Noé Frédéric, García-Massó Xavier, Paillard Thierry
Laboratoire Mouvement, Equilibre, Performance, Santé (EA 4445), Département STAPS, Université de Pau & Pays de I'Adour, Tarbes, France.
Department of Teaching of Musical, Visual and Corporal Expression, University of Valencia, Valencia, Spain.
J Electromyogr Kinesiol. 2017 Jun;34:72-79. doi: 10.1016/j.jelekin.2017.04.003. Epub 2017 Apr 8.
Even though specific adjustments of the multi-joint control of posture have been observed when posture is challenged, multi-joint coordination on a seesaw device has never been accurately assessed. The current study was conducted in order to investigate the multi-joint coordination when subjects were standing on either a seesaw device or on a stable surface, with the eyes open or closed. Eighteen healthy active subjects were recruited. A principal component analysis and a Self-Organizing Maps analysis were performed on the joint angles in order to detect and characterize dominant coordination patterns. Intermuscular EMG coherence was analysed in order to assess the neurophysiological mechanisms associated with these coordination patterns. The results illustrated a multi-joint organization of posture on both stable ground and on the seesaw, with a higher variability among the individual postural responses observed when standing on the seesaw. These findings challenge the classical assumption of ankle mechanisms as dominating control on seesaw devices and confirm that inter-joint coordination in postural control is strongly modulated by stance conditions. When standing on the seesaw without vision, a decrease in intermuscular coherence was observed without any impact on the joint coordination patterns, likely due to an increase dependence on proprioceptive information.
尽管在姿势受到挑战时已观察到姿势多关节控制的特定调整,但从未对跷跷板装置上的多关节协调进行过准确评估。本研究旨在调查受试者在睁眼或闭眼状态下站在跷跷板装置或稳定表面上时的多关节协调情况。招募了18名健康活跃的受试者。对关节角度进行主成分分析和自组织映射分析,以检测和表征主要的协调模式。分析肌肉间肌电图相干性,以评估与这些协调模式相关的神经生理机制。结果表明,在稳定地面和跷跷板上姿势均存在多关节组织,站在跷跷板上时观察到的个体姿势反应变异性更高。这些发现挑战了脚踝机制在跷跷板装置上起主导控制作用的经典假设,并证实姿势控制中的关节间协调受到站立条件的强烈调节。当在没有视觉的情况下站在跷跷板上时,观察到肌肉间相干性降低,但对关节协调模式没有任何影响,这可能是由于对本体感觉信息的依赖性增加所致。