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Ongoing Temporal Coding of a Stochastic Stimulus as a Function of Intensity: Time-Intensity Trading

机译:正在进行的随机刺激的时间编码作为强度的函数:时间强度交易

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摘要

Stimulus-locked temporal codes are increasingly seen as relevant to perception. The timing of action potentials typically varies with stimulus intensity, and the invariance of temporal representations with intensity is therefore an issue. We examine the timing of action potentials in cat auditory nerve to broadband noise presented at different intensities, using an analysis inspired by coincidence detection and by the binaural “latency hypothesis.” It is known that the two cues for azimuthal sound localization, interaural intensity or level differences and interaural time differences (ITDs), interact perceptually. According to the latency hypothesis, the increase in intensity for the ear nearest to a sound source off the midline causes a decrease in response latency in that ear relative to the other ear. We found that changes in intensity cause small but systematic shifts in the ongoing timing of responses in the auditory nerve, generally but not always resulting in shorter delays between stimulus onset and neural response for increasing intensity. The size of the temporal shifts depends on characteristic frequency with a pattern indicating a fine-structure and an envelope response regime. Overall, the results show that ongoing timing is remarkably stable with intensity at the most peripheral neural level. The results are not consistent in a simple way with the latency hypothesis, but because of the acute sensitivity to ITDs, the subtle effects of intensity on timing may nevertheless have perceptual consequences.
机译:刺激锁定的时间码越来越被认为与感知有关。动作电位的时间通常随刺激强度而变化,因此时间表示随强度的不变性成为一个问题。我们使用巧合检测和双耳“潜伏假设”启发的分析,研究了猫听觉神经对不同强度的宽带噪声所产生的动作电位的时序。众所周知,方位角声音定位的两个线索,听觉强度或水平差和听觉时间差(ITD)在感知上相互作用。根据潜伏期假设,距离中线最近的声音源最靠近的耳朵的强度增加会导致该耳相对于另一只耳朵的响应潜伏期减少。我们发现,强度的改变会引起听觉神经反应进行中的时序发生细微但系统的变化,通常但并非总是导致刺激发作和神经响应强度增加之间的延迟时间缩短。时间偏移的大小取决于特征频率,该特征频率具有指示精细结构和包络响应机制的模式。总的来说,结果表明,在最周围的神经水平上,进行中的时机在强度上非常稳定。结果与延迟假说的简单方式不一致,但是由于对ITD的敏锐性,强度对时间的微妙影响可能仍会产生感知上的后果。

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