Ye Zheng, Zhang Guanyu, Li Shuaiqi, Zhang Yingshuang, Xiao Weizhong, Zhou Xiaolin, Münte Thomas F
Institute of Neuroscience, Key Laboratory of Primate Neurobiology, CAS Center for Excellence in Brain Science and Intelligence Technology, Chinese Academy of Sciences, Shanghai, China.
Institute of Psychology, Chinese Academy of Sciences, Beijing, China; Department of Psychology, University of Chinese Academy of Sciences, Beijing, China.
Neurobiol Aging. 2020 Mar;87:115-124. doi: 10.1016/j.neurobiolaging.2019.12.007. Epub 2019 Dec 13.
Maintaining the ability to arrange thoughts and actions in an appropriate serial order is crucial for complex behavior. We aimed to investigate age differences in the fronto-striato-parietal network underlying serial ordering using functional magnetic resonance imaging. We exposed 25 young and 27 older healthy adults to a digit ordering task, where they had to reorder and recall sequential digits or simply to recall them. We detected a network comprising of the lateral and medial prefrontal, posterior parietal, and striatal regions. In young adults, the prefrontal and parietal regions were more activated and more strongly connected with the supplementary motor area for "reorder & recall" than "pure recall" trials (psychophysiological interaction, PPI). In older adults, the prefrontal and parietal activations were elevated, but the PPI was attenuated. Individual adults who had a stronger PPI performed more accurately in "reorder & recall" trials. The decreased PPI appeared to be compensated by increased physiological correlations between the prefrontal/parietal cortex and the striatum, and by that between the striatum and the supplementary motor area.
保持以适当的顺序安排思维和行动的能力对于复杂行为至关重要。我们旨在使用功能磁共振成像研究序列排序背后的额-纹状体-顶叶网络中的年龄差异。我们让25名年轻健康成年人和27名年长健康成年人进行数字排序任务,他们必须重新排列并回忆连续的数字,或者仅仅是回忆这些数字。我们检测到一个由外侧和内侧前额叶、顶叶后部和纹状体区域组成的网络。在年轻人中,与“单纯回忆”试验相比,前额叶和顶叶区域在“重新排列并回忆”试验中被激活得更多,并且与辅助运动区的连接更强(心理生理交互作用,PPI)。在老年人中,前额叶和顶叶的激活增强,但PPI减弱。在“重新排列并回忆”试验中,PPI较强的个体表现得更准确。PPI的降低似乎通过前额叶/顶叶皮层与纹状体之间以及纹状体与辅助运动区之间生理相关性的增加得到了补偿。