Catherine McAuley School of Nursing and Midwifery, University College Cork, Co. Cork, Ireland; Faculty of Biological Sciences, School of Biomedical Sciences, University of Leeds, Leeds, United Kingdom.
Gait Posture. 2021 Mar;85:126-130. doi: 10.1016/j.gaitpost.2021.01.023. Epub 2021 Jan 27.
The purpose of this study was to reveal a functional role for arm-swing asymmetry during gait in healthy adults. To this end, the primary aim was to investigate the role of neuromuscular control on the asymmetry of propulsive and collision joint work at either end of the double-support phase (W) in the context of sidedness. The secondary aim was to investigate the effect of neuromuscular control on propulsive and collision joint work at either end of the single-support phase (W) in the context of arm-swing asymmetry.
Slow -walking trials of 25 participants were analysed using principal component analysis to generate movement synergies (PM). Independent variables included the tightness of neuromuscular control (N) formulated from the first PM and the directional Arm-swing asymmetry index (dASI). Dependent variables included the difference between double-support collision and propulsive joint work (W) and a ratio consisting of the difference between single-support collision and propulsive work of both sides (W). A linear mixed-effects model was utilized for aim 1 while a multiple linear regression analysis was undertaken for aim 2.
Healthy adult gait was accompanied by a left-side dominant arm-swing on average. For aim 1, N demonstrated a significant negative effect on W while sidedness had a negative direct effect and positive indirect effect through N on W. The most notable finding was the interaction between dASI and N which demonstrated a highly significant positive effect on W.
Evidence was put forward that arm-swing asymmetry during gait is related to footedness among healthy adults. Future studies should look to formally confirm this finding.
本研究旨在揭示健康成年人步态中手臂摆动不对称性的功能作用。为此,主要目的是研究在偏向性的背景下,神经肌肉控制对双支撑相(W)两端的推进和碰撞关节功不对称性的影响。次要目的是研究在手臂摆动不对称性的背景下,神经肌肉控制对单支撑相(W)两端的推进和碰撞关节功的影响。
对 25 名参与者的慢走试验进行主成分分析,以生成运动协同作用(PM)。自变量包括从第一主成分中得出的神经肌肉控制的紧密度(N)和手臂摆动不对称指数(dASI)。因变量包括双支撑碰撞和推进关节功之间的差异(W)以及由两侧单支撑碰撞和推进功之间的差异组成的比值(W)。目标 1 采用线性混合效应模型,目标 2 采用多元线性回归分析。
健康成年人的步态平均伴有左侧主导的手臂摆动。对于目标 1,N 对 W 有显著的负效应,而偏向性通过 N 对 W 有负直接效应和正间接效应。最显著的发现是 dASI 和 N 之间的相互作用,它对 W 有非常显著的正效应。
有证据表明,步态中的手臂摆动不对称性与健康成年人的脚位有关。未来的研究应该正式证实这一发现。