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Closed-Loop Efficient Searching of Optimal Electrical Stimulation Parameters for Preferential Excitation of Retinal Ganglion Cells

机译:视网膜神经节细胞优先激励的最佳电刺激参数的闭环高效搜索

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摘要

The ability for visual prostheses to preferentially activate functionally-distinct retinal ganglion cells (RGCs) is important for improving visual perception. This study investigates the use of high frequency stimulation (HFS) to elicit RGC activation, using a closed-loop algorithm to search for optimal stimulation parameters for preferential ON and OFF RGC activation, resembling natural physiological neural encoding in response to visual stimuli. We evaluated the performance of a wide range of electrical stimulation amplitudes and frequencies on RGC responses in vitro using murine retinal preparations. It was possible to preferentially excite either ON or OFF RGCs by adjusting amplitudes and frequencies in HFS. ON RGCs can be preferentially activated at relatively higher stimulation amplitudes (>150 μA) and frequencies (2–6.25 kHz) while OFF RGCs are activated by lower stimulation amplitudes (40–90 μA) across all tested frequencies (1–6.25 kHz). These stimuli also showed great promise in eliciting RGC responses that parallel natural RGC encoding: ON RGCs exhibited an increase in spiking activity during electrical stimulation while OFF RGCs exhibited decreased spiking activity, given the same stimulation amplitude. In conjunction with the in vitro studies, in silico simulations indicated that optimal HFS parameters could be rapidly identified in practice, whilst sampling spiking activity of relevant neuronal subtypes. This closed-loop approach represents a step forward in modulating stimulation parameters to achieve appropriate neural encoding in retinal prostheses, advancing control over RGC subtypes activated by electrical stimulation.
机译:视觉修复物优先激活功能不同的视网膜神经节细胞(RGC)的能力对于改善视觉感知非常重要。这项研究调查了使用高频刺激(HFS)来引发RGC激活,使用闭环算法来搜索优先ON和OFF RGC激活的最佳刺激参数,类似于对视觉刺激的自然生理神经编码。我们使用鼠视网膜制剂在体外评估了RGC反应的各种电刺激幅度和频率的性能。通过调整HFS中的幅度和频率,可以优先激发ON或OFF RGC。可以优先在相对较高的激励幅度(> 150μA)和频率(2-6.25 kHz)下激活ON RGC,而在所有测试频率(1-6.25 kHz)上通过较低的激励幅度(40–90μA)激活OFF RGC。这些刺激在引发与天然RGC编码相似的RGC响应中也显示出了巨大的希望:在相同的刺激幅度下,ON RGC在电刺激过程中显示出增强的刺突活性,而OFF RGC在刺激过程中显示出降低的刺突活性。结合体外研究,计算机模拟表明,可以在实践中快速确定最佳HFS参数,同时采样相关神经元亚型的突波活性。这种闭环方法代表了在调节刺激参数以在视网膜假体中实现适当的神经编码方面向前迈出的一步,从而进一步控制了由电刺激激活的RGC亚型。

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