首页> 外文会议>Conference on Fluctuations and Noise in Biological, Biophysical, and Biomedical Systems Jun 2-4, 2003 Santa Fe, New Mexico, USA >Stochastic Resonance in the Electrically Stimulated Auditory Nerve: Predictions using a Stochastic Model of Neural Responsiveness
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Stochastic Resonance in the Electrically Stimulated Auditory Nerve: Predictions using a Stochastic Model of Neural Responsiveness

机译:电刺激听觉神经中的随机共振:使用神经反应性随机模型的预测。

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The incorporation of low levels of noise into an electrical stimulus has been shown to improve auditory thresholds in human subjects. In this paper, thresholds for noise-modulated pulse-train stimuli are predicted by utilizing a stochastic neural-behavioral model of ensemble fiber responses to bi-phasic stimuli. A neural spike count comparison rule has been presented for both threshold and intensity discrimination under the assumption that loudness is a monotonic function of the number of neuron spikes. An alternative approach which we have pursued involves analyzing the neural response to each individual pulse within a pulse train to investigate the threshold behavior. The refractory effect is described using a Markov model for a noise-free pulse-train stimulus. A recursive method using the conditional probability is utilized to track the neural responses to each successive pulse for a noise-modulated pulse-train stimulus. After determining the stochastic properties of the auditory nerve response to each pulse within the pulse train, a logarithmic rule is hypothesized for pulse-train threshold and the predictions are shown to match psychophysical data not only for noise-free stimuli but also for noise-modulated stimuli. Results indicate that threshold decreases as noise variance increases.
机译:已经证明将低水平的噪声引入电刺激中可以改善人类受试者的听觉阈值。在本文中,通过利用集合纤维对双相刺激的随机神经行为模型来预测噪声调制脉冲序列刺激的阈值。在响度是神经元尖峰数目的单调函数的假设下,已针对阈值和强度区分提出了神经尖峰计数比较规则。我们一直追求的另一种方法是分析脉冲序列中每个脉冲的神经反应,以研究阈值行为。使用马尔可夫模型对无噪声脉冲序列刺激来描述耐火效果。利用条件概率的递归方法可用于跟踪对每个连续脉冲的神经响应,以进行噪声调制的脉冲序列刺激。在确定听觉神经对脉冲序列中每个脉冲的随机特性后,假设对数规则适用于脉冲序列阈值,并且显示的预测不仅与无噪声刺激而且与调制后的心理生理数据匹配刺激。结果表明,阈值随噪声方差的增加而降低。

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