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Characterization of retinal ganglion cell activities evoked by temporally patterned electrical stimulation for the development of stimulus encoding strategies for retinal implants.

机译:通过时间模式的电刺激诱发的视网膜神经节细胞活性的表征,以开发用于视网膜植入物的刺激编码策略。

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摘要

For successful restoration of visual function by retinal implant, a method for electrical stimulation should be devised so that the evoked activities of retinal ganglion cells (RGCs) should convey sufficient information on visual input. By observing RGC activities under different stimulation constraints, it may be possible to determine optimal pulse parameters, such as pulse rate, intensity, and duration, for faithful transmission of visual information. To test the feasibility of this approach, we analyzed RGC spike trains evoked by temporally patterned stimulation from retinal patches mounted on a planar multielectrode array. Assuming that the intensity of uniform visual input is transformed to amplitudes of pulse trains, we attempted to determine optimal methods for modulating the pulse amplitude so that the information essential for the perception of intensity variation is properly represented in RGC responses. RGC firing rates could be modulated to track the temporal pattern of pulse amplitude variations, which implies that pulse amplitude modulation is a plausible means to enable perception of temporal visual patterns by retinal implants. As expected, specific pulse amplitude modulation parameters were crucial for proper encoding of visual input. RGC firing rates increased monotonically according to the pulse amplitude in a defined pulse amplitude range (20-60 microA). The similarity between the RGC firing rate and the temporal pulse intensity pattern was highest when the pulse amplitude was modulated within this range. The optimal pulse rate range could be similarly determined.
机译:为了通过视网膜植入物成功恢复视觉功能,应设计一种电刺激方法,以使视网膜神经节细胞(RGC)的诱发活动在视觉输入上传达足够的信息。通过观察在不同刺激约束下的RGC活动,可以确定最佳的脉冲参数,如脉冲速率,强度和持续时间,以忠实地传输视觉信息。为了测试这种方法的可行性,我们分析了安装在平面多电极阵列上的视网膜斑块的时间模式刺激引起的RGC尖峰序列。假设将统一的视觉输入的强度转换为脉冲序列的振幅,我们尝试确定用于调制脉冲振幅的最佳方法,以便在RGC响应中正确表示感知强度变化的必要信息。可以调制RGC发射速率以跟踪脉冲幅度变化的时间模式,这暗示着脉冲幅度调制是使视网膜植入物能够感知时间视觉模式的合理手段。不出所料,特定的脉冲幅度调制参数对于视觉输入的正确编码至关重要。在定义的脉冲幅度范围内(20-60 microA),RGC发射速率根据脉冲幅度单调增加。当在此范围内调制脉冲幅度时,RGC触发频率和时间脉冲强度模式之间的相似度最高。最佳脉冲率范围可以类似地确定。

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