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平地和上坡跑时下肢的肌肉活动。

Muscle activities of the lower limb during level and uphill running.

作者信息

Yokozawa Toshiharu, Fujii Norihisa, Ae Michiyoshi

机构信息

Department of Sports Sciences, Japan Institute of Sports Sciences, 3-15-1 Nishigaoka, Kitaku, Tokyo 115-0056, Japan.

出版信息

J Biomech. 2007;40(15):3467-75. doi: 10.1016/j.jbiomech.2007.05.028. Epub 2007 Jul 30.

Abstract

This study aimed to compare the muscle activities of the lower limb during overground level running (LR) and uphill running (UR) by using a musculoskeletal model. Six male distance runners ran at three running speeds (slow: 3.3 m/s; medium: 4.2 m/s; and high: 5.0 m/s) on a level runway and a slope of 9.1% grade in which force platforms were mounted. A musculoskeletal leg model and optimization were used to estimate the muscle activation and muscle torque from the joint torque of the lower limb calculated by the inverse dynamics approach. At high speed, the activation and muscle torque of the muscle groups surrounding the hip joints, such as the hamstrings and iliopsoas, during the recovery phase were significantly greater during UR than during LR. At all the running speeds, the knee extension torque by the vasti during the support phase was significantly smaller during UR. Further, the hip flexion and knee extension torques by the rectus femoris during UR were significantly greater than those during LR at all the speeds; this would play a role in compensating for the decrease in the knee extension torque by the vasti and in maintaining the trunk in a forward-leaning position. These results revealed that the activation and muscle torque of the hip extensors and flexors were augmented during UR at the high speed.

摘要

本研究旨在通过使用肌肉骨骼模型比较在平地跑步(LR)和上坡跑步(UR)过程中下肢的肌肉活动。六名男性长跑运动员在安装了测力平台的水平跑道和坡度为9.1%的斜坡上以三种跑步速度(慢:3.3米/秒;中:4.2米/秒;快:5.0米/秒)跑步。使用肌肉骨骼腿部模型和优化方法,根据通过逆动力学方法计算出的下肢关节扭矩来估计肌肉激活和肌肉扭矩。在高速时,UR过程中恢复阶段髋关节周围肌肉群(如腘绳肌和髂腰肌)的激活和肌肉扭矩显著大于LR过程中的。在所有跑步速度下,UR过程中支撑阶段股四头肌产生的膝关节伸展扭矩显著较小。此外,在所有速度下,UR过程中股直肌产生的髋关节屈曲和膝关节伸展扭矩显著大于LR过程中的;这将在补偿股四头肌膝关节伸展扭矩的降低以及保持躯干前倾姿势方面发挥作用。这些结果表明,高速UR过程中髋伸肌和髋屈肌的激活和肌肉扭矩增加。

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