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Model for cone directionality reflectometric measurements based on scattering

机译:基于散射的圆锥方向性反射测量的模型

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Reflectrometric measurements provide an objective assessment of the directionality of the photoreceptors in the human retina. Measurements are obtained by imaging the distribution at the pupil plane of light reflected off the human fundus in a bleached condition. We propose that scattering as well as waveguides must be included in a model of the intensity distribution at the pupil plane. For scattering, the cone-photoreceptor array is treated as a random rough surface, characterized by the correlation length T (related to the distance between scatterers, i.e., mean cone spacing) and the roughness standard deviation σ (assuming random length variations of the cone outer-segment lengths that produce random phase differences). For realistic values of T andσwe can use the Kirchhoff approximation for computing the scattering distribution. The scattered component of the distribution can be fitted to a Gaussian function whose width depends only on T and λ. Actual measurements vary with experimental conditions (exposure time,'retinal eccentricity, and λ) in a manner consistent with the scattering model. However, photoreceptor directionality must be included in the model to explain the actual location of the peak of the intensity distribution in the pupil plane and the total angular spread of light. # 1998 Optical Society of America [S0740-3232(98)00808-.4] OCIS codes: 330.150, 330.190, 330.200, 330.4300, 330.5310, 330.5370, 110.0110, 290.0290.
机译:反射计测量提供了人类视网膜中感光体方向性的客观评估。通过对在漂白条件下从人眼底反射的光在瞳孔平面上的分布进行成像来获得测量值。我们建议在光瞳平面处的强度分布模型中必须包括散射以及波导。对于散射,视锥细胞受体阵列被视为随机的粗糙表面,其特征在于相关长度T(与散射体之间的距离有关,即平均视锥间距)和粗糙度标准偏差σ(假设视锥的随机长度变化)产生随机相位差的外部段长度)。对于T和σ的实际值,我们可以使用Kirchhoff近似来计算散射分布。分布的分散分量可以拟合高斯函数,其宽度仅取决于T和λ。实际测量值以与散射模型一致的方式随实验条件(曝光时间,视网膜偏心率和λ)而变化。但是,必须在模型中包括感光体的方向性,以解释光瞳平面中强度分布的峰值的实际位置和光的总角度扩展。 #1998美国光学学会[S0740-3232(98)00808-.4] OCIS代码:330.150、330.190、330.200、330.4300、330.5310、330.5370、110.0110、290.0290。

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