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Enhanced representation of spectral contrasts in the primary auditory cortex

机译:增强了听觉皮层光谱对比的表示

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摘要

The role of early auditory processing may be to extract some elementary features from an acoustic mixture in order to organize the auditory scene. To accomplish this task, the central auditory system may rely on the fact that sensory objects are often composed of spectral edges, i.e., regions where the stimulus energy changes abruptly over frequency. The processing of acoustic stimuli may benefit from a mechanism enhancing the internal representation of spectral edges. While the visual system is thought to rely heavily on this mechanism (enhancing spatial edges), it is still unclear whether a related process plays a significant role in audition. We investigated the cortical representation of spectral edges, using acoustic stimuli composed of multi-tone pips whose time-averaged spectral envelope contained suppressed or enhanced regions. Importantly, the stimuli were designed such that neural responses properties could be assessed as a function of stimulus frequency during stimulus presentation. Our results suggest that the representation of acoustic spectral edges is enhanced in the auditory cortex, and that this enhancement is sensitive to the characteristics of the spectral contrast profile, such as depth, sharpness and width. Spectral edges are maximally enhanced for sharp contrast and large depth. Cortical activity was also suppressed at frequencies within the suppressed region. To note, the suppression of firing was larger at frequencies nearby the lower edge of the suppressed region than at the upper edge. Overall, the present study gives critical insights into the processing of spectral contrasts in the auditory system.
机译:早期听觉处理的作用可能是从声学混合物中提取一些基本特征,以组织听觉场景。为了完成该任务,中央听觉系统可能依赖于这样的事实,即感觉物体通常由频谱边缘组成,即,刺激能量随频率突然变化的区域。声学刺激的处理可受益于增强频谱边缘的内部表示的机制。虽然视觉系统被认为严重依赖于这种机制(增强空间边缘),但尚不清楚相关过程是否在试听中起重要作用。我们使用由多音点组成的声刺激研究了频谱边缘的皮质表示,这些音点的时间平均频谱包络包含抑制或增强的区域。重要的是,对刺激进行设计,以便在刺激呈示过程中可以将神经反应特性作为刺激频率的函数进行评估。我们的结果表明,听觉皮层中声学频谱边缘的表示得到增强,并且这种增强对频谱对比度分布的特征(如深度,清晰度和宽度)敏感。光谱边缘得到最大程度的增强,以提供鲜明的对比度和较大的深度。皮层活动也被抑制在抑制区域内的频率。注意,在被抑制区域的下边缘附近的频率处的发射抑制比在上边缘处的更大。总的来说,本研究对听觉系统中光谱对比的处理提供了重要的见解。

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