非周期图
心理学
发散思维
创造力
认知心理学
认知科学
收敛性思维
神经活动
机制(生物学)
脑电图
大脑活动与冥想
沟通
发展心理学
发散合成
神经科学
功率(物理)
意识的神经相关物
透视图(图形)
作者
Chenyan Zhang,Weitao Zhang,Christian Beste,Bernhard Hommel
摘要
Creativity, the ability to produce novel and useful ideas, is a fascinating ability about which we know surprisingly little. Here, we asked how people manage to think "out-of-the-box"-how they generate truly novel ideas. We hypothesized that higher levels of aperiodic neural activity (often termed "neural noise") may facilitate overcoming the constraints of prior knowledge, thus supporting novel idea generation. Participants (n = 51) performed two classical creativity tasks tapping divergent (alternative uses task) and convergent thinking (remote associates task), respectively, while EEG was recorded. Aperiodic activity was estimated from the EEG power spectrum using the FOOOF (fitting oscillations and one-over-f) toolbox. We found that engaging in divergent, out-of-the-box thinking (but not convergent thinking) was associated with a significant increase of aperiodic activity, reflected in a decreased aperiodic exponent. Moreover, individuals with more increased aperiodic activity during divergent thinking generated more novel ideas. Our findings suggest that aperiodic, "noisy" brain dynamics play a functional role in supporting divergent thinking. Aperiodic activity, which is often neglected in neuroscientific research, may be an important mechanism of human cognition.
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