Enhanced joint energy transfer potential by the biarticular gastrocnemii muscles during perturbed walking.

IF 2.7 3区 医学 Q2 PHYSIOLOGY European Journal of Applied Physiology Pub Date : 2025-08-01 Epub Date: 2025-03-05 DOI:10.1007/s00421-025-05727-z
Christos Theodorakis, Sebastian Bohm, Gaspar Epro, Falk Mersmann, Julian Werth, Kiros Karamanidis, Adamantios Arampatzis
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Abstract

Our objective was to explore how the potential for energy transfer between the ankle and knee joint via the biarticular gastrocnemii muscles is modulated during unpredictable and adapted trip-like and drop-like gait perturbations. Using kinematic parameters of the ankle and knee joints, the energy transfer potential between the two joints was determined as the fraction of contact time when the ankle and knee joint angles are in-phase. Additionally, the electromyographic activity of the gastrocnemius medialis and lateralis were captured during the drop-like perturbations. The energy transfer potential increased 1.6-fold in the trip-like and 2.5-fold in the drop-like perturbations compared to unperturbed walking, indicating a relevant involvement of biarticular mechanisms in maintaining body stability. The activation of the gastrocnemii was high (50-60% of a maximum voluntary contraction) in the phases of ankle-to-knee and knee-to-ankle joint energy transfer, which suggests a relevant contribution of biarticular mechanisms to the management of the body's energy during the drop-like perturbations. Considering the similar ankle-to-knee joint energy transfer potential compared to unperturbed walking, the higher activation of the gastrocnemii muscles in the first 20% of the stance indicates a greater contribution of biarticular mechanisms to the absorption of body energy in the unpredictable perturbations.

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行走紊乱时双关节腓肠肌增强的关节能量传递潜能。
我们的目的是探讨在不可预测的和适应性的行走和跌落步态扰动下,通过双关节腓肠肌在踝关节和膝关节之间传递能量的潜力是如何被调节的。利用踝关节和膝关节的运动学参数,确定了踝关节和膝关节角度一致时,两个关节之间的能量传递势为接触时间的分数。此外,在滴状扰动过程中,记录了腓肠肌内侧肌和外侧肌的肌电图活动。与不受干扰的行走相比,行走时的能量传递电位增加了1.6倍,而行走时的能量传递电位增加了2.5倍,这表明双关节机制参与了维持身体稳定性的相关工作。在踝关节到膝关节和膝关节到踝关节的能量传递阶段,腓肠肌的激活是高的(最大自主收缩的50-60%),这表明在水滴状扰动期间,双关节机制对身体能量管理的相关贡献。考虑到与未受干扰的行走相比,踝关节到膝关节的能量传递电位相似,在站立的前20%,腓肠肌的高激活表明,在不可预测的扰动中,双关节机制对吸收身体能量的贡献更大。
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来源期刊
CiteScore
6.00
自引率
6.70%
发文量
227
审稿时长
3 months
期刊介绍: The European Journal of Applied Physiology (EJAP) aims to promote mechanistic advances in human integrative and translational physiology. Physiology is viewed broadly, having overlapping context with related disciplines such as biomechanics, biochemistry, endocrinology, ergonomics, immunology, motor control, and nutrition. EJAP welcomes studies dealing with physical exercise, training and performance. Studies addressing physiological mechanisms are preferred over descriptive studies. Papers dealing with animal models or pathophysiological conditions are not excluded from consideration, but must be clearly relevant to human physiology.
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