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Electric Stimulation with Sinusoids and White Noise for Neural Prostheses

机译:正弦波和白噪声的电刺激神经假体

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摘要

We are investigating the use of novel stimulus waveforms in neural prostheses to determine whether they can provide more precise control over the temporal and spatial pattern of elicited activity as compared to conventional pulsatile stimulation. To study this, we measured the response of retinal ganglion cells to both sinusoidal and white noise waveforms. The use of cell-attached and whole cell patch clamp recordings allowed the responses to be observed without significant obstruction from the stimulus artifact. Electric stimulation with sinusoids elicited robust responses. White noise analysis was used to derive the linear kernel for the ganglion cell's spiking response as well as for the underlying excitatory currents. These results suggest that in response to electric stimulation, presynaptic retinal neurons exhibit bandpass filtering characteristics with a peak response that occurs 25 ms after onset. The experimental approach demonstrated here may be useful for studying the temporal response properties of other neurons in the CNS.
机译:我们正在研究在神经假体中使用新型刺激波形,以确定与传统的脉动刺激相比,它们是否可以对诱发活动的时间和空间模式提供更精确的控制。为了研究这一点,我们测量了视网膜神经节细胞对正弦和白噪声波形的响应。使用细胞附着和全细胞膜片钳记录可以观察到反应,而不会受到刺激伪影的明显阻碍。用正弦波进行电刺激会引起强烈的反应。白噪声分析用于得出神经节细胞的尖峰反应以及潜在的兴奋性电流的线性核。这些结果表明,在电刺激下,突触前视网膜神经元表现出带通滤波特性,在发作后25µms出现峰值响应。这里演示的实验方法可能对研究中枢神经系统中其他神经元的时间响应特性很有用。

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