首页> 美国卫生研究院文献>Cerebral Cortex (New York NY) >Thinking Cap Plus Thinking Zap: tDCS of Frontopolar Cortex Improves Creative Analogical Reasoning and Facilitates Conscious Augmentation of State Creativity in Verb Generation
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Thinking Cap Plus Thinking Zap: tDCS of Frontopolar Cortex Improves Creative Analogical Reasoning and Facilitates Conscious Augmentation of State Creativity in Verb Generation

机译:思维上限与思维转变:额极皮质的tDCS改善了创造性的类比推理并促进了动词生成中状态创造力的自觉增强

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摘要

Recent neuroimaging evidence indicates neural mechanisms that support transient improvements in creative performance (augmented state creativity) in response to cognitive interventions (creativity cueing). Separately, neural interventions via tDCS show encouraging potential for modulating neuronal function during creative performance. If cognitive and neural interventions are separately effective, can they be combined? Does state creativity augmentation represent “real” creativity, or do interventions simply yield divergence by diminishing meaningfulness/appropriateness? Can augmenting state creativity bolster creative reasoning that supports innovation, particularly analogical reasoning? To address these questions, we combined tDCS with creativity cueing. Testing a regionally specific hypothesis from neuroimaging, high-definition tDCS-targeted frontopolar cortex activity recently shown to predict state creativity augmentation. In a novel analogy finding task, participants under tDCS formulated substantially more creative analogical connections in a large matrix search space (creativity indexed via latent semantic analysis). Critically, increased analogical creativity was not due to diminished accuracy in discerning valid analogies, indicating “real” creativity rather than inappropriate divergence. A simpler relational creativity paradigm (modified verb generation) revealed a tDCS-by-cue interaction; tDCS further enhanced creativity cue-related increases in semantic distance. Findings point to the potential of noninvasive neuromodulation to enhance creative relational cognition, including augmentation of the deliberate effort to formulate connections between distant concepts.
机译:最近的神经影像学证据表明,神经机制支持对认知干预(创造力提示)的创造力(增强的状态创造力)的短暂改善。另外,通过tDCS进行的神经干预显示出在创造力表现期间调节神经元功能的令人鼓舞的潜力。如果认知和神经干预分别有效,是否可以将它们结合起来?国家创造力的增强代表“真正的”创造力,还是干预通过减少意义/适当性而简单地产生分歧?增强国家创造力是否可以支持支持创新的创造力推理,特别是类比推理?为了解决这些问题,我们将tDCS与创造力提示相结合。从神经影像学测试区域特定的假设,高清tDCS定位的额叶皮层活动最近可以预测状态创造力的增强。在一项新颖的类比发现任务中,tDCS下的参与者在大型矩阵搜索空间(通过潜在语义分析索引的创造力)中制定了实质上更具创造性的类比联系。至关重要的是,类比创造力的提高并不是由于辨别有效类比的准确性降低,表明“真实”创造力,而不是不适当的分歧。一个更简单的关系创造力范例(修饰的动词生成)显示了tDCS的提示交互作用。 tDCS进一步增强了与创造力提示相关的语义距离。研究结果表明,非侵入性神经调节具有增强创造性的关系认知的潜力,包括增强在遥远的概念之间建立联系的刻苦努力。

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