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Impact of photoreceptor density in a 3D simulation of panretinal laser photocoagulation

机译:摄影密度在PANRetinal激光光凝3D模拟中的影响

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During panretinal photocoagulation (PRP), the outer retina, especially the photoreceptors, are destroyed. During such procedures, the impact of the retinal photocoagulation, which is performed in the same photocoagulated area, may change if it is applied to different locations with different photoreceptor densities. Thus, we aimed to evaluate the influence of photoreceptor density on PRP. We constructed a three-dimensional (3D) average distribution of photoreceptors with 3D computer-aided design (CAD) software using previously derived photoreceptor density data and calculated the number of photoreceptors destroyed by scatter PRP and full-scatter PRP (size 400-μm on the retina, spacing 1.0 spot) using a geometry-based simulation. To investigate the impact of photoreceptor density on PRP, we calculated the ratio of the number of photoreceptors destroyed to the total number of photoreceptors, termed the photoreceptor destruction index. In this 3D simulation, the total number of photoreceptors was 96,571,900. The total number of photoreceptors destroyed by scatter PRP and full-scatter PRP were 15,608,200 and 19,120,600, respectively, and the respective photoreceptor destruction indexes were 16.2 and 19.8%, respectively. Scatter PRP is expected to have 4/5 of the number of photoreceptors destroyed by full-scatter PRP.
机译:在PANRetinal光凝(PRP)期间,外视网膜,尤其是感光体被破坏。在此过程中,如果将其在相同的光凝聚区域中进行的视网膜光凝的影响可能会改变,如果它被施加到具有不同感光体密度的不同位置。因此,我们旨在评估光感受器密度对PRP的影响。我们使用先前推导的感光体密度数据构建了具有3D计算机辅助设计(CAD)软件的光感受器的三维(3D)平均分布,并计算了由散射PRP和全散射PRP破坏的感光体的数量(尺寸400-μm视网膜,间距1.0点)使用基于几何的模拟。为了探讨光感受器密度对PRP的影响,我们计算了被破坏到感光体总数的感光器数量的比率,称为感光体破坏指数。在该3D模拟中,光感受器的总数为96,571,900。散射PRP和全散射PRP破坏的光感受器总数分别为15,608,200和19,120,600,相应的感光体破坏指数分别为16.2和19.8%。散射PRP预计将拥有全散射PRP破坏的光感受器数量的4/5。

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