首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >In vivo motion transmission in the inactive gastrocnemius medialis muscle-tendon unit during ankle and knee joint rotation
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In vivo motion transmission in the inactive gastrocnemius medialis muscle-tendon unit during ankle and knee joint rotation

机译:踝关节和膝关节旋转过程中非活动腓肠肌内侧肌腱单位的体内运动传递

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The purposes of this study were: (a) to quantify the influence of passive ankle and knee joint angular displacement on the estimated mechanical and architectural properties of the gastrocnemius medialis (GM) muscle-tendon unit, and (b) to determine the strain distribution of separate structures (tendon, aponeurosis and fascicle) during passive lengthening of the GM muscle-tendon unit at rest. Ten male subjects participated in the study. The passive ankle and knee joint movements were performed on an isokinetic dynamometer. The kinematics of the left leg were recorded using the Vicon 624 system with 8 cameras. Two ultrasound probes were used to examine the elongation of the tendon, the aponeurosis, the fascicles and the angle of pennation of the GM. To calculate the elongation of the GM muscle-tendon unit the Achilles tendon path was reconstructed using a series of small reflective markers. The results show that the passive ankle joint angular displacement has a considerable influence on the elongation of the tendinous and architectural structures of the GM muscle-tendon unit. In contrast, the influence of knee joint angular displacement on the GM fascicle length and pennation angle becomes relevant only at knee angles greater than 144 degrees. The contribution of the tendon to the elongation of the GM muscle-tendon unit at rest is relevant because of its greater resting length in comparison to the resting length of the GM fascicles. The results indicate the existence of slackness in the inactive GM muscle-tendon unit between 121 degrees and 107 degrees ankle angle and between 65 degrees and 144 degrees knee angle. (C) 2005 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是:(a)量化被动踝和膝关节角位移对腓肠肌内侧(GM)肌腱单位的估计机械和建筑特性的影响,以及(b)确定应变分布静止时GM肌腱单位的被动延长过程中分离结构(肌腱,腱膜和束)的分布。十名男性受试者参加了这项研究。在等速测功机上进行被动的踝关节和膝关节运动。使用带有8个摄像机的Vicon 624系统记录左腿的运动学。使用两个超声探头检查肌腱的伸长,腱膜,束和GM的垂线角度。为了计算GM肌腱单位的伸长率,使用一系列小的反射标记物重建了跟腱路径。结果表明,被动踝关节的角位移对GM肌腱单元的腱和建筑结构的伸长有很大影响。相反,膝关节角位移对GM束长度和垂垂角的影响仅在膝角大于144度时才有意义。肌腱对静止时GM肌腱单元伸长的贡献是相关的,因为与GM分束的静止长度相比,其更长的静止长度。结果表明,在非活动状态的GM肌腱单元中,踝角介于121度和107度之间以及膝角介于65度和144度之间存在松弛。 (C)2005 Elsevier Ltd.保留所有权利。

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