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Electrical field analysis of extracellular electrical stimulation of optic nerve with spiral cuff electrode

机译:螺旋袖带电极对视神经细胞外电刺激的电场分析

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Extracellular electrical stimulation of optic nerve can evoke both excitatory and localized visual sensations. These nerve responses are a potential substrate for restoring some function of vision to blind or near-blind patients. Optic nerve stimulation is a developing therapeutical method to treat blind subjects who still have functional retinal ganglion cells. However, the small diameter of optic nerve presents a challenge to determine the optimal geometry and position of spiral cuff electrode for evoking these responses. In order to determine the optimal spiral cuff electrode structure, a finite element model of optic nerve and surrounding structures were generated to simulate extracellular electrical stimulation. During simulation, variety of electrode structures were applied, and thickness of cerebrospinal fluid (CSF) was considered. Numerical calculations were performed by means of finite element method in three dimensions. The stimulation results indicate that bipolar electrodes can excite nerve, but the stimulation of tripolar electrodes structure is more effective. The thickness of CSF influences the stimulation results.
机译:视神经的细胞外电刺激可引起兴奋性和局部视觉。这些神经反应是恢复盲人或近盲患者视觉功能的潜在基础。视神经刺激是一种正在发展的治疗方法,用于治疗仍然具有功能性视网膜神经节细胞的盲人。然而,小直径的视神经对确定引起这些反应的螺旋袖带电极的最佳几何形状和位置提出了挑战。为了确定最佳的螺旋袖带电极结构,生成了视神经和周围结构的有限元模型来模拟细胞外电刺激。在模拟过程中,应用了各种电极结构,并考虑了脑脊液(CSF)的厚度。通过有限元方法在三个维度上进行了数值计算。刺激结果表明双极电极可以刺激神经,但是三极电极结构的刺激更为有效。脑脊液的厚度影响刺激结果。

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