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首页> 外文期刊>Cerebral cortex >Activity associated with stream segregation in human auditory cortex is similar for spatial and pitch cues.
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Activity associated with stream segregation in human auditory cortex is similar for spatial and pitch cues.

机译:对于空间和音高提示,与人类听觉皮质中的流分离相关的活动是相似的。

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摘要

Streaming is a perceptual mechanism by which the brain segregates information from multiple sound sources in our environment and assigns them to distinct auditory streams. Examples for streaming cues are differences in frequency spectrum, pitch, or space, and potential neural correlates for streaming based on spectral and pitch cues have been identified in the auditory cortex. Here, magnetoencephalography (MEG) and functional magnetic resonance imaging (fMRI) were used to evaluate if response enhancement in auditory cortex associated with streaming represents a general pattern that is independent of the stimulus cue. Interaural time differences (ITDs) were used as a spatial streaming cue and were compared with streaming based on fundamental frequency (f(0)) differences. The MEG results showed enhancement of the P(1)m after 60-90 ms that was similar during streaming based on ITD and pitch. Sustained fMRI activity was enhanced at identical sites in Heschl's gyrus and planum temporale for both cues; no topographical specificity for space or pitch was found for the streaming-associated enhancement. These results support the hypothesis of an early convergence of the neural representation for auditory streams that is independent of the acoustic cue that the streaming is based on.
机译:流是一种感知机制,大脑通过这种机制将环境中多个声音源中的信息隔离开,并将其分配给不同的听觉流。流提示的示例是频谱,音调或空间上的差异,并且在听觉皮层中已识别出基于频谱和音调提示的潜在流相关神经。在这里,脑磁图(MEG)和功能磁共振成像(fMRI)用于评估与流相关的听觉皮层的反应增强是否代表了独立于刺激提示的一般模式。耳间时间差(ITD)用作空间流提示,并与基于基频(f(0))差的流进行比较。 MEG结果显示,在60-90 ms之后,P(1)m的增强与基于ITD和音高的流式传输过程中相似。在两个线索中,Heschl的回和平面颞的相同部位的功能磁共振成像活动均得到增强。对于与流相关的增强,未发现空间或间距的地形特殊性。这些结果支持了听觉流的神经表示的早期收敛的假设,该假设与流基于的听觉提示无关。

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