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Spatial Localization of Auditory Stimuli in Human Auditory Cortex is Based on Both Head-Independent and Head-Centered Coordinate Systems

机译:人类听觉皮层中听觉刺激的空间定位基于独立于头部和基于头部居中的坐标系

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摘要

In humans, whose ears are fixed on the head, auditory stimuli are initially registered in space relative to the head. Eventually, locations of sound sources need to be encoded also relative to the body, or in absolute allocentric space, to allow orientation toward the sounds sources and consequent action. We can therefore distinguish between two spatial representation systems: a basic head-centered coordinate system and a more complex head-independent system. In an ERP experiment, we attempted to reveal which of these two coordinate systems is represented in the human auditory cortex. We dissociated the two systems using the mismatch negativity (MMN), a well studied EEG effect evoked by acoustic deviations. Contrary to previous findings suggesting that only primary head-related information is present at this early stage of processing, we observed significant MMN effects for both head-independent and head-centered deviant stimuli. Our findings thus reveal that both primary head-related and secondary body- or world-related reference frames are represented at this stage of auditory processing.
机译:在耳朵固定在头部的人类中,听觉刺激最初是在相对于头部的空间中记录的。最终,声源的位置也需要相对于身体进行编码,或者在绝对同心圆空间中进行编码,以允许朝向声源定向并进行后续操作。因此,我们可以区分两个空间表示系统:基本的以头部为中心的坐标系和更复杂的与头部无关的系统。在一个ERP实验中,我们试图揭示人类听觉皮层中代表了这两个坐标系中的哪个。我们使用失配负性(MMN)分离了这两个系统,失配负性(MMN)是由声音偏差引起的经过充分研究的EEG效应。与以前的发现相反,在处理的这个早期阶段中仅存在与头部有关的主要信息,我们观察到了对于独立于头部和以头部为中心的异常刺激的明显的MMN效应。因此,我们的发现表明,在听觉处理的这个阶段,主要的与头部相关的和与次要的与身体或世界相关的参考系都可以表示。

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