Research Center for Sectional and Imaging Anatomy, Shandong University Cheeloo College of Medicine, Jinan, Shandong, China.
School of Electronic Information and Communications, Huazhong University of Science and Technology, Wuhan, Hubei, China.
Brain Imaging Behav. 2020 Jun;14(3):797-805. doi: 10.1007/s11682-018-0020-0.
The hubs of the brain network play a key role in integrating and transferring information between different functional modules. However, the effects of long-term practice on functional network hubs in chess experts are largely undefined. Here, we investigated whether alterations of hubs can be detected in chess experts using resting-state functional magnetic resonance imaging (rs-fMRI) and graph theory methods. We first mapped the whole-brain voxel-wise functional connectivity and calculated the functional connectivity strength (FCS) map in each of the 28 chess players and 27 gender- and age-matched healthy novice players. Whole-brain resting-state functional connectivity analyses for the changed hub areas were conducted to further elucidate the corresponding changes of functional connectivity patterns in chess players. The hub analysis revealed increased FCS in the right posterior fusiform gyrus of the chess players, which was supported by analyses of this area's regional homogeneity (ReHo), amplitude of low frequency fluctuations (ALFF), and fractional amplitude of low frequency fluctuations (fALFF). The following functional connectivity analyses revealed increased functional connectivities between the right posterior fusiform gyrus and the visuospatial attention and motor networks in chess players. These findings demonstrate that cognitive expertise has a positive influence on the functions of the brain regions associated with the chess expertise and that increased functional connections might in turn facilitate within and between networks communication for expert behavior to get superior performance.
大脑网络的枢纽在整合和在不同功能模块之间传递信息方面起着关键作用。然而,长期实践对国际象棋专家功能网络枢纽的影响在很大程度上还没有明确。在这里,我们使用静息态功能磁共振成像(rs-fMRI)和图论方法研究了长期实践是否可以改变国际象棋专家的枢纽。我们首先对 28 名国际象棋运动员和 27 名性别和年龄匹配的健康新手运动员的全脑体素进行了功能连接映射,并计算了每个体素的功能连接强度(FCS)图。我们对改变枢纽区域进行了全脑静息态功能连接分析,以进一步阐明国际象棋运动员功能连接模式的相应变化。枢纽分析显示,国际象棋运动员的右侧后梭状回的 FCS 增加,该结果得到了该区域局部一致性(ReHo)、低频波动幅度(ALFF)和低频波动分数幅度(fALFF)分析的支持。随后的功能连接分析显示,国际象棋运动员右侧后梭状回与视觉空间注意力和运动网络之间的功能连接增加。这些发现表明,认知专长对与国际象棋专长相关的大脑区域的功能有积极影响,而增加的功能连接可能反过来促进网络内部和网络之间的通信,从而使专家行为获得更优异的表现。