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Minimisation of Required Charge for Desired Neuronal Spike Rate

机译:最小化所需的神经元尖峰率所需的电荷

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Retinal implants restore limited visual perception to blind implantees by electrical stimulation of surviving neurons. We consider the efficacy of two electrical stimulation parameters, frequency of stimulation and interphase gap between cathodic and anodic phases, on the required charge to reach a desired neuronal spike rate. Using a Hodgkin-Huxley model of a neuron, we find the most efficient means of achieving a desired spike rate for neurons by electrical stimulation is to use a stimulation frequency identical to the desired spike rate, as well as a long interphase gap.
机译:视网膜植入物通过兴奋的神经元的电刺激恢复有限的视觉感知对盲目的植入物。我们考虑两个电刺激参数,刺激频率和阴极和阳极相之间间隙的功效,在所需的电荷达到所需的神经元尖峰率。使用神经元的Hodgkin-Huxley模型,我们发现通过电刺激实现所需的神经元的所需尖峰率的最有效手段是使用与所需的尖峰率相同的刺激频率,以及长期间隙。

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