Neural dynamics of constraint relaxation and problem representation changes in single-trial insight problem solving: An fNIRS study

IF 2.3 3区 心理学 Q2 BEHAVIORAL SCIENCES
Reiji Ohkuma , Yuto Kurihara , Toru Takahashi , Rieko Osu
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引用次数: 0

Abstract

Insight problem solving involves overcoming an impasse when a solution seems unreachable, often experienced as an ‘Aha!’ moment. In such solving, shifting from an incorrect representation imposed by constraints to a correct representation through constraint relaxation is critical. Prior research compared brain activity when constraint relaxation and representation change occurred versus when they did not occur, but neural activity before and after such changes within trials has remained underexplored. This study examines neural correlates of problem solving progress, focusing on transitions from impasse—defined by an incorrect, constrained representation—to the state immediately preceding the ‘Aha!’ moment when constraints relax and correct representation emerges. Functional near-infrared spectroscopy (fNIRS) monitored brain activity during a slot machine task. Task performance and eye movement data identified the representations adopted by participants and whether constraint relaxation occurred. Participants were categorized into a success group, which reached the solution, and a failure group, which did not. In the success group, the state just before ‘Aha!’ showed increased oxygenated hemoglobin in the right dorsolateral prefrontal cortex (DLPFC) and superior temporal gyrus (STG) compared with the impasse state. In contrast, the failure group showed increased activity in the right angular gyrus. These results suggest that right DLPFC activation supports constraint relaxation via executive function and working memory, and right STG activation facilitates the transition to a new representation. Integrating fNIRS measures of right DLPFC/STG activation with eye tracking indices of saccade direction shifts enables detection of constraint relaxation preceding the ‘Aha!’ moment.
单次顿悟问题解决中约束放松和问题表征变化的神经动力学:fNIRS研究。
顿悟式解决问题包括在解决方案似乎遥不可及时克服僵局,通常是“啊哈!”的时刻。在这种解决中,从约束施加的不正确表示转换为通过约束放松的正确表示是至关重要的。先前的研究比较了约束放松和表征变化发生时和没有发生时的大脑活动,但在这些变化之前和之后的神经活动在试验中仍然没有得到充分的探索。这项研究考察了解决问题过程中的神经关联,重点关注从僵局(由不正确的、受限的表征所定义)到“啊哈!”的时刻,约束放松,正确的表达出现。功能近红外光谱(fNIRS)监测老虎机任务期间的大脑活动。任务表现和眼动数据确定了参与者所采用的表征以及约束是否放松。参与者被分为成功组和失败组,前者找到了解决方案,后者没有。在成功组中,在“啊哈!”与僵局状态相比,右背外侧前额叶皮层(DLPFC)和颞上回(STG)的含氧血红蛋白增加。相反,失败组右脑角回的活动增加。这些结果表明,右侧DLPFC激活通过执行功能和工作记忆支持约束放松,右侧STG激活促进向新表征的过渡。将fNIRS对右侧DLPFC/STG激活的测量与扫视方向变化的眼动追踪指数相结合,可以检测到“啊哈!”的时刻。
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来源期刊
Behavioural Brain Research
Behavioural Brain Research 医学-行为科学
CiteScore
5.60
自引率
0.00%
发文量
383
审稿时长
61 days
期刊介绍: Behavioural Brain Research is an international, interdisciplinary journal dedicated to the publication of articles in the field of behavioural neuroscience, broadly defined. Contributions from the entire range of disciplines that comprise the neurosciences, behavioural sciences or cognitive sciences are appropriate, as long as the goal is to delineate the neural mechanisms underlying behaviour. Thus, studies may range from neurophysiological, neuroanatomical, neurochemical or neuropharmacological analysis of brain-behaviour relations, including the use of molecular genetic or behavioural genetic approaches, to studies that involve the use of brain imaging techniques, to neuroethological studies. Reports of original research, of major methodological advances, or of novel conceptual approaches are all encouraged. The journal will also consider critical reviews on selected topics.
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