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首页> 外文期刊>Journal of Neuroscience Methods >A cortical (V1) neurophysiological recording model for assessing the efficacy of retinal visual prostheses.
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A cortical (V1) neurophysiological recording model for assessing the efficacy of retinal visual prostheses.

机译:皮质(V1)神经生理记录模型,用于评估视网膜视觉假体的功效。

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摘要

A significant barrier to the development of a retinal prosthesis that is capable of inducing spatially patterned visual percepts has been a lack of adequate models to assess the efficacy of various electrical stimulation algorithms. Toward this end, we developed an in vivo, normally sighted animal model that is based on primary visual cortex neurophysiological recordings of spiking and local-field potential activity. Here, we describe this model, and we present results related to the spatial spread and location of the induced retinal activation. Our findings demonstrate that a single epiretinally delivered electric pulse induces two temporally separated cortical responses whose latencies are similar to the previously reported double responses of retinal ganglion cells (RGCs). Furthermore, our model indicates that the short latency response originates in widespread retinal locations that extend well beyond the location of the activated electrodes, whereas the long latency response has a more focal origin which corresponds to the location of the activated electrodes. The present work demonstrates the applicability of our model for the evaluation and development of electrical retinal stimulation methods using cortical recordings.
机译:缺乏能够评估各种电刺激算法功效的适当模型,这是能够诱导空间图案化视觉感知的视网膜假体发展的重要障碍。为此,我们开发了一种体内正常可见的动物模型,该模型基于尖峰和局部场潜在活动的主要视觉皮层神经生理学记录。在这里,我们描述了这种模型,并且我们提出了与诱导的视网膜激活的空间分布和位置有关的结果。我们的研究结果表明,一个单独的视网膜前电脉冲会诱发两个时间上分离的皮质反应,其潜伏期与之前报道的视网膜神经节细胞(RGC)的双重反应相似。此外,我们的模型表明,短潜伏期反应起源于广泛的视网膜位置,其延伸范围远超出激活电极的位置,而长潜伏期反应具有更局灶的起源,与激活电极的位置相对应。目前的工作证明了我们的模型适用于评估和开发使用皮质记录的视网膜电刺激方法的适用性。

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