静息状态功能磁共振成像
楔前
心理学
额中回
脑回
功能磁共振成像
功能连接
认知
默认模式网络
颞上回
大脑活动与冥想
颞中回
额叶
神经科学
额上回
额内侧回
颞叶
大脑定位
额下回
认知心理学
脑电图
癫痫
作者
Hikaru Takeuchi,Yasuyuki Taki,Rui Nouchi,Ryoichi Yokoyama,Yuka Kotozaki,Seishu Nakagawa,Atsushi Sekiguchi,Kunio Iizuka,Yuki Yamamoto,Sugiko Hanawa,Tsuyoshi Araki,Carlos Makoto Miyauchi,Takamitsu Shinada,Kohei Sakaki,Takayuki Nozawa,Shigeyuki Ikeda,Susumu Yokota,Daniele Magistro,Yuko Sassa,Ryuta Kawashima
出处
期刊:NeuroImage
[Elsevier]
日期:2017-05-01
卷期号:152: 258-269
被引量:41
标识
DOI:10.1016/j.neuroimage.2017.02.079
摘要
Brain connectivity is traditionally thought to be important for creativity. Here we investigated the associations of creativity measured by divergent thinking (CMDT) with resting-state functional magnetic imaging (fMRI) measures and their sex differences. We examined these relationships in the brains of 1277 healthy young adults. Whole-brain analyses revealed a significant interaction between verbal CMDT and sex on (a) regional homogeneity within an area from the left anterior temporal lobe (b) on the resting state functional connectivity (RSFC) between the mPFC and the left inferior frontal gyrus and (c) on fractional amplitude of low frequency fluctuations (fALFF) in several distinct areas, including the precuneus and middle cingulate gyrus, left middle temporal gyrus, right middle frontal gyrus, and cerebellum. These interactions were mediated by positive correlations in females and negative correlations in males. These findings suggest that greater CMDT in females is reflected by (a) regional coherence (regional homogeneity) of brain areas responsible for representing and combining concepts as well as (b) the efficient functional connection (RSFC) between the key areas for the default state of cognitive activity and speech production, and (c) greater spontaneous neural activity (fALFF) during the resting of brain areas involved in frontal lobe functions, default cognitive activities, and language functions. Furthermore, these findings suggest that the associations between creativity and resting state brain connectivity patterns are different between males and females.
科研通智能强力驱动
Strongly Powered by AbleSci AI