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Sodium channel inactivation reduces retinal ganglion cell responsiveness to repetitive prosthetic stimulation

机译:钠通道失活降低了视网膜神经节细胞对重复性假体刺激的反应

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Several research groups are developing retinal implants for restoring sight to the profoundly blind. These devices are able to elicit simple percepts. However, recent human clinical studies have reported a frequency-dependent fading of electrically evoked percepts when stimulating at frequencies above several Hz. Studies using isolated retinas also observed a decline in RGC spiking response rate during repetitive stimulation. The mechanism(s) underlying this response rate decline could also contribute to the fading percepts in human patients. Using patch clamp recordings of rabbit retinas, we found a frequency-dependent inactivation of RGC voltage-gated sodium channels during repetitive stimulation at ≥ 50 Hz. This may have contributed to the RGC spiking response rate depression. Inhibition from the retinal network, however, did not have a significant effect on the response rate of these directly-activated RGCs.
机译:几个研究小组正在开发视网膜植入物,以使视障者恢复视力。这些设备能够引起简单的感知。然而,最近的人类临床研究已经报道了当以高于几赫兹的频率进行刺激时,电诱发的感知器的频率依赖性褪色。使用孤立的视网膜的研究还观察到重复刺激过程中RGC尖峰应答率下降。该响应率下降的潜在机制也可能有助于人类患者的衰落感。使用兔视网膜的膜片钳记录,我们发现在≥50 Hz的重复刺激过程中,RGC电压门控钠通道的频率依赖性失活。这可能是导致RGC尖峰响应率下降的原因。然而,来自视网膜网络的抑制作用对这些直接激活的RGC的反应率没有显着影响。

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