Massachusetts General Hospital and Harvard Medical School.
Brigham and Women's Hospital and Harvard Medical School.
J Cogn Neurosci. 2021 Mar;33(3):499-509. doi: 10.1162/jocn_a_01658. Epub 2020 Dec 7.
Recent studies of creative cognition have revealed interactions between functional brain networks involved in the generation of novel ideas; however, the neural basis of creativity is highly complex and presents a great challenge in the field of cognitive neuroscience, partly because of ambiguity around how to assess creativity. We applied a novel computational method of verbal creativity assessment-semantic distance-and performed weighted degree functional connectivity analyses to explore how individual differences in assembly of resting-state networks are associated with this objective creativity assessment. To measure creative performance, a sample of healthy adults ( = 175) completed a battery of divergent thinking (DT) tasks, in which they were asked to think of unusual uses for everyday objects. Computational semantic models were applied to calculate the semantic distance between objects and responses to obtain an objective measure of DT performance. All participants underwent resting-state imaging, from which we computed voxel-wise connectivity matrices between all gray matter voxels. A linear regression analysis was applied between DT and weighted degree of the connectivity matrices. Our analysis revealed a significant connectivity decrease in the visual-temporal and parietal regions, in relation to increased levels of DT. Link-level analyses showed higher local connectivity within visual regions was associated with lower DT, whereas projections from the precuneus to the right inferior occipital and temporal cortex were positively associated with DT. Our results demonstrate differential patterns of resting-state connectivity associated with individual creative thinking ability, extending past work using a new application to automatically assess creativity via semantic distance.
最近的创造性认知研究揭示了涉及新颖想法生成的功能脑网络之间的相互作用;然而,创造力的神经基础非常复杂,在认知神经科学领域提出了巨大的挑战,部分原因是如何评估创造力存在模糊性。我们应用了一种新颖的言语创造力评估方法——语义距离,并进行了加权度功能连接分析,以探索个体静息态网络集合如何与这种客观创造力评估相关。为了衡量创造性表现,一组健康成年人(n = 175)完成了一系列发散思维(DT)任务,他们被要求思考日常用品的不寻常用途。计算语义模型用于计算对象之间的语义距离和对响应的计算,以获得 DT 表现的客观衡量标准。所有参与者都接受了静息态成像,我们从这些成像中计算了所有灰质体素之间的体素连接矩阵。我们应用线性回归分析将 DT 与连接矩阵的加权度进行关联。我们的分析显示,在视觉-时间和顶叶区域中,与 DT 水平升高相关的连接性显著降低。连接水平分析表明,视觉区域内的局部连接性越高,DT 越低,而从后扣带回到右侧下枕叶和颞叶皮质的投射与 DT 呈正相关。我们的结果证明了与个体创造性思维能力相关的静息态连接的差异模式,这是通过使用新的应用程序通过语义距离自动评估创造力的过去工作的扩展。