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Peripheral refraction, peripheral eye length, and retinal shape in myopia

机译:近视眼的周边屈光度,周边眼长和视网膜形状

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摘要

Purpose: To investigate how peripheral refraction and peripheral eye length are related to retinal shape.ududMethods: Relative peripheral refraction RPR and relative peripheral eye length RPEL were determined in 36 young adults (M +0.75D to −5.25D) along horizontal and vertical visual field meridians to ±35° and ±30°, respectively. Retinal shape was determined in terms of vertex radius of curvature Rv, asphericity Q and equivalent radius of curvature REq using a partial coherence interferometry method involving peripheral eye lengths and model eye raytracing. Second order polynomial fits were applied to RPR and RPEL as functions of visual field position. Linear regressions were determined for the fits’ second order co-efficients and for retinal shape estimates as functions of central spherical refraction. Linear regressions investigate relationships of RPR and RPEL with retinal shape estimates. ududResults: Peripheral refraction, peripheral eye lengths and retinal shapes were significantly affected by meridian and refraction. More positive (hyperopic) relative peripheral refraction, more negative RPELs and steeper retinas were found along the horizontal than along the vertical meridian and in myopes than in emmetropes. RPR and RPEL, as represented by their second order fit coefficients, correlated significantly with retinal shape represented by REq.ududConclusion: Effects of meridian and refraction on RPR and PEL patterns are consistent with effects on retinal shape. Patterns derived from one of these predict the others: more positive (hyperopic) RPR predicts more negative RPEL and steeper retinas, more negative RPEL predicts more positive relative peripheral refraction and steeper retinas, and steeper retinas derived from peripheral eye lengths predict more positive RPR.
机译:目的:研究周围屈光度和周围眼长与视网膜形状之间的关系。 ud ud方法:确定36名年轻人(M + 0.75D至-5.25D)沿水平方向的相对屈光度RPR和相对周围眼长RPEL和垂直视野子午线分别为±35°和±30°。使用包括周边眼长和模型眼睛光线追踪的部分相干干涉法,根据顶点曲率半径Rv,非球面度Q和等效曲率半径REq确定视网膜形状。将二阶多项式拟合应用于RPR和RPEL,作为视野位置的函数。确定了拟合的二阶系数和视网膜形状估计(作为中心球面折射的函数)的线性回归。线性回归研究RPR和RPEL与视网膜形状估计之间的关系。 ud ud结果:子午线和屈光度显着影响周边屈光度,周边眼长和视网膜形状。与水平子午线相比,水平子午线中比垂直子午线中的正(远视)相对周边屈光度更高,负RPEL值更高,视网膜更陡峭。 RPR和RPEL以其二阶拟合系数表示,与REq。 ud ud表示的视网膜形状显着相关。结论:子午线和折射对RPR和PEL模式的影响与对视网膜形状的影响一致。从其中一种模式得出的模式可以预测其他模式:RPR(正视)的RPR越高,则RPEL越阴性,视网膜越陡; RPEL越阴性,相对的周边折射和视网膜越陡峭;而从周边眼长得出的视网膜越陡,则RPR越正。

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