School of Exercise and Nutrition Sciences, Faculty of Health, Queensland University of Technology, A Wing O Block, Victoria Park Road, Kelvin Grove, Brisbane, QLD, 4059, Australia.
Eur J Appl Physiol. 2022 Oct;122(10):2153-2162. doi: 10.1007/s00421-022-04991-7. Epub 2022 Jun 30.
Declines in muscle force, power, and contractile function can be observed in older adults, clinical populations, inactive individuals, and injured athletes. Passive heating exposure (e.g., hot baths, sauna, or heated garments) has been used for health purposes, including skeletal muscle treatment. An acute increase in muscle temperature by passive heating can increase the voluntary rate of force development and electrically evoked contraction properties (i.e., time to peak twitch torque, half-relation time, and electromechanical delay). The improvements in the rate of force development and evoked contraction assessments with increased muscle temperature after passive heating reveal peripheral mechanisms' potential role in enhancing muscle contraction. This review aimed to summarise, discuss, and highlight the potential role of an acute passive heating stimulus on skeletal muscle cells to improve contractile function. These mechanisms include increased calcium kinetics (release/reuptake), calcium sensitivity, and increased intramuscular fluid.
肌肉力量、功率和收缩功能的下降可在老年人、临床人群、不活跃个体和受伤运动员中观察到。被动加热暴露(例如,热水浴、桑拿或加热衣物)已被用于健康目的,包括骨骼肌治疗。被动加热引起的肌肉温度急性升高可增加肌肉的主动收缩速度和电诱发收缩特性(即,最大强直收缩时程、半时值和机电延迟)。被动加热后肌肉温度升高可提高肌肉收缩速度和诱发收缩评估的发展,这表明外周机制在增强肌肉收缩方面具有潜在作用。本综述旨在总结、讨论和强调急性被动加热刺激对改善收缩功能的骨骼肌细胞的潜在作用。这些机制包括增加钙动力学(释放/再摄取)、钙敏感性和增加肌内液体。