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Efficacy of electrical stimulation of retinal ganglion cells with temporal patterns resembling light-evoked spike trains

机译:电刺激视网膜神经节细胞的时间模式类似于光诱发的尖峰序列的功效

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People with degenerative retinal diseases such as retinitis pigmentosa lose most of their photoreceptors but retain a significant proportion (∼30%) of their retinal ganglion cells (RGCs). Microelectronic retinal prostheses aim to bypass the lost photoreceptors and restore vision by directly stimulating the surviving RGCs. Here we investigate the extent to which electrical stimulation of RGCs can evoke neural spike trains with statistics resembling those of normal visually-evoked responses. Whole-cell patch clamp recordings were made from individual cat RGCs invitro. We first recorded the responses of each cell to short sequences of visual stimulation. These responses were converted to trains of electrical stimulation that we then presented to the same cell via an epiretinal stimulating electrode. We then quantified the efficacy of the electrical stimuli and the latency of the evoked spikes. In all cases, spikes were evoked with sub-millisecond latency (0.55 ms, median, ON cells, n = 8; 0.75 ms, median, OFF cells, n = 6) and efficacy ranged from 0.4–1.0 (0.79, median, ON cells; 0.97, median, OFF cells). These data demonstrate that meaningful spike trains, resembling normal responses of RGCs to visual stimulation, can be reliably evoked by epiretinal prostheses.
机译:视网膜色素变性等视网膜变性疾病患者失去了大部分感光细胞,但保留了视网膜神经节细胞(RGCs)的很大一部分(约30%)。微电子视网膜假体旨在通过直接刺激存活的RGC来绕过丢失的感光器并恢复视力。在这里,我们研究了RGC的电刺激在多大程度上可以激发神经突波序列,其统计类似于正常的视觉诱发反应。全细胞膜片钳记录是从单个cat RGC体外制备的。我们首先记录了每个细胞对短序列视觉刺激的反应。这些反应被转换为一系列电刺激,然后我们通过视网膜前刺激电极将其呈现给同一细胞。然后,我们量化了电刺激的功效和诱发尖峰的潜伏期。在所有情况下,诱发峰的时间都在亚毫秒以下(0.55毫秒,中位,ON细胞,n = 8; 0.75毫秒,中位,OFF细胞,n = 6),功效在0.4-1.0(0.79,中位,ON)之间单元; 0.97,中位数,OFF单元)。这些数据表明,前视网膜假体可以可靠地诱发出有意义的突波序列,类似于RGC对视觉刺激的正常反应。

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