School of Life Sciences and Technology, University of Electronic Science and Technology of China, Chengdu, China.
Department of Biomedical Engineering, New Jersey Institute of Technology, Newark, New Jersey.
Hum Brain Mapp. 2020 May;41(7):1797-1805. doi: 10.1002/hbm.24912. Epub 2020 Jan 6.
The brain frontoparietal regions and the functional communications between them are critical in supporting working memory and other executive functions. The functional connectivity between frontoparietal regions are modulated by working memory loads, and are shown to be modulated by a third brain region in resting-state. However, it is largely unknown whether the third-region modulations remain the same during working memory tasks or were largely modulated by task demands. In the current study, we collected functional MRI (fMRI) data when the subjects were performing n-back tasks and in resting-state. We first used a block-designed localizer to define the frontoparietal regions that showed higher activations in the 2-back than the 1-back condition. Next, we performed physiophysiological interaction (PPI) analysis using left and right middle frontal gyrus (MFG) and superior parietal lobule (SPL) regions, respectively, in three continuous-designed runs of resting-state, 1-back, and 2-back conditions. No regions showed consistent modulatory interactions with the seed pairs in the three conditions. Instead, the anterior cingulate cortex (ACC) showed different modulatory interactions with the right MFG and SPL among the three conditions. While the increased activity of the ACC was associated with decreased functional coupling between the right MFG and SPL in resting-state, it was associated with increased functional coupling in the 2-back condition. The observed task modulations support the functional significance of the modulations of the ACC on frontoparietal connectivity.
大脑额顶区域及其功能连接在支持工作记忆和其他执行功能方面至关重要。额顶区域之间的功能连接受到工作记忆负荷的调节,并且在静息状态下也受到第三脑区的调节。然而,在工作记忆任务期间,第三脑区的调节是否保持不变,或者在很大程度上受到任务需求的调节,在很大程度上仍然未知。在当前的研究中,我们在进行 n-back 任务和静息状态时收集了功能磁共振成像(fMRI)数据。我们首先使用块设计定位器来定义在 2-back 条件下比 1-back 条件下激活更高的额顶区域。接下来,我们分别使用左、右额中回(MFG)和顶上回(SPL)区域进行生理物理相互作用(PPI)分析,在三个连续的静息态、1-back 和 2-back 条件的运行中进行。没有区域在三种条件下均显示出与种子对一致的调节相互作用。相反,在三种条件下,前扣带皮层(ACC)与右 MFG 和 SPL 之间的种子对表现出不同的调节相互作用。当 ACC 的活动增加时,在静息状态下,右 MFG 和 SPL 之间的功能连接减少,而在 2-back 条件下,功能连接增加。观察到的任务调节支持 ACC 对额顶连接的调节的功能意义。