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Ultra-fine frequency tuning revealed in single neurons of human auditory cortex

机译:在人类听觉皮层的单个神经元中揭示了超精细的频率调谐

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摘要

Just-noticeable differences of physical parameters are often limited by the resolution of the peripheral sensory apparatus. Thus, two-point discrimination in vision is limited by the size of individual photoreceptors. Frequency selectivity is a basic property of neurons in the mammalian auditory pathway. However, just-noticeable differences of frequency are substantially smaller than the bandwidth of the peripheral sensors. Here we report that frequency tuning in single neurons recorded from human auditory cortex in response to random-chord stimuli is far narrower than that typically described in any other mammalian species (besides bats), and substantially exceeds that attributed to the human auditory periphery. Interestingly, simple spectral filter models failed to predict the neuronal responses to natural stimuli, including speech and music. Thus, natural sounds engage additional processing mechanisms beyond the exquisite frequency tuning probed by the random-chord stimuli.
机译:物理参数的明显差异通常受外围传感设备的分辨率限制。因此,视觉上的两点鉴别受单个感光体的大小限制。频率选择性是哺乳动物听觉途径中神经元的基本特性。但是,频率差异明显小于外围传感器的带宽。在这里,我们报告说,从人类听觉皮层记录的响应于随机弦刺激的单个神经元的频率调谐比任何其他哺乳动物物种(蝙蝠除外)中通常描述的频率调谐要窄得多,并且大大超过了归因于人类听觉外围的频率调谐。有趣的是,简单的频谱过滤器模型无法预测神经元对自然刺激(包括语音和音乐)的反应。因此,自然声音除了通过随机和弦刺激探测到的精致的频率调谐外,还需要其他处理机制。

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