导的偶极矩。波导已被排除在外,因此场衍射超出了每个感光细胞的物理边界。光学互易性用于证明颜料具有相同的辐射和聚光特性,从而可以建立视觉模型。引入了两个模型:一个是宏观模型,该模型假定每个层上的颜料密度均匀,另一个是微观模型,其中包括每个层中每个颜料分子的空间位置。两种模型都在光瞳平面处产生高度相似的方向性,这被证明对外部片段填充的确切细节不敏感,后者主要由第一和最后一个贡献层(由漂白比例确定)决定。微观模型的多功能性通过一系列示例进行了演示,其中包括Stiles-Crawford效应,聚焦光束的可见性以及散焦的作用。

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