Division of Developmental Cognitive Neuroscience, Institute of Development, Aging and Cancer, Department of Funictional Brain Imaging, Tohoku University 4-1 Seiryo-cho, Aoba-ku, Sendai 980-8575, Japan.
Neuroimage. 2010 May 15;51(1):11-8. doi: 10.1016/j.neuroimage.2010.02.035. Epub 2010 Feb 17.
Creativity has been essential to the development of human civilization and plays a crucial role in cultural life. However, despite literature that has proposed the importance of structural connectivity in the brain for creativity, the relationship between regional white matter integrity and creativity has never been directly investigated. In this study, we used diffusion tensor imaging and a behavioral creativity test of divergent thinking to investigate the relationship between creativity and structural connectivity. We examined associations between creativity and fractional anisotropy across the brain in healthy young adult (mean age, 21.7 years old; [SD]=1.44) men (n=42) and women (n=13). After controlling for age, sex, and score on Raven's advanced progressive matrices, a test for psychometric measures of intelligence, significant positive relationships between fractional anisotropy and individual creativity as measured by the divergent thinking test were observed in the white matter in or adjacent to the bilateral prefrontal cortices, the body of the corpus callosum, the bilateral basal ganglia, the bilateral temporo-parietal junction and the right inferior parietal lobule. As a whole, these findings indicate that integrated white matter tracts underlie creativity. These pathways involve the association cortices and the corpus callosum, which connect information in distant brain regions and underlie diverse cognitive functions that support creativity. Thus, our results are congruent with the ideas that creativity is associated with the integration of conceptually distant ideas held in different brain domains and architectures and that creativity is supported by diverse high-level cognitive functions, particularly those of the frontal lobe.
创造力对于人类文明的发展至关重要,在文化生活中也起着关键作用。然而,尽管有文献提出大脑结构连接对创造力的重要性,但区域白质完整性与创造力之间的关系从未被直接研究过。在这项研究中,我们使用弥散张量成像和发散思维行为创造力测试来研究创造力与结构连接之间的关系。我们检查了创造力与大脑中各向异性分数之间的关联,参与者为健康的年轻成年人(平均年龄 21.7 岁,标准差=1.44),包括 42 名男性和 13 名女性。在控制年龄、性别和瑞文高级渐进矩阵测试(智力的心理测量学指标)分数后,在大脑中或邻近大脑双侧前额叶皮质、胼胝体体部、双侧基底节、双侧颞顶联合区和右侧顶下小叶的白质中,观察到各向异性分数与发散思维测试测量的个体创造力之间存在显著正相关。总的来说,这些发现表明创造力与白质的整合有关。这些途径涉及联合皮质和胼胝体,它们连接了不同脑区和不同认知功能的信息,这些认知功能支持创造力。因此,我们的结果与创造力与不同脑区和架构中概念上遥远的想法的整合有关的观点以及创造力得到多样化的高级认知功能支持的观点是一致的,尤其是额叶的认知功能。