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Brain and muscle activity during fatiguing maximum-speed knee movement

物理医学与康复 肌电图 肌肉疲劳 电动机控制 外围设备 脑电图 电生理学 上肢 机动部队招募 等长运动 膝关节 医学 心理学 神经科学 物理疗法 内科学 外科
作者
José Pedro Correia,Christophe Domingos,Erik Witvrouw,Pedro Luís,Agostinho Rosa,João R. Vaz,Sandro R. Freitas
出处
期刊:Journal of Applied Physiology [American Physiological Society]
被引量:1
标识
DOI:10.1152/japplphysiol.00145.2023
摘要

While the underlying mechanisms behind upper limb (e.g., finger) motor slowing during movements performed at the maximum voluntary rate have been explored, the same cannot be said for the lower limb. This is especially relevant considering the lower limb's larger joints and different functional patterns. Despite the similar motor control base, previously found differences in movement patterns and segment inertia may lead to distinct central and peripheral manifestations of fatigue in larger joint movement. Therefore, we aimed to explore these manifestations in a fatiguing knee maximum movement rate task by measuring brain and muscle activity, as well as brain-muscle coupling using corticomuscular coherence, during this task. A significant decrease in knee movement rate up to half the task duration was observed. After an early peak, brain activity showed a generalized decrease during the first half of the task, followed by a plateau, while knee flexor muscle activity showed a continuous decline. A similar decline was also seen in corticomuscular coherence, but for both flexor and extensor muscles. The electrophysiological manifestations associated with knee motor slowing therefore showed some common and some distinct aspects compared to smaller joint tasks. Both central and peripheral manifestations of fatigue were observed; the changes seen in both EEG and EMG variables suggest that multiple mechanisms were involved in exercise regulation and fatigue development.
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