Roh Jinsook, Lee Sang Wook, Wilger Kevin D
a Department of Kinesiology , Temple University , Philadelphia , PA , USA.
b Neuromotor Science Program, Temple University , Philadelphia , PA , USA.
J Mot Behav. 2019;51(1):83-99. doi: 10.1080/00222895.2017.1423020. Epub 2018 Jan 31.
Muscle coordination of isometric force production can be explained by a smaller number of modules. Variability in force output, however, is higher during exploratory/transient force development phases than force maintenance phase, and it is not clear whether the same modular structure underlies both phases. In this study, eight neurologically-intact adults isometrically performed target force matches in 54 directions at hands, and electromyographic (EMG) data from eight muscles were parsed into four sequential phases. Despite the varying degree of motor complexity across phases (significant between-phase differences in EMG-force correlation, angular errors, and between-force correlations), the number/composition of motor modules were found equivalent across phases, suggesting that the CNS systematically modulated activation of the same set of motor modules throughout sequential force development.
等长力产生的肌肉协调可以用较少数量的模块来解释。然而,在探索性/瞬态力发展阶段,力输出的变异性高于力维持阶段,目前尚不清楚这两个阶段是否具有相同的模块化结构。在本研究中,八名神经功能正常的成年人在手部进行了54个方向的等长目标力匹配,并将来自八块肌肉的肌电图(EMG)数据解析为四个连续阶段。尽管各阶段的运动复杂性程度不同(EMG与力的相关性、角度误差和力之间的相关性在各阶段之间存在显著差异),但发现各阶段运动模块的数量/组成是相同的,这表明中枢神经系统在连续的力发展过程中系统地调节了同一组运动模块的激活。