Department of Neurobiology, Physiology and Behavior, University of California, Davis CA 95616, USA.
J Biomech. 2009 Dec 11;42(16):2813-7. doi: 10.1016/j.jbiomech.2009.08.023. Epub 2009 Sep 16.
Warm-up exercises are often advocated prior to strenuous exercise, but the warm-up duration and effect on muscle-tendon behavior are not well defined. The gastrocnemius-Achilles tendon complexes of 18 subjects were studied to quantify the dynamic creep response of the Achilles tendon in-vivo and the warm-up dose required for the Achilles tendon to achieve steady-state behavior. A custom testing chamber was used to determine each subject's maximum voluntary contraction (MVC) during an isometric ankle plantar flexion effort. The subject's right knee and ankle were immobilized for one hour. Subjects then performed over seven minutes of cyclic isometric ankle plantar flexion efforts equal to 25-35% of their MVC at a frequency of 0.75 Hz. Ankle plantar flexion effort and images from dual ultrasound probes located over the gastrocnemius muscle-Achilles tendon and the calcaneus-Achilles tendon junction were acquired for eight seconds at the start of each sequential minute of the activity. Ultrasound images were analyzed to quantify the average relative Achilles tendon strain at 25% MVC force (epsilon(25%MVC)) for each minute. The epsilon(25%MVC) increased from 0.3% at the start of activity to 3.3% after seven minutes, giving a total dynamic creep of ~3.0%. The epsilon(25%MVC) increased by more than 0.56% per minute for the first five minutes and increased by less than 0.13% per minute thereafter. Therefore, following a period of inactivity, a low intensity warm-up lasting at least six minutes or producing 270 loading cycles is required for an Achilles tendon to reach a relatively steady-state behavior.
热身运动通常被提倡在剧烈运动之前进行,但热身的持续时间和对肌肉-肌腱行为的影响还没有得到很好的定义。本研究旨在量化跟腱的体内动态蠕变响应,并确定跟腱达到稳态行为所需的热身剂量。使用定制的测试室来确定每个受试者在等长踝关节跖屈运动中的最大自主收缩(MVC)。受试者的右膝和脚踝被固定 1 小时。然后,受试者进行 7 分钟的周期性等长踝关节跖屈运动,频率为 0.75 Hz,强度为 25-35%的 MVC。在活动的每一分钟的开始,获取 8 秒的踝关节跖屈运动和位于比目鱼肌-跟腱和跟骨-跟腱交界处的双超声探头的图像。分析超声图像以量化在 25%MVC 力下的平均相对跟腱应变(epsilon(25%MVC))。在活动开始时,epsilon(25%MVC)从 0.3%增加到 7 分钟后的 3.3%,总动态蠕变量约为 3.0%。在最初的 5 分钟内,epsilon(25%MVC)每分钟增加超过 0.56%,之后每分钟增加不到 0.13%。因此,在一段时间的不活动之后,需要至少 6 分钟或产生 270 个加载循环的低强度热身运动,才能使跟腱达到相对稳定的状态。