Zhang Longbin, Sidarta Ananda, Lim Yu Chin, Er Carol, Yan Xiaoyue, Wu Tsung-Lin, Ang Wei Tech
IEEE Int Conf Rehabil Robot. 2025 May;2025:82-87. doi: 10.1109/ICORR66766.2025.11063123.
In this study, we investigate muscle activation patterns and postural sway in older adults across different stance conditions with varying challenges. Muscle activity from lower limb and trunk muscles was recorded in seven older adults during four stance tasks: double stance, tandem stance, tandem stance with a cognitive task, and tandem stance with combined cognitive and motor tasks (TSCM). We analyzed CoP (centre of pressure) features, EMG (electromyography) patterns, and the coherence between EMG-CoP, to gain insights into neuromuscular coordination and balance control. Our findings indicate that task complexity significantly impacts postural stability, with tandem stances-particularly TSCM-leading to increased instability along the anterior-posterior axis. Key stabilizing muscles, such as the gastrocnemius medialis and tibialis anterior, showed heightened activation and strong EMGCoP coherence under complex tasks, highlighting their essential role in counteracting gravitational forces to maintain balance. A lateral asymmetry in muscle activation was also observed, with left-side muscles consistently showing greater activity than right-side counterparts, suggesting lateralized contributions to postural control. These results emphasize the importance of specific muscles for stability in challenging postural tasks and may offer valuable insights for designing targeted interventions, including robotic rehabilitation systems and assistive technologies, to enhance balance and reduce fall risk in older adults.
在本研究中,我们调查了不同站立条件下,面临不同挑战的老年人的肌肉激活模式和姿势摆动情况。在四项站立任务中,记录了七名老年人下肢和躯干肌肉的活动情况:双脚站立、单脚站立、单脚站立同时进行认知任务,以及单脚站立同时进行认知和运动任务(TSCM)。我们分析了压力中心(CoP)特征、肌电图(EMG)模式以及EMG-CoP之间的相关性,以深入了解神经肌肉协调和平衡控制。我们的研究结果表明,任务复杂性会显著影响姿势稳定性,单脚站立姿势,尤其是TSCM,会导致前后轴方向的不稳定性增加。关键的稳定肌肉,如腓肠肌内侧头和胫骨前肌,在复杂任务下表现出更高的激活程度和更强的EMG-CoP相关性,突出了它们在抵消重力以维持平衡方面的重要作用。还观察到肌肉激活存在侧向不对称性,左侧肌肉的活动始终比右侧肌肉更强烈,这表明对姿势控制存在侧向贡献。这些结果强调了特定肌肉在具有挑战性的姿势任务中对稳定性的重要性,并可能为设计针对性干预措施提供有价值的见解,包括机器人康复系统和辅助技术,以增强老年人的平衡能力并降低跌倒风险。