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Human brain activation during passive listening to sounds from different locations: an fMRI and MEG study.

机译:被动聆听来自不同位置的声音时的人脑激活:fMRI和MEG研究。

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Recent animal and human studies indicate the existence of a neural pathway for sound localization, which is similar to the "where" pathway of the visual system and distinct from the sound identification pathway. This study sought to highlight this pathway using a passive listening protocol. We employed fMRI to study cortical areas, activated during the processing of sounds coming from different locations, and MEG to disclose the temporal dynamics of these areas. In addition, the hypothesis of different activation levels in the right and in the left hemispheres, due to hemispheric specialization of the human brain, was investigated. The fMRI results indicate that the processing of sound, coming from different locations, activates a complex neuronal circuit, similar to the sound localization system described in monkeys known as the auditory "where" pathway. This system includes Heschl's gyrus, the superior temporal gyrus, the supramarginal gyrus, and the inferior and middle frontal lobe. The MEG analysisallowed assessment of the timing of this circuit: the activation of Heschl's gyrus was observed 139 ms after the auditory stimulus, the peak latency of the source located in the superior temporal gyrus was at 156 ms, and the inferior parietal lobule and the supramarginal gyrus peaked at 162 ms. Both hemispheres were found to be involved in the processing of sounds coming from different locations, but a stronger activation was observed in the right hemisphere.
机译:最近的动物和人类研究表明,存在用于声音定位的神经通路,该通路类似于视觉系统的“ where”通路,并且不同于声音识别通路。这项研究试图通过被动听音协议强调这一途径。我们利用功能磁共振成像研究皮质区域,该皮质区域在处理来自不同位置的声音时被激活,而MEG则揭示了这些区域的时间动态。另外,研究了由于人脑的半球专一性导致的左右半球激活水平不同的假设。 fMRI结果表明,来自不同位置的声音处理会激活复杂的神经元回路,类似于在猴子中描述的声音定位系统(称为“听觉”途径)。该系统包括赫氏回,上颞回,上弓回以及额中下叶。 MEG分析可以评估该电路的时序:听觉刺激后139毫秒观察到赫氏回的激活,颞上回的源峰潜伏期为156毫秒,顶下小叶和上arg回旋在162毫秒达到峰值。发现两个半球都参与了来自不同位置的声音的处理,但是在右半球中观察到了更强的激活。

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