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预拉伸对垂直跳跃中肌肉-肌腱相互作用的影响。

Effect of a prehop on the muscle-tendon interaction during vertical jumps.

机构信息

Human Movement Biomechanics Research Group, Department of Kinesiology, KU Leuven-University of Leuven, Leuven , Belgium.

Centre for Sensorimotor Performance, St. Lucia The School of Human Movement Studies, University of Queensland, Queensland, Australia.

出版信息

J Appl Physiol (1985). 2018 May 1;124(5):1203-1211. doi: 10.1152/japplphysiol.00462.2017. Epub 2017 Aug 3.

Abstract

Many movements use stretch-shortening cycles of a muscle-tendon unit (MTU) for storing and releasing elastic energy. The required stretching of medial gastrocnemius (MG) tendinous tissue during jumps, however, requires large length changes of the muscle fascicles because of the lack of MTU length changes. This has a negative impact on the force-generating capacity of the muscle fascicles. The purpose of this study was to induce a MG MTU stretch before shortening by adding a prehop to the squat jump. Eleven well-trained athletes specialized in jumping performed a prehop squat jump (PHSJ) and a standard squat jump (SSJ). Kinematic data were collected using a 3D motion capture system and were used in a musculoskeletal model to calculate MTU lengths. B-mode ultrasonography of the MG was used to measure fascicle length and pennation angle during the jumps. By combining the muscle-tendon unit lengths, fascicle lengths, and pennation angles, the stretch and recoil of the series elastic element of MG were calculated using a simple geometric muscle-tendon model. Our results show less length changes of the muscle fascicles during the upward motion and lower maximal shortening velocities, increasing the moment-generating capacity of the plantar flexors, reflected in the higher ankle joint moment in the PHSJ compared with the SSJ. Although muscle-tendon interaction during the PHSJ was more optimal, athletes were not able to increase their jump height compared with the SSJ. NEW & NOTEWORTHY This is the first study that aimed to improve the muscle-tendon interaction in squat jumping. We effectively introduced a stretch to the medial gastrocnemius muscle-tendon unit resulting in lower maximal shortening velocities and thus an increase in the plantar flexor force-generating capacity, reflected in the higher ankle joint moment in the prehop squat jump compared with the standard squat jump. Here, we demonstrate an effective method for mechanical optimization of the muscle-tendon interaction in the medial gastrocnemius during squat jumping.

摘要

许多运动利用肌肉肌腱单元(MTU)的伸缩周期来储存和释放弹性能量。然而,由于 MTU 长度不变,跳跃时需要对内侧腓肠肌(MG)肌腱组织进行拉伸,这需要肌肉纤维束发生较大的长度变化。这对肌肉纤维束的产生力能力有负面影响。本研究的目的是通过在深蹲跳中增加预跳(PHSJ)来预先对 MG 的 MTU 进行拉伸,然后再进行缩短。11 名专门从事跳跃运动的训练有素的运动员分别完成了预跳深蹲跳(PHSJ)和标准深蹲跳(SSJ)。使用三维运动捕捉系统收集运动学数据,并在肌肉骨骼模型中使用这些数据来计算 MTU 长度。在跳跃过程中,使用 B 型超声测量 MG 的肌束长度和羽状角。通过结合肌肉肌腱单元的长度、肌束的长度和羽状角,使用简单的几何肌肉肌腱模型计算 MG 串联弹性元件的拉伸和回弹。我们的结果表明,在向上运动中,MG 的肌纤维束的长度变化较小,最大缩短速度较低,从而增加了跖屈肌的产生力能力,这反映在 PHSJ 中的踝关节力矩比 SSJ 更高。尽管 PHSJ 中的肌肉肌腱相互作用更为理想,但与 SSJ 相比,运动员无法增加其跳跃高度。 新的和值得注意的是,这是第一项旨在改善深蹲跳中肌肉肌腱相互作用的研究。我们有效地对内侧腓肠肌肌肉肌腱单元进行了拉伸,导致最大缩短速度降低,从而增加了跖屈肌的产生力能力,这反映在 PHSJ 中的踝关节力矩比 SSJ 更高。在这里,我们展示了一种在深蹲跳中有效优化内侧腓肠肌肌肉肌腱相互作用的机械方法。

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