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首页> 外文期刊>The European Journal of Neuroscience >Auditory motion perception: onset position and motion direction are encoded in discrete processing stages.
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Auditory motion perception: onset position and motion direction are encoded in discrete processing stages.

机译:听觉运动感知:起始位置和运动方向在离散的处理阶段进行编码。

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The neural processing of auditory motion information shows a pronounced interhemispheric asymmetry. In previous electrophysiological studies, the so-called motion-onset response (MOR), a prominent auditory-evoked potential to the onset of sound motion, was stronger over the hemisphere contralateral to the side of motion. Here, effects of lateral-onset position and direction of motion on MOR contralaterality were investigated. Eighteen listeners were presented with free-field sound stimuli that, after an initial stationary phase at a lateral spatial position within the left or right hemifield, started to move either left- or rightward. The early part of the MOR, the so-called change-N1, exhibited contralaterality that depended on the lateral motion-onset position with stronger activations over the hemisphere contralateral to the side of motion onset, whereas the contralaterality of the later part of the MOR, the so-called change-P2, merely depended on the direction of motion. Cortical source localization indicated that this pattern of contralaterality primarily resulted from asymmetric activation in primary auditory cortex and insula. These findings suggest that the early and late parts of the MOR reflect different phases in auditory motion perception, supporting the notion of a modular organization of discrete processing stages.
机译:听觉运动信息的神经处理显示出明显的半球间不对称性。在先前的电生理研究中,所谓的运动发作反应(MOR)是声音运动发作的一种重要的听觉诱发电位,在运动侧对侧的半球上更强。在这里,研究了横向发作位置和运动方向对MOR对侧的影响。向18位听众展示了自由场声音刺激,这些声音刺激在左半场或右半场内的横向空间位置初始静止阶段之后开始向左或向右移动。 MOR的早期部分,即所谓的Change-N1,表现出对侧性,这取决于侧向运动的开始位置,与运动开始的一侧相对的半球上的更强的激活性,而MOR的后半部分的对侧性,即所谓的变化P2,仅取决于运动方向。皮质来源的定位表明,这种对侧模式主要是由于初级听觉皮层和岛突的不对称激活引起的。这些发现表明,MOR的早期和晚期部分反映了听觉运动感知的不同阶段,支持了离散处理阶段的模块化组织的概念。

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