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A comparative study on electrically evoked responses of retinal ganglion cells in distinct retinal areas by computational model

机译:计算模型对不同视网膜区域视网膜神经节细胞的电诱发反应的对比研究

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Epiretinal prostheses have been reported to restore partial visual function of patients suffering from retinal degenerative diseases. The design of stimulating electrode array of the epiretinal prosthesis is one of the pivotal factors to influence its performance and spatial resolution. Because the cell density distribution of retinal ganglion cells(RGCs) and retinal anatomic structure varied with the eccentricity, stimulating electrodes should be designed specifically at different retinal eccentricities to obtain optimal visual restoration performance. In this study, computational models of epiretinal electrical stimulations in varied retinal eccentricity with variant RGCs densities in the temporal of center macular and peripheral macular areas were constructed. The activation thresholds and amount of excited RGCs were investigated and compared in these two areas under electrical stimulation with different pulse parameters, electrode sizes and electrode-retina distances. These modeling approaches can be used to further study the activated characters of RGCs in response to extrinsic electrical stimulations in different retinal areas, and improve the performance of epiretinal prostheses by optimizing stimulation strategies and electrode design.
机译:据报道,脑膜血管前肢体恢复患有视网膜退行性疾病的患者的部分视觉功能。刺激电极阵列的表位假体的设计是影响其性能和空间分辨率的枢转因子之一。因为视网膜神经节细胞(RGC)和视网膜解剖结构的细胞密度分布与偏心率变化,所以刺激电极应特别地设计在不同的视网膜偏心,以获得最佳的视觉修复性能。在该研究中,构建了中央黄斑和周边黄斑地区的变体RGCS密度的不同视网膜偏心型的齿轮电刺激的计算模型。研究了激活阈值和激发RGC的量,并在这两个区域下,在电刺激下,用不同的脉冲参数,电极尺寸和电极 - 视网膜距离。这些建模方法可用于进一步研究RGCS的激活特征,以响应不同视网膜区域中的外在电刺激,通过优化刺激策略和电极设计来改善表闭性假体的性能。

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