Zhang Gaoyan, Yao Li, Shen Jiahui, Yang Yihong, Zhao Xiaojie
State Key Laboratory of Cognitive Neuroscience and Learning, Beijing Normal University, Beijing, 100875, China; School of Computer Science and Technology, Tianjin key Laboratory of Cognitive Computing and Application, Tianjin University, Tianjin, 300072, China.
Hum Brain Mapp. 2015 May;36(5):1705-15. doi: 10.1002/hbm.22731. Epub 2014 Dec 26.
Working memory (WM) is essential for individuals' cognitive functions. Neuroimaging studies indicated that WM fundamentally relied on a frontoparietal working memory network (WMN) and a cinguloparietal default mode network (DMN). Behavioral training studies demonstrated that the two networks can be modulated by WM training. Different from the behavioral training, our recent study used a real-time functional MRI (rtfMRI)-based neurofeedback method to conduct WM training, demonstrating that WM performance can be significantly improved after successfully upregulating the activity of the target region of interest (ROI) in the left dorsolateral prefrontal cortex (Zhang et al., [2013]: PloS One 8:e73735); however, the neural substrate of rtfMRI-based WM training remains unclear. In this work, we assessed the intranetwork and internetwork connectivity changes of WMN and DMN during the training, and their correlations with the change of brain activity in the target ROI as well as with the improvement of post-training behavior. Our analysis revealed an "ROI-network-behavior" correlation relationship underlying the rtfMRI training. Further mediation analysis indicated that the reorganization of functional brain networks mediated the effect of self-regulation of the target brain activity on the improvement of cognitive performance following the neurofeedback training. The results of this study enhance our understanding of the neural basis of real-time neurofeedback and suggest a new direction to improve WM performance by regulating the functional connectivity in the WM related networks.
工作记忆(WM)对个体的认知功能至关重要。神经影像学研究表明,工作记忆从根本上依赖于额顶叶工作记忆网络(WMN)和扣带回顶叶默认模式网络(DMN)。行为训练研究表明,这两个网络可通过工作记忆训练进行调节。与行为训练不同,我们最近的研究使用基于实时功能磁共振成像(rtfMRI)的神经反馈方法进行工作记忆训练,结果表明,在成功上调左侧背外侧前额叶皮层目标感兴趣区域(ROI)的活动后,工作记忆表现可得到显著改善(Zhang等人,[2013]:《公共科学图书馆·综合》8:e73735);然而,基于rtfMRI的工作记忆训练的神经基础仍不清楚。在这项研究中,我们评估了训练期间WMN和DMN的网络内和网络间连接变化,以及它们与目标ROI脑活动变化以及训练后行为改善的相关性。我们的分析揭示了rtfMRI训练背后的“ROI-网络-行为”相关关系。进一步的中介分析表明,功能性脑网络的重组介导了神经反馈训练后目标脑活动的自我调节对认知表现改善的影响。本研究结果增进了我们对实时神经反馈神经基础的理解,并为通过调节工作记忆相关网络中的功能连接来改善工作记忆表现提出了一个新方向。