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人类腓肠肌与跟腱在爬坡、水平及下坡运动过程中的相互作用。

Interactions between the human gastrocnemius muscle and the Achilles tendon during incline, level and decline locomotion.

作者信息

Lichtwark G A, Wilson A M

机构信息

Structure and Motion Laboratory, Institute of Orthopaedics and Musculoskeletal Sciences, University College London, Royal National Orthopedic Hospital, Brockley Hill, Stanmore, Middlesex, HA7 4LP, UK.

出版信息

J Exp Biol. 2006 Nov;209(Pt 21):4379-88. doi: 10.1242/jeb.02434.

Abstract

Muscles are required to perform or absorb mechanical work under different conditions. However the ability of a muscle to do this depends on the interaction between its contractile components and its elastic components. In the present study we have used ultrasound to examine the length changes of the gastrocnemius medialis muscle fascicle along with those of the elastic Achilles tendon during locomotion under different incline conditions. Six male participants walked (at 5 km h(-1)) on a treadmill at grades of -10%, 0% and 10% and ran (at 10 km h(-1)) at grades of 0% and 10%, whilst simultaneous ultrasound, electromyography and kinematics were recorded. In both walking and running, force was developed isometrically; however, increases in incline increased the muscle fascicle length at which force was developed. Force was developed at shorter muscle lengths for running when compared to walking. Substantial levels of Achilles tendon strain were recorded in both walking and running conditions, which allowed the muscle fascicles to act at speeds more favourable for power production. In all conditions, positive work was performed by the muscle. The measurements suggest that there is very little change in the function of the muscle fascicles at different slopes or speeds, despite changes in the required external work. This may be a consequence of the role of this biarticular muscle or of the load sharing between the other muscles of the triceps surae.

摘要

肌肉需要在不同条件下执行或吸收机械功。然而,肌肉执行此功能的能力取决于其收缩成分和弹性成分之间的相互作用。在本研究中,我们使用超声来检查在不同倾斜条件下运动过程中腓肠肌内侧肌束以及弹性跟腱的长度变化。六名男性参与者在跑步机上以5 km/h的速度在坡度为-10%、0%和10%的条件下行走,并以10 km/h的速度在坡度为0%和10%的条件下跑步,同时记录超声、肌电图和运动学数据。在行走和跑步过程中,均以等长方式发力;然而,坡度增加会使发力时的肌束长度增加。与行走相比,跑步时在较短的肌肉长度下发力。在行走和跑步条件下均记录到了较高水平的跟腱应变,这使得肌束能够以更有利于产生功率的速度发挥作用。在所有条件下,肌肉都执行了正功。测量结果表明,尽管所需的外部功发生了变化,但在不同坡度或速度下,肌束的功能变化很小。这可能是由于这块双关节肌肉的作用,或者是由于小腿三头肌其他肌肉之间的负荷分担所致。

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