Schlerf John E, Galea Joseph M, Spampinato Danny, Celnik Pablo A
Department of Physical Medicine and Rehabilitation.
School of Psychology, University of Birmingham, Birmingham, UK.
Cereb Cortex. 2015 Jul;25(7):1827-34. doi: 10.1093/cercor/bht422. Epub 2014 Jan 15.
Lateralization of function is an important organizational feature of the motor system. Each effector is predominantly controlled by the contralateral cerebral cortex and the ipsilateral cerebellum. Transcranial magnetic stimulation studies have revealed hemispheric differences in the stimulation strength required to evoke a muscle response from the primary motor cortex (M1), with the dominant hemisphere typically requiring less stimulation than the nondominant. The current study assessed whether the strength of the connection between the cerebellum and M1 (CB-M1), known to change in association with motor learning, have hemispheric differences and whether these differences have any behavioral correlate. We observed, in right-handed individuals, that the connection between the right cerebellum and left M1 is typically stronger than the contralateral network. Behaviorally, we detected no lateralized learning processes, though we did find a significant effect on the amplitude of reaching movements across hands. Furthermore, we observed that the strength of the CB-M1 connection is correlated with the amplitude variability of reaching movements, a measure of movement precision, where stronger connectivity was associated with better precision. These findings indicate that lateralization in the motor system is present beyond the primary motor cortex, and points to an association between cerebellar M1 connectivity and movement execution.
功能偏侧化是运动系统的一个重要组织特征。每个效应器主要由对侧大脑皮层和同侧小脑控制。经颅磁刺激研究表明,从初级运动皮层(M1)诱发肌肉反应所需的刺激强度存在半球差异,优势半球通常比非优势半球需要更少的刺激。本研究评估了已知与运动学习相关的小脑与M1之间的连接强度(CB-M1)是否存在半球差异,以及这些差异是否有任何行为相关性。我们观察到,在右利手个体中,右侧小脑与左侧M1之间的连接通常比另一侧网络更强。在行为上,我们没有检测到偏侧化学习过程,尽管我们确实发现对双手伸展运动的幅度有显著影响。此外,我们观察到CB-M1连接的强度与伸展运动的幅度变异性相关,这是一种运动精度的测量指标,更强的连接性与更好的精度相关。这些发现表明,运动系统中的偏侧化存在于初级运动皮层之外,并指出了小脑与M1连接性与运动执行之间的关联。