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Temporal properties of network-mediated responses to repetitive stimuli are dependent upon retinal ganglion cell type

机译:网络介导的对重复刺激的反应的时间特性取决于视网膜神经节细胞类型

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摘要

To provide artificially-elicited vision that is temporally dynamic, retinal prosthetic devices will need to repeatedly stimulate retinal neurons. However, given the diversity of physiological types of retinal ganglion cells (RGCs) as well as the heterogeneity of their responses to electric stimulation, temporal properties of RGC responses have not been adequately investigated. Here, we explored the cell type dependence of network-mediated RGC responses to repetitive electric stimulation at various stimulation rates. Approach. We examined responses of ON and OFF types of RGCs in the rabbit retinal explant to five consecutive stimuli with varying inter-stimulus intervals (10-1000 ms). Each stimulus was a 4 ms long monophasic sinusoidal cathodal current, which was applied epiretinally via a conical electrode. Spiking activity of targeted RGCs was recorded using a cell-attached patch electrode. Main results. ON and OFF cells had distinct responses to repetitive stimuli. Consistent with earlier studies, OFF cells always generated reduced responses to subsequent stimuli compared to responses to the first stimulus. In contrast, a new stimulus to ON cells suppressed all pending/ongoing responses from previous stimuli and initiated its own response that was remarkably similar to the response from a single stimulus in isolation. This previously unreported 'reset' behavior was observed exclusively and consistently in ON cells. These contrasts between ON and OFF cells created a range of stimulation rates (4-7 Hz) that maximized the ratio of the responses arising in ON versus OFF cells. Significance. Previous clinical testing reported that subjects perceive bright phosphenes (ON responses) and also prefer stimulation rates of 5-7 Hz. Our results suggest that responses of ON cells are weak at high rates of stimulation (> ~7 Hz) due to the reset while responses of OFF cells are strong at low rates (< ~4 Hz) due to reduced desensitization, both reducing the ratio of ON to OFF responses. In combination with previous results indicating that responses in ON cells more closely match physiological patterns (Im and Fried 2015 J. Physiol. 593 3577-96), our results offer a potential reason for the user preference of intermediate rates (5-7 Hz).
机译:为了提供时间动态的人工视觉,视网膜假体设备将需要反复刺激视网膜神经元。然而,鉴于视网膜神经节细胞(RGCs)的生理类型的多样性以及它们对电刺激的反应的异质性,RGC反应的时间特性尚未得到充分研究。在这里,我们探索了网络介导的RGC在各种刺激速率下对重复电刺激的细胞类型依赖性。方法。我们检查了兔视网膜外植体中RGC的ON和OFF类型对五个连续刺激的刺激间隔(10-1000 ms)的变化。每个刺激是一个4毫秒长的单相正弦阴极电流,通过锥形电极在视网膜上施加。使用贴有细胞的贴片电极记录目标RGC的加标活性。主要结果。开和关细胞对重复刺激有不同的反应。与较早的研究一致,与对第一个刺激的反应相比,OFF细胞总是对随后的刺激产生减少的反应。相反,对ON细胞的新刺激抑制了先前刺激的所有待处理/持续反应,并启动了自己的反应,该反应与孤立的单个刺激的反应非常相似。仅在ON单元中一致地观察到了这种以前未报告的“重置”行为。 ON和OFF电池之间的这些差异产生了一系列的刺激速率(4-7 Hz),从而使ON和OFF电池中出现的响应比率最大化。意义。先前的临床测试报告称,受试者会感觉到明亮的phosph(ON响应),并且也更喜欢5-7 Hz的刺激率。我们的结果表明,由于复位,ON细胞的反应在高刺激率(>〜7 Hz)下较弱,而OFF细胞的反应由于脱敏作用减少而在低速率(<〜4 Hz)下较强,均降低了比率开到关响应。结合先前的结果表明ON细胞中的反应与生理模式更紧密匹配(Im和Fried 2015 J. Physiol。593 3577-96),我们的结果提供了用户偏爱中等频率(5-7 Hz)的潜在原因。

著录项

  • 来源
    《Journal of neural engineering》 |2016年第2期|025002.1-025002.13|共13页
  • 作者

    Maesoon Im; Shelley I Fried;

  • 作者单位

    VA Boston Healthcare System, 150 South Huntington Avenue, Boston, MA 02130, USA,Department of Neurosurgery, Massachusetts General Hospital and Harvard Medical School, 50 Blossom Street, Boston, MA 02114, USA,Department of Ophthalmology, Henry Ford Hospital, 1 Ford Place, Detroit, MI 48202, USA;

    VA Boston Healthcare System, 150 South Huntington Avenue, Boston, MA 02130, USA,Department of Neurosurgery, Massachusetts General Hospital and Harvard Medical School, 50 Blossom Street, Boston, MA 02114, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    retinal prosthesis; electrical stimulation; temporal property; retinal ganglion cell; electrophysiology;

    机译:视网膜假体电刺激时间属性;视网膜神经节细胞电生理;

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