首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Effects of knee joint angle on the fascicle behavior of the gastrocnemius muscle during eccentric plantar flexions
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Effects of knee joint angle on the fascicle behavior of the gastrocnemius muscle during eccentric plantar flexions

机译:膝关节角度对偏心plant屈时腓肠肌束束行为的影响

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摘要

The present study aimed to clarify the effects of knee joint angle on the behavior of the medial gastrocnemius muscle (MG) fascicles during eccentric plantar flexions. Eight male subjects performed maximal eccentric plantar flexions at two knee positions [fully extended (K0) and 90 degrees flexed (K90)]. The eccentric actions were preceded by static plantar flexion at a 30 degrees plantar flexed position and then the ankle joint was forcibly dorsiflexed to 15 degrees of dorsiflexion with an isokinetic dynamometer at 30 degrees/s and 150 degrees/s. Tendon force was calculated by dividing the plantar flexion torque by the estimated moment arm of the Achilles tendon. The MG fascicle length was determined with ultrasonography. The tendon forces during eccentric plantar flexions were influenced by the knee joint angle, but not by the angular velocity. The MG fascicle lengths were elongated as the ankle was dorsiflexed in KO, but in K90 they were almost constant despite the identical range of ankle joint motion. These results suggested that MG fascicle behavior during eccentric actions was markedly affected by the knee joint angle. The difference in the fascicle behavior between KO and K90 could be attributed to the non-linear force-length relations and/or to the slackness of tendinous tissues.
机译:本研究旨在阐明在偏心on屈过程中膝关节角度对内侧腓肠肌(MG)束的行为的影响。八名男性受试者在两个膝盖位置[完全伸展(K0)和90度屈曲(K90)]进行最大的偏心plant屈。在偏心动作之前,先在30度足底屈曲位置进行静态足底屈曲,然后用等速测力计以30度/ s和150度/ s的力将踝关节背屈至背屈15度。通过将足底屈曲扭矩除以跟腱的估计力矩臂来计算肌腱力。 MG束长度由超声检查确定。偏心plant屈时的肌腱力受膝关节角度的影响,但不受角速度的影响。 MG的束长度随着KO脚背屈而延长,但在K90中,尽管脚踝关节运动范围相同,但它们几乎是恒定的。这些结果表明,在偏心动作中,MG束的行为受到膝关节角度的明显影响。 KO和K90之间的束行为之间的差异可归因于非线性力-长度关系和/或肌腱组织松弛。

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