Meng Lingyue, Wang Yubo, Wang Zilong, Liu Yongan, Tan Yong, Zhang Yue, Wei Xinhui, Mao Xiaokun, Zhang Qiuxia
Physical Education and Sports School, Soochow University, Suzhou, Jiangsu, China.
Rehabilitation Engineering Lab, Department of Kinesiology and Community Health, University of Illinois at Urbana-Champaign, Champaign, IL, United States.
Front Hum Neurosci. 2025 Jul 2;19:1579260. doi: 10.3389/fnhum.2025.1579260. eCollection 2025.
This study investigates the effects of auditory rhythmic adaptation on lower limb joint mechanics in individuals with Functional Ankle Instability (FAI) during drop landings, aiming to explore potential rehabilitation strategies.
Twenty male FAI individuals performed single-leg drop landings under four rhythmic conditions (no rhythm, 60, 120, 180 bpm) after auditory rhythmic adaptation. Joint mechanics data were collected, and analyzed using two-way repeated measures ANOVA to examine the main effects and interaction effects of rhythm and limb condition. Rhythmic adaptation was assessed using time interval reproduction paradigm.
The ground reaction force (GRF), joint torque and joint stiffness were significantly influenced by side (< 0.05). Hip and knee joint range of motion (RoM), lower limb and joint stiffness, joint torque were significantly affected by conditions (< 0.05). Significant interaction effects were observed in joint stiffness and joint torque ( < 0.05).
Rhythmic auditory adaptation modulates motor control strategies in individuals with FAI by influencing joint mechanics during drop landing. In particular, rhythmic adaptation at 120 bpm facilitates a proximal-dominant torque-redistribution strategy, characterized by higher hip and knee extension torques and increased ankle plantarflexion torque on the stable side, and increased hip extension torques on the stable side. These changes suggest the potential of 120 bpm to improve motor control and reduce injury risk.
本研究调查听觉节奏适应对功能性踝关节不稳(FAI)个体单腿落地时下肢关节力学的影响,旨在探索潜在的康复策略。
20名男性FAI个体在听觉节奏适应后,于四种节奏条件下(无节奏、60、120、180次/分钟)进行单腿落地。收集关节力学数据,并使用双向重复测量方差分析来检验节奏和肢体状况的主效应及交互效应。使用时间间隔再现范式评估节奏适应情况。
地面反作用力(GRF)、关节扭矩和关节刚度受侧别显著影响(<0.05)。髋关节和膝关节活动范围(RoM)、下肢和关节刚度、关节扭矩受条件显著影响(<0.05)。在关节刚度和关节扭矩方面观察到显著的交互效应(<0.05)。
节奏性听觉适应通过影响单腿落地时的关节力学来调节FAI个体的运动控制策略。特别是,120次/分钟的节奏适应促进了一种以近端为主的扭矩重新分配策略,其特征为稳定侧髋关节和膝关节伸展扭矩增加、踝关节跖屈扭矩增加,以及稳定侧髋关节伸展扭矩增加。这些变化表明120次/分钟的节奏有改善运动控制和降低受伤风险的潜力。