Zeng Lingwei, Wang Chunchen, Sun Kewei, Pu Yue, Gao Yuntao, Wang Hui, Liu Xufeng, Wen Zhihong
Department of Medical Psychology, Fourth Military Medical University, Xi'an 710032, China.
Department of Aerospace Medicine, Fourth Military Medical University, Xi'an 710032, China.
Brain Sci. 2023 Oct 26;13(11):1516. doi: 10.3390/brainsci13111516.
The aim of this study was to investigate the inner link between the small-world brain network and inhibitory control. Functional near-infrared spectroscopy (fNIRS) was used to construct a neurofeedback (NF) training system and regulate the frontal small-world brain network. The small-world network downregulation group (DOWN, = 17) and the small-world network upregulation group (UP, = 17) received five days of fNIRS-NF training and performed the color-word Stroop task before and after training. The behavioral and functional brain network topology results of both groups were analyzed by a repeated-measures analysis of variance (ANOVA), which showed that the upregulation training helped to improve inhibitory control. The upregulated small-world brain network exhibits an increase in the brain network regularization, links widely dispersed brain resources, and reduces the lateralization of brain functional networks between hemispheres. This suggests an inherent correlation between small-world functional brain networks and inhibitory control; moreover, dynamic optimization under cost efficiency trade-offs provides a neural basis for inhibitory control. Inhibitory control is not a simple function of a single brain region or connectivity but rather an emergent property of a broader network.
本研究旨在探讨小世界脑网络与抑制控制之间的内在联系。采用功能近红外光谱技术(fNIRS)构建神经反馈(NF)训练系统,调节额叶小世界脑网络。小世界网络下调组(DOWN,n = 17)和小世界网络上调组(UP,n = 17)接受为期五天的fNIRS-NF训练,并在训练前后进行颜色-文字Stroop任务。两组的行为和功能性脑网络拓扑结果通过重复测量方差分析(ANOVA)进行分析,结果表明上调训练有助于改善抑制控制。上调后的小世界脑网络表现为脑网络规则性增加,连接广泛分散的脑资源,并减少半球间脑功能网络的偏侧化。这表明小世界功能性脑网络与抑制控制之间存在内在相关性;此外,成本效率权衡下的动态优化为抑制控制提供了神经基础。抑制控制不是单个脑区或连接性的简单功能,而是更广泛网络的一种涌现特性。