Sun Felice T, Miller Lee M, Rao Ajay A, D'Esposito Mark
Helen Wills Neuroscience Institute, University of California, Berkeley, CA 94720, USA.
Cereb Cortex. 2007 May;17(5):1227-34. doi: 10.1093/cercor/bhl033. Epub 2006 Jul 19.
Motor skill learning requires the involvement and integration of several cortical and subcortical regions. In this study, we focus on how the functional connectivity of cortical networks changes with the acquisition of a novel motor skill. Using functional magnetic resonance imaging, we measured the localized blood oxygenation level-dependent (BOLD) signal in cortical regions while subjects performed a bimanual serial reaction time task under 2 conditions: 1) explicitly learning a novel sequence (NOVEL) and 2) playing a previously learned sequence (LEARNED). To investigate stages of learning, each condition was further divided into nonoverlapping early and late conditions. Functional connectivity was measured using a task-specific low-frequency coherence analysis of the data. We show that within the cortical motor network, the sensorimotor cortex, premotor cortex, and supplementary motor area have significantly greater inter- and intrahemispheric coupling during the early NOVEL condition compared with the late NOVEL condition. Additionally, we observed greater connectivity between frontal regions and cortical motor regions in the early versus late NOVEL contrast. No changes in functional connectivity were observed in the LEARNED condition. These results demonstrate that the functional connectivity of the cortical motor network is modulated with practice and suggest that early skill learning is mediated by enhanced interregional coupling.
运动技能学习需要多个皮层和皮层下区域的参与和整合。在本研究中,我们关注皮层网络的功能连接如何随着新运动技能的习得而变化。使用功能磁共振成像,我们在受试者执行双手连续反应时任务的两种条件下测量了皮层区域的局部血氧水平依赖(BOLD)信号:1)明确学习新序列(新颖)和2)执行先前学习的序列(已学习)。为了研究学习阶段,每种条件进一步分为不重叠的早期和晚期条件。使用针对任务的低频相干分析来测量功能连接。我们表明,在皮层运动网络中,与新颖条件晚期相比,在新颖条件早期,感觉运动皮层、运动前皮层和辅助运动区在半球间和半球内具有显著更强的耦合。此外,在新颖条件早期与晚期的对比中,我们观察到额叶区域与皮层运动区域之间的连接更强。在已学习条件下未观察到功能连接的变化。这些结果表明,皮层运动网络的功能连接随着练习而受到调节,并表明早期技能学习是由增强的区域间耦合介导的。