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创造性思维的认知与神经基础:经颅直流电刺激研究的跨领域系统综述与荟萃分析

The cognitive and neural bases of creative thought: A cross-domain systematic review and meta-analysis of transcranial direct current stimulation studies.

作者信息

Chan Melody M Y, Cho Eugene, Lambon Ralph Matthew A, Robinson Gail A

机构信息

Queensland Brain Institute, The University of Queensland, QLD 4072, Australia.

MRC Cognition and Brain Sciences Unit, University of Cambridge, Cambridge CB2 7EF, UK.

出版信息

Neurosci Biobehav Rev. 2025 Aug;175:106237. doi: 10.1016/j.neubiorev.2025.106237. Epub 2025 May 28.

Abstract

Creative thought enables humans to flexibly generate, evaluate and select novel and adaptive ideas across different contexts. Decades of research indicates that it involves two key aspects: retrieval of previously acquired knowledge and manipulation of that knowledge. However, the cognitive processes underpinning these aspects remain underspecified. The broader clinical-cognitive neuroscience literature suggests these functions rely on general-purpose cognitive mechanisms supporting semantic cognition, controlled episodic memory retrieval, and executive mechanisms. Transcranial direct current stimulation (tDCS) is a neuromodulation technique widely used in creativity and cognitive neuroscience research to examine causal brain-behaviour relationships. To identify converging evidence toward a unifying neurocognitive account of creative thought, we reviewed and meta-analysed 145 sham-controlled tDCS studies (involving 8399 healthy participants aged 18-40), drawn from electronic databases and previous reviews, across creativity and relevant cognitive neuroscience literatures. The results revealed that, only left lateral frontal anodal tDCS promotes creativity (p < .01). In parallel, anodal tDCS over the same region also promotes improvement in many other cognitive processes, including more efficient processing of semantic knowledge (p < .05), more accurate episodic memory retrieval (p < .05), better and more efficient manipulation of buffered knowledge (all p < .001), better self-initiated response generation (i.e., energization; p < .05), and more efficient response selection amongst competing options (i.e., task-setting; p < .01). By merging these previously separate literatures, tDCS studies - although heavily biased toward frontal montages - support the notion that creative thought arises from general-purpose cognitive mechanisms including controlled retrieval and temporary storage of semantic and episodic information, as well as executive mechanisms.

摘要

创造性思维使人类能够在不同情境中灵活地生成、评估和选择新颖且适应性强的想法。数十年的研究表明,它涉及两个关键方面:检索先前获取的知识以及对该知识的运用。然而,支撑这些方面的认知过程仍未得到详细说明。更广泛的临床认知神经科学文献表明,这些功能依赖于支持语义认知、受控情景记忆检索和执行机制的通用认知机制。经颅直流电刺激(tDCS)是一种神经调节技术,在创造力和认知神经科学研究中被广泛用于检验因果性脑-行为关系。为了找到关于创造性思维统一神经认知解释的趋同证据,我们对145项假刺激对照tDCS研究(涉及8399名年龄在18至40岁的健康参与者)进行了综述和荟萃分析,这些研究来自电子数据库和先前的综述,涵盖了创造力和相关认知神经科学文献。结果显示,只有左侧额前阳极tDCS能促进创造力(p < 0.01)。同时,同一区域的阳极tDCS还能促进许多其他认知过程的改善,包括语义知识的更高效处理(p < 0.05)、情景记忆检索的更准确(p < 0.05)、缓冲知识的更好且更高效运用(所有p < 0.001)、更好的自我发起反应生成(即激发;p < 0.05)以及在竞争选项中更高效的反应选择(即任务设定;p < 0.01)。通过整合这些先前分散的文献,tDCS研究——尽管严重偏向额叶导联——支持了这样一种观点,即创造性思维源于通用认知机制,包括语义和情景信息的受控检索与临时存储以及执行机制。

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