Divergent thinking benefits from functional antagonism of the left IFG and right TPJ: a transcranial direct current stimulation study

颞顶交界 经颅直流电刺激 额下回 心理学 神经科学 额上回 额中回 刺激 认知 前额叶皮质
作者
Furong Huang,Xin Fu,Song Jia,Jingyuan Ren,Fuhong Li,Qiancheng Zhao
出处
期刊:Cerebral Cortex [Oxford University Press]
标识
DOI:10.1093/cercor/bhad531
摘要

Abstract Divergent thinking is assumed to benefit from releasing the constraint of existing knowledge (i.e. top–down control) and enriching free association (i.e. bottom–up processing). However, whether functional antagonism between top–down control–related and bottom–up processing–related brain structures is conducive to generating original ideas is largely unknown. This study was designed to investigate the effect of functional antagonism between the left inferior frontal gyrus and the right temporoparietal junction on divergent thinking performance. A within-subjects design was adopted for three experiments. A total of 114 participants performed divergent thinking tasks after receiving transcranial direct current stimulation over target regions. In particular, cathodal stimulation over the left inferior frontal gyrus and anodal stimulation over the right inferior frontal gyrus (Experiment 1), anodal stimulation over the right temporoparietal junction (Experiment 2), and both cathodal stimulation over the left inferior frontal gyrus and anodal stimulation over the right temporoparietal junction (Experiment 3) were manipulated. Compared with sham stimulation, the combination of hyperpolarization of the left inferior frontal gyrus and depolarization of the right temporoparietal junction comprehensively promoted the fluency, flexibility, and originality of divergent thinking without decreasing the rationality of generated ideas. Functional antagonism between the left inferior frontal gyrus (hyperpolarization) and right temporoparietal junction (depolarization) has a “1 + 1 > 2” superposition effect on divergent thinking.
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