默认和额顶叶网络的动态重构支持创意孵化。

IF 4.7 2区 医学 Q1 NEUROIMAGING
Ziyi Li, Ze Zhang, Tengteng Tan, Jing Luo
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引用次数: 0

摘要

虽然创造性的想法经常出现在与创造性任务无关的分心活动中,但实证研究尚未揭示其潜在的神经认知机制。利用孵化模式,我们暂时将参与者从最初的创造性思维任务中解脱出来,并要求他们进行两种不同的分心活动(中等要求:1-back工作记忆任务,非要求:0-back选择反应时间任务),然后让他们回到之前的创造性任务中。在创造性思维过程中,我们计算了潜伏期前后两个创造性思维阶段的表征差异,以估计成功孵化背后的神经表征变化。结果发现,在0-back条件下,成功孵育与楔前叶(PCU)的代表性变化相关,而在1-back条件下,成功孵育与左外侧PFC (rlPFC)的变化相关,表明0-或1-back孵育条件下,dmn介导的联想思维和PFC介导的控制思维的双重过程促进了创造。在孵育延迟方面,我们发现两种条件下的成功孵育都伴随着额顶叶(FP)和默认模式(DM)网络之间的网络整合,进一步表明控制思维和联想思维的耦合使孵育有效。此外,我们发现潜伏期FP-DM整合可以分别预测0- back和1-back条件下创造性思维阶段PCU和rlPFC的表征变化。这意味着两种条件都受益于孵化期控制思维和联想思维的协调,但对于创造性思维阶段的表征变化,1回条件更多地依赖于控制思维,而0回条件更多地依赖于联想思维。此外,我们创建了一个神经编码指标来评估rlPFC或PCU在孵育延迟期间的时间活动与孵育后成功解决问题的关系程度,我们发现该指标与大脑网络的动态重构之间存在正相关关系。这进一步表明,FP-DM集成支持通过离线处理进行创意孵化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic reconfiguration of default and frontoparietal network supports creative incubation
Although creative ideas often emerge during distraction activities unrelated to the creative task, empirical research has yet to reveal the underlying neurocognitive mechanism. Using an incubation paradigm, we temporarily disengaged participants from the initial creative ideation task and required them to conduct two different distraction activities (moderately-demanding: 1-back working memory task, non-demanding: 0-back choice reaction time task), then returned them to the previous creative task. On the process of creative ideation, we calculated the representational dissimilarities between the two creative ideation phases before and after incubation period to estimate the neural representational change underlying successful incubation. The results found that, for the 0-back condition, successful incubation was associated with the representational change in precuneus (PCU), whereas for the 1-back condition, it was associated with change in rostrolateral PFC (rlPFC), suggesting the dual processes of the DMN-mediated associative thinking and PFC-mediated controlled thinking for the 0- or the 1-back incubation conditions to prompt creation. On the incubation delay, we found the successful incubation in both conditions was accompanied with network integration between frontoparietal (FP) and default mode (DM) network, further suggesting the coupling of the controlled- and associative-thinking for the incubation to work. Moreover, we found the FP-DM integration during incubation period could respectively predict the representational change in PCU or rlPFC in the creative ideation phase of 0- or 1-back condition. This means both conditions benefits from the coordination of the controlled and of the associative thinking in incubation period, but for the representational change in creative ideation phase, 1-back condition relies more on the controlled thinking, whereas the 0-back on the associative ones. Additionally, we created a neural encoding indicator to assess the degree to which temporal activities in the rlPFC or PCU during incubation delay is related to the after-incubation successful problem-solving, and we found a positive relation between this indicator and dynamic reconfiguration of brain networks. This further indicates that FP-DM integration supports creative incubation through offline processing.
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来源期刊
NeuroImage
NeuroImage 医学-核医学
CiteScore
11.30
自引率
10.50%
发文量
809
审稿时长
63 days
期刊介绍: NeuroImage, a Journal of Brain Function provides a vehicle for communicating important advances in acquiring, analyzing, and modelling neuroimaging data and in applying these techniques to the study of structure-function and brain-behavior relationships. Though the emphasis is on the macroscopic level of human brain organization, meso-and microscopic neuroimaging across all species will be considered if informative for understanding the aforementioned relationships.
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