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用视网膜下电极激活兔视网膜神经节细胞的阈值。

Thresholds for activation of rabbit retinal ganglion cells with a subretinal electrode.

作者信息

Jensen Ralph J, Rizzo Joseph F

机构信息

Center for Innovative Visual Rehabilitation, VA Boston Healthcare System, 150 South Huntington Avenue, Mail Stop 151E, Boston, MA 02130, USA.

出版信息

Exp Eye Res. 2006 Aug;83(2):367-73. doi: 10.1016/j.exer.2006.01.012. Epub 2006 Apr 17.

Abstract

The ultimate success of a retinal prosthesis to create vision will likely depend upon developing a base of knowledge of how best to electrically stimulate the retina. Previously, we studied the responses of rabbit retinal ganglion cells (RGCs) to current pulses applied with an electrode placed on the epiretinal surface. In the present study, we examined the responses of rabbit RGCs to current pulses applied with a subretinal electrode. Single-unit extracellular recordings were made from OFF RGCs and ON RGCs in isolated retinas, which were stimulated with monophasic current pulses (0.1-50ms in duration), delivered through a 500-mum diameter electrode. All RGCs elicited one or more bursts of action potentials upon electrical stimulation of the retina. The timing of the bursts depended upon both the polarity of the electrical stimulus and the RGC type. With near-threshold current pulses, the response latencies of OFF RGCs to anodal stimulation were comparable to those of ON RGCs to cathodal stimulation, whereas the response latencies of OFF RGCs to cathodal stimulation were comparable to those of ON RGCs to anodal stimulation. Threshold currents for activation of RGCs decreased with increased pulse duration. For OFF RGCs, threshold currents for cathodal current pulses were, on average, 2-7.5 times higher (depending upon pulse duration) than the threshold currents for anodal current pulses. For ON RGCs, threshold currents for cathodal and anodal current pulses were, on average, nearly identical for all pulse durations and were equivalent to threshold currents of OFF RGCs to anodal stimulation. With respect to a subretinal prosthesis, our findings suggest the possibility that cathodal current pulses may bias activation of ON RGCs in blind patients.

摘要

视网膜假体产生视觉的最终成功可能取决于建立关于如何最佳地电刺激视网膜的知识基础。此前,我们研究了兔视网膜神经节细胞(RGCs)对置于视网膜表面电极施加的电流脉冲的反应。在本研究中,我们检查了兔RGCs对经视网膜下电极施加的电流脉冲的反应。在分离的视网膜中对OFF RGCs和ON RGCs进行单单位细胞外记录,用单相电流脉冲(持续时间0.1 - 50毫秒)通过直径500微米的电极进行刺激。对视网膜进行电刺激时,所有RGCs都引发一个或多个动作电位爆发。爆发的时间取决于电刺激的极性和RGC类型。在接近阈值的电流脉冲下,OFF RGCs对阳极刺激的反应潜伏期与ON RGCs对阴极刺激的反应潜伏期相当,而OFF RGCs对阴极刺激的反应潜伏期与ON RGCs对阳极刺激的反应潜伏期相当。RGCs激活的阈值电流随脉冲持续时间增加而降低。对于OFF RGCs,阴极电流脉冲的阈值电流平均比阳极电流脉冲的阈值电流高2 - 7.5倍(取决于脉冲持续时间)。对于ON RGCs,阴极和阳极电流脉冲的阈值电流在所有脉冲持续时间下平均几乎相同,且与OFF RGCs对阳极刺激的阈值电流相当。关于视网膜下假体,我们的研究结果表明,阴极电流脉冲可能会使盲人患者的ON RGCs激活产生偏差。

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