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对人类右侧顶叶皮层进行有节奏的β频率重复经颅磁刺激会增强视觉大小错觉。

Rhythmic beta-frequency TMS over human right parietal cortex strengthens visual size illusions.

作者信息

Han Xue, Wang Chao, Chen Lihong

机构信息

Research Center of Brain and Cognitive Neuroscience, Liaoning Normal University, Dalian, 116029, China.

Key Laboratory of Brain and Cognitive Neuroscience, Dalian, 116029, Liaoning Province, China.

出版信息

Psychon Bull Rev. 2025 Feb 6. doi: 10.3758/s13423-025-02649-x.

Abstract

Rhythmic brain activity has been proposed to structure visual processing. Here we investigated the causal contributions of parietal beta oscillations to context-dependent visual size perception, which is indicated by the classic Ebbinghaus and Ponzo illusions. On each trial, rhythmic transcranial magnetic stimulation (TMS) was applied over the left or right superior parietal lobule in a train of five pulses at beta frequency (20 Hz). Immediately after the last pulse of the stimulation train, participants were presented with the illusory configuration, and performed a size-matching task. The results revealed that right parietal stimulation significantly increased the magnitudes of both size illusions relative to control vertex stimulation, whereas the illusion effects were unaffected with left parietal stimulation. Moreover, the stimulation effect was not observed with right parietal TMS at theta frequency (5 Hz). The findings clearly demonstrate the functional relevance of beta oscillations for the implementation of cognitive performance, supporting the causal contribution of parietal cortex to the processing of visual size illusions.

摘要

有观点认为,节律性脑活动会构建视觉处理过程。在此,我们研究了顶叶β振荡对依赖上下文的视觉大小感知的因果作用,经典的艾宾浩斯错觉和庞佐错觉表明了这种视觉大小感知。在每次试验中,以β频率(20赫兹)的五个脉冲序列,对左侧或右侧顶上小叶施加节律性经颅磁刺激(TMS)。在刺激序列的最后一个脉冲之后,立即向参与者呈现错觉构型,并让他们执行大小匹配任务。结果显示,相对于对照顶点刺激,右侧顶叶刺激显著增加了两种大小错觉的程度,而左侧顶叶刺激未影响错觉效应。此外,在θ频率(5赫兹)下进行右侧顶叶TMS时未观察到刺激效果。这些发现清楚地证明了β振荡对认知表现实施的功能相关性,支持了顶叶皮质对视觉大小错觉处理的因果作用。

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