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热对骨骼肌拉伸行为的影响。

Thermal effects on skeletal muscle tensile behavior.

作者信息

Noonan T J, Best T M, Seaber A V, Garrett W E

机构信息

Orthopaedic Research Laboratories, Duke University Medical Center, Durham, North Carolina 27710.

出版信息

Am J Sports Med. 1993 Jul-Aug;21(4):517-22. doi: 10.1177/036354659302100407.

Abstract

The effect of temperature on the mechanical failure properties of rabbit skeletal muscle (tibialis anterior and extensor digitorum longus) was examined. For all tests, one leg was maintained at 25 degrees C and the contralateral leg at 40 degrees C. Muscles were pulled to failure according to assignment into one of three groups: 1) passive failure at 10 cm/sec, 2) passive failure at 1 cm/sec, or 3) active (muscle is stimulated to contract as it is pulled) failure at 10 cm/sec. Load to failure was higher in the cold muscle for all groups tested. Total deformation was the same except in Group 1, when the warm muscle had a greater deformation. Energy absorbed before failure was greater in the cold muscle in Groups 2 and 3. Stiffness was higher in cold muscles for all muscles except the extensor digitorum longus in Group 1. In this study, temperature had a significant effect on the tensile properties; these thermal effects were dependent on both loading rate and contractile state. Comparing loading rates, warm muscle tested at 10 cm/sec had higher failure loads than that tested at 1 cm/sec. Comparing stimulated versus unstimulated muscle (Group 1 versus Group 3), the stimulated tibialis anterior muscle absorbed more energy than unstimulated ones. Stimulated extensor digitorum longus muscles had higher failure loads, absorbed more energy, and were stiffer than nonstimulated muscles. This study offers experimental data to support the theory that warming muscles can aid in injury prevention and improvement in athletic performance.

摘要

研究了温度对兔骨骼肌(胫骨前肌和趾长伸肌)机械失效特性的影响。在所有测试中,一条腿保持在25摄氏度,对侧腿保持在40摄氏度。根据分组情况将肌肉拉伸至失效:1)以10厘米/秒的速度进行被动失效,2)以1厘米/秒的速度进行被动失效,或3)以10厘米/秒的速度进行主动(肌肉在拉伸时被刺激收缩)失效。对于所有测试组,冷肌肉的失效负荷更高。除第1组外,总变形相同,此时温肌肉的变形更大。在第2组和第3组中,冷肌肉在失效前吸收的能量更多。除第1组的趾长伸肌外,冷肌肉的刚度对所有肌肉都更高。在本研究中,温度对拉伸性能有显著影响;这些热效应取决于加载速率和收缩状态。比较加载速率,以10厘米/秒测试的温肌肉比以1厘米/秒测试的温肌肉具有更高的失效负荷。比较受刺激与未受刺激的肌肉(第1组与第3组),受刺激的胫骨前肌比未受刺激的胫骨前肌吸收更多能量。受刺激的趾长伸肌比未受刺激的趾长伸肌具有更高的失效负荷、吸收更多能量且更硬。本研究提供了实验数据来支持这样的理论,即肌肉升温有助于预防损伤和提高运动表现。

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