Optimal stimulus waveforms for eliciting a spike: How close is the spike-triggered average?

Joshua Chang, D. Paydarfar
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引用次数: 2

Abstract

Computing the average input stimulus preceding a spike, the spike-triggered average (STA), has been a powerful tool for discovering a neuron's `preferred' stimulus feature that enables efficient encoding of sensory information. Recent work in the squid giant axon has shown that STA waveforms can be remarkably similar to the energetically optimal stimulus waveforms for eliciting a spike. In the present study, we show using the Hodgkin-Huxley model that the STA can deviate from the global optimal solution if there is averaging of multiple solutions across different time scales and of multiple modes of spike induction. These findings inform attempts to develop model-free stochastic algorithms for finding energy-optimal stimuli, which is relevant to the efficient delivery of exogenous therapeutic stimuli in neurological diseases.
引发峰值的最佳刺激波形:峰值触发的平均值有多接近?
计算峰值之前的平均输入刺激,即峰值触发平均(STA),已经成为发现神经元“首选”刺激特征的强大工具,这种特征可以有效地编码感觉信息。最近对鱿鱼巨大轴突的研究表明,STA波形与引发尖峰的能量最佳刺激波形非常相似。在本研究中,我们使用Hodgkin-Huxley模型证明,如果在不同时间尺度上对多个解进行平均,并且对多个尖峰感应模式进行平均,则STA可能偏离全局最优解。这些发现为开发无模型随机算法以寻找能量最优刺激的尝试提供了信息,这与神经系统疾病中外源性治疗刺激的有效传递有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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