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Auditory sensitivity may require dynamically unstable spike generators: Evidence from a model of electrical stimulation

机译:听觉敏感性可能需要动态不稳定的尖峰发生器:来自电刺激模型的证据

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摘要

The response of the auditory nerve to electrical stimulation is highly sensitive to small modulations(<0.5%). This report demonstrates that dynamical instability (i.e., a positive Lyapunov exponent) can account for this sensitivity in a modified FitzHugh-Nagumo model of spike generation, so long as the input noise is not too large. This finding suggests both that spike generator instability is necessary to account for auditory nerve sensitivity and that the amplitude of physiological noise, such as that produced by the random behavior of voltage-gated sodium channels, is small. Based on these results with direct electrical stimulation, it is hypothesized that spike generator instability may be the mechanism that reconciles high sensitivity with the cross-fiber independence observed under acoustic stimulation.
机译:听神经对电刺激的反应对小调制高度敏感(<0.5%)。该报告证明了动态不稳定性(即正Lyapunov指数)可以在修改的FitzHugh-Nagumo尖峰生成模型中解释这种敏感性,只要输入噪声不太大即可。这一发现表明,尖峰发生器的不稳定性对于听觉神经的敏感性是必需的,生理噪声的振幅(如电压门控钠通道的随机行为所产生的振幅)很小。基于直接电刺激的这些结果,假设尖峰发生器的不稳定性可能是将高灵敏度与在声刺激下观察到的交叉纤维独立性相协调的机制。

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