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The oscillatory entrainment of virtual pitch perception

机译:虚拟音高感知的振荡夹带

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Evidence suggests that synchronized brain oscillations in the low gamma range (around 33 Hz) are involved in the perceptual integration of harmonic complex tones. This process involves the binding of harmonic components into “harmonic templates” – neural structures responsible for pitch coding in the brain. We investigated the hypothesis that oscillatory harmonic binding promotes a change in pitch perception style from spectral (frequency) to virtual (relational). Using oscillatory priming we asked 24 participants to judge as rapidly as possible, the direction of an ambiguous target with ascending spectral and descending virtual contour. They made significantly more virtual responses when primed at 29, 31, and 33 Hz and when the first target tone was harmonically related to the prime, suggesting that neural synchronization in the low gamma range could facilitate a shift toward virtual pitch processing.
机译:有证据表明,在低伽马范围(约33 Hz)内同步的大脑振动参与了谐波复调的感知整合。这个过程涉及将谐波成分绑定到“谐波模板”中,后者是负责脑中音调编码的神经结构。我们研究了一个假设,即振荡谐波绑定促进了音调感知样式从频谱(频率)到虚拟(关系)的变化。通过使用振荡启动,我们要求24位参与者尽可能快地判断具有上升频谱和下降虚拟轮廓的模糊目标的方向。当在29、31和33 Hz上启动时,以及当第一个目标音调与启动音谐波相关时,他们做出了更多的虚拟响应,这表明低伽马范围内的神经同步可以促进向虚拟音调处理的转变。

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