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A Computational Model of Peripheral Photocoagulation for the Prevention of Progressive Diabetic Capillary Occlusion

机译:预防性进行性糖尿病毛细血管闭塞的外周光凝计算模型

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摘要

We developed a computational model of the propagation of retinal ischemia in diabetic retinopathy and analyzed the consequences of various patterns and sizes of burns in peripheral retinal photocoagulation. The model addresses retinal ischemia as a phenomenon of adverse local feedback in which once a capillary is occluded there is an elevated probability of occlusion of adjacent capillaries resulting in enlarging areas of retinal ischemia as is commonly seen clinically. Retinal burns of different sizes and patterns, treated as local oxygen sources, are predicted to have different effects on the propagation of retinal ischemia. The patterns of retinal burns are optimized with regard to minimization of the sum of the photocoagulated retina and computer predicted ischemic retina. Our simulations show that certain patterns of retinal burns are effective at preventing the spatial spread of ischemia by creating oxygenated boundaries across which the ischemia does not propagate. This model makes no statement about current PRP treatment of avascular peripheral retina and notes that the usual spot sizes used in PRP will not prevent ischemic propagation in still vascularized retinal areas. The model seems to show that a properly patterned laser treatment of still vascularized peripheral retina may be able to prevent or at least constrain the propagation of diabetic retinal ischemia in those retinal areas with intact capillaries.
机译:我们开发了糖尿病性视网膜病变中视网膜缺血传播的计算模型,并分析了周围视网膜光凝中各种形式和大小的烧伤的后果。该模型将视网膜缺血视为一种不良的局部反馈现象,其中一旦毛细管被阻塞,相邻毛细血管的阻塞可能性就会增加,这会导致视网膜缺血区域的扩大,这在临床上很常见。视网膜烧伤的大小和方式不同,被认为是局部氧气源,对视网膜缺血的传播有不同的影响。就最小化光凝视网膜和计算机预测的缺血性视网膜的总和而言,优化了视网膜烧伤的模式。我们的模拟结果表明,某些形式的视网膜烧伤可通过创建局部缺血不会扩散的氧化边界来有效防止局部缺血的空间扩散。该模型没有关于当前PRP治疗无血管周围视网膜的任何陈述,并指出,PRP中使用的常规斑点大小不会阻止仍然血管化的视网膜区域的缺血性传播。该模型似乎表明,对仍然血管化的外周视网膜进行适当的图案化激光治疗可能能够预防或至少限制糖尿病性视网膜缺血在那些毛细血管完整的视网膜区域中的扩散。

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