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在短跑的第一个支撑阶段,年轻短跑运动员和成年短跑运动员的肌肉-肌腱单元长度变化存在差异。

Muscle-tendon unit length changes differ between young and adult sprinters in the first stance phase of sprint running.

作者信息

Aeles Jeroen, Jonkers Ilse, Debaere Sofie, Delecluse Christophe, Vanwanseele Benedicte

机构信息

KU Leuven - University of Leuven Department of Kinesiology, Human Movement Biomechanics Research Group, 3000 Leuven, Belgium.

KU Leuven - University of Leuven Department of Kinesiology, Physical Activity, Sports and Health Research Group, 3000 Leuven, Belgium.

出版信息

R Soc Open Sci. 2018 Jun 13;5(6):180332. doi: 10.1098/rsos.180332. eCollection 2018 Jun.

Abstract

The aim of this study was to compare young and adult sprinters on several biomechanical parameters that were previously highlighted as performance-related and to determine the behaviour of several muscle-tendon units (MTU) in the first stance phase following a block start in sprint running. The ground reaction force (GRF) and kinematic data were collected from 16 adult and 21 young well-trained sprinters. No difference between the groups was found in some of the previously highlighted performance-related parameters (ankle joint stiffness, the range of dorsiflexion and plantar flexor moment). Interestingly, the young sprinters showed a greater maximal and mean ratio of horizontal to total GRF, which was mainly attributed to a greater horizontal GRF relative to body mass and resulted in a greater change in horizontal centre of mass (COM) velocity during the stance phase in the young compared with the adult sprinters. Results from the MTU length analyses showed that adult sprinters had more MTU shortening and higher maximal MTU shortening velocities in all plantar flexors and the rectus femoris. Although previously highlighted performance-related parameters could not explain the greater 100 m sprinting times in the adult sprinters, differences were found in the behaviour of the MTU of the plantar flexors and rectus femoris during the first stance phase. The pattern of length changes in these MTUs provides ideal conditions for the use of elastic energy storage and release for power enhancement.

摘要

本研究的目的是比较年轻和成年短跑运动员在几个先前被认为与成绩相关的生物力学参数上的差异,并确定短跑起跑后第一个支撑阶段几个肌肉-肌腱单元(MTU)的行为。从16名成年和21名年轻的训练有素的短跑运动员身上收集了地面反作用力(GRF)和运动学数据。在一些先前突出的与成绩相关的参数(踝关节刚度、背屈范围和跖屈力矩)方面,两组之间未发现差异。有趣的是,年轻短跑运动员的水平GRF与总GRF的最大和平均比值更大,这主要归因于相对于体重更大的水平GRF,并且与成年短跑运动员相比,年轻运动员在支撑阶段水平质心(COM)速度的变化更大。MTU长度分析结果表明,成年短跑运动员在所有跖屈肌和股直肌中MTU缩短更多,最大MTU缩短速度更高。尽管先前突出的与成绩相关的参数无法解释成年短跑运动员100米短跑时间更长的原因,但在第一个支撑阶段,跖屈肌和股直肌的MTU行为存在差异。这些MTU的长度变化模式为利用弹性能量储存和释放来增强力量提供了理想条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6ef/6030344/dae4f9fe0290/rsos180332-g1.jpg

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