首页> 美国卫生研究院文献>The Korean Journal of Physiology Pharmacology : Official Journal of the Korean Physiological Society and the Korean Society of Pharmacology >Effect of Stimulus Waveform of Biphasic Current Pulse on Retinal Ganglion Cell Responses in Retinal Degeneration (rd1) mice
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Effect of Stimulus Waveform of Biphasic Current Pulse on Retinal Ganglion Cell Responses in Retinal Degeneration (rd1) mice

机译:双相电流脉冲的刺激波形对视网膜变性(rd1)小鼠视网膜神经节细胞反应的影响

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摘要

A retinal prosthesis is being developed for the restoration of vision in patients with retinitis pigmentosa (RP) and age-related macular degeneration (AMD). Determining optimal electrical stimulation parameters for the prosthesis is one of the most important elements for the development of a viable retinal prosthesis. Here, we investigated the effects of different charge-balanced biphasic pulses with regard to their effectiveness in evoking retinal ganglion cell (RGC) responses. Retinal degeneration (rd1) mice were used (n=17). From the ex-vivo retinal preparation, retinal patches were placed ganglion cell layer down onto an 8×8 multielectrode array (MEA) and RGC responses were recorded while applying electrical stimuli. For asymmetric pulses, 1st phase of the pulse is the same with symmetric pulse but the amplitude of 2nd phase of the pulse is less than 10 µA and charge balanced condition is satisfied by lengthening the duration of the pulse. For intensities (or duration) modulation, duration (or amplitude) of the pulse was fixed to 500 µs (30 µA), changing the intensities (or duration) from 2 to 60 µA (60 to 1000 µs). RGCs were classified as response-positive when PSTH showed multiple (3~4) peaks within 400 ms post stimulus and the number of spikes was at least 30% more than that for the immediate pre-stimulus 400 ms period. RGC responses were well modulated both with anodic and cathodic phase-1st biphasic pulses. Cathodic phase-1st pulses produced significantly better modulation of RGC activity than anodic phase-1st pulses regardless of symmetry of the pulse.
机译:目前正在开发一种视网膜假体,以恢复色素性视网膜炎(RP)和年龄相关性黄斑变性(AMD)患者的视力。确定用于假体的最佳电刺激参数是开发可行的视网膜假体的最重要因素之一。在这里,我们调查了不同的电荷平衡双相脉冲在引起视网膜神经节细胞(RGC)反应方面的效果。使用视网膜变性(rd1)小鼠(n = 17)。从离体视网膜制备中,将视网膜神经节细胞层放置在8×8多电极阵列(MEA)上,并在施加电刺激的同时记录RGC反应。对于非对称脉冲,脉冲的第一相与对称脉冲相同,但是脉冲的第二相的振幅小于10 µA,并且通过延长脉冲的持续时间可以满足电荷平衡条件。对于强度(或持续时间)调制,将脉冲的持续时间(或幅度)固定为500 µs(30 µA),将强度(或持续时间)从2更改为60 µA(60到1000 µs)。当PSTH在刺激后400毫秒内出现多个(3〜4)峰,且峰值峰值数量比立即刺激前400毫秒多30%时,RGC被归类为反应阳性。阳极和阴极第一相双相脉冲均能很好地调节RGC响应。不管脉冲的对称性如何,阴极第一相脉冲产生的RGC活性比阳极第一相脉冲产生更好的调制。

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