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Ultra‐high‐field fMRI insights on insight: Neural correlates of the Aha!‐moment

机译:超高视场fMRI对洞察力的洞察力:Aha!时刻的神经相关性

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摘要

Finding creative solutions to difficult problems is a fundamental aspect of human culture and a skill highly needed. However, the exact neural processes underlying creative problem solving remain unclear. Insightful problem solving tasks were shown to be a valid method for investigating one subcomponent of creativity: the Aha!‐moment. Finding insightful solutions during a remote associates task (RAT) was found to elicit specific cortical activity changes. Considering the strong affective components of Aha!‐moments, as manifested in the subjectively experienced feeling of relief following the sudden emergence of the solution of the problem without any conscious forewarning, we hypothesized the subcortical dopaminergic reward network to be critically engaged during Aha. To investigate those subcortical contributions to insight, we employed ultra‐high‐field 7 T fMRI during a German Version of the RAT. During this task, subjects were exposed to word triplets and instructed to find a solution word being associated with all the three given words. They were supposed to press a button as soon as they felt confident about their solution without further revision, allowing us to capture the exact event of Aha!‐moment. Besides the finding on cortical involvement of the left anterior middle temporal gyrus (aMTG), here we showed for the first time robust subcortical activity changes related to insightful problem solving in the bilateral thalamus, hippocampus, and the dopaminergic midbrain comprising ventral tegmental area (VTA), nucleus accumbens (NAcc), and caudate nucleus. These results shed new light on the affective neural mechanisms underlying insightful problem solving.
机译:寻找解决难题的创造性方法是人类文化的基本方面,也是一项迫切需要的技能。但是,尚不清楚解决创造性问题的确切神经过程。有洞察力的问题解决任务被证明是研究创造力的一个子组成部分的有效方法:Aha!-moment。发现在远程同伴任务(RAT)期间找到有见地的解决方案可引起特定的皮层活动变化。考虑到Aha!时刻的强烈情感成分,如在突然解决问题而没有任何有意识的预警的情况下,主观上经历的缓解感所证明的那样,我们假设皮层下的多巴胺能奖赏网络在Aha期间至关重要。为了研究皮层下对洞察力的贡献,我们在德国版RAT中采用了超高磁场7 T fMRI。在此任务中,受试者被暴露于单词三联体,并被指示找到与所有三个给定单词相关联的解决方案单词。他们应该对解决方案充满信心而无需进一步修订就立即按下按钮,从而使我们能够准确地了解Aha!-moment事件。除了发现左前颞中回(aMTG)皮质受累的发现外,我们还首次显示了与解决双侧丘脑,海马和多巴胺能中脑(包括腹侧被盖区)有关的有见地的问题相关的强大的皮层下活动变化),伏隔核(NAcc)和尾状核。这些结果为有洞察力的问题解决基础的情感神经机制提供了新的启示。

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