首页> 外文期刊>NeuroImage >Perception of the touch-induced visual double-flash illusion correlates with changes of rhythmic neuronal activity in human visual and somatosensory areas.
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Perception of the touch-induced visual double-flash illusion correlates with changes of rhythmic neuronal activity in human visual and somatosensory areas.

机译:触摸诱发的视觉双闪错觉的感知与人类视觉和体感区域的节律性神经元活动的变化相关。

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摘要

A single brief visual stimulus accompanied by two brief tactile stimuli is frequently perceived incorrectly as two flashes, a phenomenon called double-flash illusion (DFI). We investigated whether the DFI is accompanied by changes in rhythmic neuronal activity, using magnetoencephalography in human subjects. Twenty-two subjects received visuo-tactile stimulation and reported the number of perceived visual stimuli. We sorted trials with identical physical stimulation according to the reported subjective percept and assessed differences in spectral power in somatosensory and occipital sensors. In DFI trials, occipital sensors displayed a contralateral enhancement of gamma-band (80-140 Hz) activity in response to stimulation. In somatosensory sensors, the DFI was associated with an increase of spectral power for low frequencies (5-17.5 Hz) around stimulation and a decrease of spectral power in the 22.5-30 Hz range between 450 and 750 ms post-stimulation. In summary, several components of rhythmic activity predicted variable subjective experience for constant physical stimulation. Notably, the enhanced occipital gamma-band activity during DFI was similar in time and frequency extent to the somatosensory gamma-band response to tactile stimulation. We speculate that the DFI might therefore occur when the somatosensory gamma-response is transmitted to visual cortex. This transmission might be supported by the observed modulations in low-frequency activity.
机译:通常,一次短暂的视觉刺激与两次短暂的触觉刺激会被错误地感知为两次闪光,这种现象称为双闪光幻觉(DFI)。我们使用人脑磁图检查了DFI是否伴有节律性神经元活动的变化。 22名受试者接受了视觉触觉刺激,并报告了感知到的视觉刺激的数量。我们根据报告的主观感知对具有相同物理刺激的试验进行了分类,并评估了体感和枕部传感器的光谱功率差异。在DFI试验中,枕骨传感器对刺激显示出对侧增强的γ波段(80-140 Hz)活动。在体感传感器中,DFI与刺激后低频(5-17.5 Hz)的频谱功率增加和刺激后450至750毫秒之间22.5-30 Hz范围内的频谱功率降低相关。总之,有节奏的活动的几个组成部分预测了不断的物理刺激的可变主观体验。值得注意的是,DFI过程中枕叶伽马射线带活动性的增强在时间和频率上类似于对触觉刺激的体感伽马射线带反应。我们推测,当体感伽马响应传递到视觉皮层时,可能会发生DFI。低频活动中观察到的调制可能支持这种传输。

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