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Electrically-evoked Neural Activities of rd1 Mice Retinal Ganglion Cells by Repetitive Pulse Stimulation

机译:重复脉冲刺激对rd1小鼠视网膜神经节细胞的电诱发神经活动

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摘要

For successful visual perception by visual prosthesis using electrical stimulation, it is essential to develop an effective stimulation strategy based on understanding of retinal ganglion cell (RGC) responses to electrical stimulation. We studied RGC responses to repetitive electrical stimulation pulses to develop a stimulation strategy using stimulation pulse frequency modulation. Retinal patches of photoreceptor-degenerated retinas from rd1 mice were attached to a planar multi-electrode array (MEA) and RGC spike trains responding to electrical stimulation pulse trains with various pulse frequencies were observed. RGC responses were strongly dependent on inter-pulse interval when it was varied from 500 to 10 ms. Although the evoked spikes were suppressed with increasing pulse rate, the number of evoked spikes were >60% of the maximal responses when the inter-pulse intervals exceeded 100 ms. Based on this, we investigated the modulation of evoked RGC firing rates while increasing the pulse frequency from 1 to 10 pulses per second (or Hz) to deduce the optimal pulse frequency range for modulation of RGC response strength. RGC response strength monotonically and linearly increased within the stimulation frequency of 1~9 Hz. The results suggest that the evoked neural activities of RGCs in degenerated retina can be reliably controlled by pulse frequency modulation, and may be used as a stimulation strategy for visual neural prosthesis.
机译:对于通过使用电刺激的视觉假体进行的成功视觉感知,必须基于对视网膜神经节细胞(RGC)对电刺激的反应的了解,制定有效的刺激策略。我们研究了RGC对重复电刺激脉冲的响应,以开发使用刺激脉冲频率调制的刺激策略。将来自rd1小鼠的光感受器变性视网膜的视网膜斑块附着到平面多电极阵列(MEA)上,并观察到RGC尖峰序列对各种脉冲频率的电刺激脉冲序列的响应。当RGC从500毫秒变化到10毫秒时,它强烈依赖于脉冲间隔。尽管随着脉冲频率的增加,诱发的尖峰被抑制,但是当脉冲间间隔超过100 ms时,诱发的尖峰的数量大于最大响应的60%。基于此,我们研究了诱发的RGC触发频率的调制,同时将脉冲频率从每秒1个脉冲(或Hz)增加到10个脉冲,以得出用于调制RGC响应强度的最佳脉冲频率范围。 RGC响应强度在1〜9 Hz的刺激频率内单调线性增加。结果表明,可以通过脉冲频率调制可靠地控制变性视网膜中RGC的诱发神经活动,并可作为视觉神经假体的刺激策略。

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