Serrien Deborah J, Sovijärvi-Spapé Michiel M
School of Psychology, University of Nottingham, University Park, Nottingham, NG7 2RD, UK.
School of Psychology, University of Nottingham, University Park, Nottingham, NG7 2RD, UK.
Behav Brain Res. 2015 Apr 15;283:30-6. doi: 10.1016/j.bbr.2015.01.021. Epub 2015 Jan 21.
Sequencing of finger positions reflects a prototype of skilled behaviour. In order to perform sequencing, cognitive control supports the requirements and postural transitions. In this electroencephalography (EEG) study, we evaluate the effects of hand dominance and assess the neural correlates of unimanual and bimanual sequencing in left- and right-handers. The behavioural measurements provided an index of response planning (response time to first key press) and response execution (time between successive key presses, taps/s and percentage of correct responses), whereas the neural dynamics was determined by means of EEG coherence, expressing the functional connectivity between brain areas. Correlations between brain activity and behaviour were calculated for exploring the neural correlates that are functionally relevant for sequencing. Brain-behavioural correlations during response planning and execution revealed the significance of circuitry in the left hemisphere, underlining its significant role in the organisation of goal-directed behaviour. This lateralisation profile was independent of intrinsic constraints (hand dominance) and extrinsic demands (task requirements), suggesting essential higher-order computations in the left hemisphere. Overall, the observations highlight that the left hemisphere is specialised for sequential motor organisation in left- and right-handers, suggesting an endogenous hemispheric asymmetry for compound actions and the representation of skill; processes that can be separated from those that are involved in hand dominance.
手指位置的排序反映了熟练行为的一个原型。为了进行排序,认知控制支持相关要求和姿势转换。在这项脑电图(EEG)研究中,我们评估了利手的影响,并评估了左利手和右利手单手动和双手动排序的神经关联。行为测量提供了反应计划(首次按键的反应时间)和反应执行(连续按键之间的时间、点击次数/秒以及正确反应的百分比)的指标,而神经动力学则通过EEG相干性来确定,EEG相干性表示脑区之间的功能连接。计算脑活动与行为之间的相关性,以探索与排序功能相关的神经关联。反应计划和执行过程中的脑-行为相关性揭示了左半球神经回路的重要性,突显了其在目标导向行为组织中的重要作用。这种偏侧化模式独立于内在限制(利手)和外在需求(任务要求),表明左半球存在重要的高阶计算。总体而言,这些观察结果突出表明,左半球专门负责左利手和右利手的顺序运动组织,表明复合动作和技能表征存在内源性半球不对称;这些过程可以与那些涉及利手的过程区分开来。