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Correspondence between visual and electrical input filters of ON and OFF mouse retinal ganglion cells

机译:ON和OFF小鼠视网膜神经节细胞视觉和电输入过滤器之间的对应关系

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Objective. Over the past two decades retinal prostheses have made major strides in restoring functional vision to patients blinded by diseases such as retinitis pigmentosa. Presently, implants use single pulses to activate the retina. Though this stimulation paradigm has proved beneficial to patients, an unresolved problem is the inability to selectively stimulate the on and off visual pathways. To this end our goal was to test, using white noise, voltage-controlled, cathodic, monophasic pulse stimulation, whether different retinal ganglion cell (RGC) types in the wild type retina have different electrical input filters. This is an important precursor to addressing pathway-selective stimulation. Approach. Using full-field visual flash and electrical and visual Gaussian noise stimulation, combined with the technique of spike-triggered averaging (STA), we calculate the electrical and visual input filters for different types of RGCs (classified as on, off or on-off based on their response to the flash stimuli). Main results. Examining the STAs, we found that the spiking activity of on cells during electrical stimulation correlates with a decrease in the voltage magnitude preceding a spike, while the spiking activity of off cells correlates with an increase in the voltage preceding a spike. No electrical preference was found for on-off cells. Comparing STAs of wild type and rdlO mice revealed narrower electrical STA deflections with shorter latencies in rdlO. Significance. This study is the first comparison of visual cell types and their corresponding temporal electrical input filters in the retina. The altered input filters in degenerated rdlO retinas are consistent with photoreceptor stimulation underlying visual type-specific electrical STA shapes in wild type retina. It is therefore conceivable that existing implants could target partially degenerated photoreceptors that have only lost their outer segments, but not somas, to selectively activate the on and off visual pathways.
机译:目的。在过去的二十年中,视网膜假体在为色素性视网膜炎等疾病致盲的患者恢复功能性视力方面取得了长足的进步。目前,植入物使用单个脉冲来激活视网膜。尽管这种刺激范例已被证明对患者有益,但尚未解决的问题是无法选择性地刺激视觉通路的开和关。为此,我们的目标是使用白噪声,电压控制,阴极,单相脉冲刺激来测试野生型视网膜中不同的视网膜神经节细胞(RGC)类型是否具有不同的电输入滤波器。这是解决途径选择性刺激的重要先兆。方法。通过使用全场视觉闪光以及电学和视觉高斯噪声刺激,结合尖峰触发平均(STA)技术,我们可以计算出不同类型的RGC(分为开,关或开-关)的电和视觉输入滤波器根据他们对闪光刺激的反应)。主要结果。通过检查STA,我们发现在电刺激过程中,细胞上的尖峰活动与尖峰前电压幅度的降低相关,而离体细胞的尖峰活动与尖峰前电压的升高相关。开关电池未发现电学偏好。比较野生型和rd10小鼠的STA,发现STA的电STA偏转更窄,而rd10的潜伏期更短。意义。这项研究是视觉细胞类型及其在视网膜中相应的时间电输入滤波器的首次比较。退化的rd10视网膜中改变的输入滤光片与野生型视网膜中视觉类型特异性电STA形状基础的感光器刺激一致。因此可以想象,现有的植入物可以靶向部分退化的光感受器,这些光感受器仅失去了其外部部分,而没有失去体细胞,以选择性地激活视觉通路的开和关。

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  • 来源
    《Journal of neural engineering》 |2017年第4期|046017.1-046017.12|共12页
  • 作者单位

    Institute for Ophthalmic Research, Eberhard Karls University, 72076 Tubingen, Germany,Werner Reichardt Centre for Integrative Neuroscience (CIN), 72076 TUbingen, Germany,Graduate Training Centre of Neuroscience/International Max Planck Research School, 72074 Tubingen, Germany,Bernstein Centre for Computational Neuroscience Tubingen, 72076 Tubingen, Germany;

    Institute for Ophthalmic Research, Eberhard Karls University, 72076 Tubingen, Germany,Werner Reichardt Centre for Integrative Neuroscience (CIN), 72076 TUbingen, Germany,Graduate Training Centre of Neuroscience/International Max Planck Research School, 72074 Tubingen, Germany;

    Institute for Ophthalmic Research, Eberhard Karls University, 72076 Tubingen, Germany,Werner Reichardt Centre for Integrative Neuroscience (CIN), 72076 TUbingen, Germany,Bernstein Centre for Computational Neuroscience Tubingen, 72076 Tubingen, Germany;

    Institute for Ophthalmic Research, Eberhard Karls University, 72076 Tubingen, Germany,Werner Reichardt Centre for Integrative Neuroscience (CIN), 72076 TUbingen, Germany,Bernstein Centre for Computational Neuroscience Tubingen, 72076 Tubingen, Germany;

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  • 正文语种 eng
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  • 关键词

    prosthesis; white noise analysis; preferential stimulation; linear systems analysis; retinal physiology;

    机译:假体白噪声分析;优先刺激;线性系统分析;视网膜生理;

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