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外部负荷对跳跃过程中股四头肌和肌腱动力学的影响。

The Influence of External Load on Quadriceps Muscle and Tendon Dynamics during Jumping.

作者信息

Earp Jacob E, Newton Robert U, Cormie Prue, Blazevich Anthony J

机构信息

1Department of Kinesiology, University of Rhode Island, Kingston, RI; 2Centre for Exercise and Sports Science Research, School of Medical and Health Sciences, Edith Cowan University, Joondalup WA, AUSTRALIA; 3Institute of Human Performance, University of Hong Kong, HONG KONG; 4Australian Catholic University, Institute for Health & Ageing, Melbourne, AUSTRALIA.

出版信息

Med Sci Sports Exerc. 2017 Nov;49(11):2250-2259. doi: 10.1249/MSS.0000000000001361.

Abstract

UNLABELLED

Tendons possess both viscous (rate-dependent) and elastic (rate-independent) properties that determine tendon function. During high-speed movements external loading increases both the magnitude (FT) and rate (RFDT) of tendon loading.

PURPOSE

The influence of external loading on muscle and tendon dynamics during maximal vertical jumping was explored.

METHODS

Ten resistance-trained men performed parallel-depth, countermovement vertical jumps with and without additional load (0%, 30%, 60%, and 90% of maximum squat lift strength), while joint kinetics and kinematics, quadriceps tendon length (LT) and patellar tendon FT and RFDT were estimated using integrated ultrasound, motion analysis and force platform data and muscle tendon modelling.

RESULTS

Estimated FT and RFDT, but not peak LT, increased with external loading. Temporal comparisons between 0% and 90% loads revealed that FT was greater with 90% loading throughout the majority of the movement (11%-81% and 87%-95% movement duration). However, RFDT was greater with 90% load only during the early movement initiation phase (8%-15% movement duration) but was greater in the 0% load condition later in the eccentric phase (27%-38% movement duration). LT was longer during the early movement (12%-23% movement duration) but shorter in the late eccentric and early concentric phases (48%-55% movement duration) with 90% load.

DISCUSSION

External loading positively influenced peak FT and RFDT but tendon strain appeared unaffected, suggesting no additive effect of external loading on patellar tendon lengthening during human jumping. Temporal analysis revealed that external loading resulted in a large initial RFDT that may have caused dynamic stiffening of the tendon and attenuated tendon strain throughout the movement. These results suggest that external loading influences tendon lengthening in both a load- and movement-dependent manner.

摘要

未标注

肌腱具有粘性(速率依赖性)和弹性(速率非依赖性)特性,这些特性决定了肌腱的功能。在高速运动中,外部负荷会增加肌腱负荷的大小(FT)和速率(RFDT)。

目的

探讨最大垂直跳跃过程中外部负荷对肌肉和肌腱动力学的影响。

方法

10名经过阻力训练的男性进行平行深度、有和无额外负荷(最大深蹲举力量的0%、30%、60%和90%)的反向运动垂直跳跃,同时使用集成超声、运动分析和力平台数据以及肌肉肌腱建模来估计关节动力学和运动学、股四头肌肌腱长度(LT)以及髌腱FT和RFDT。

结果

估计的FT和RFDT随外部负荷增加而增加,但峰值LT没有增加。0%和90%负荷之间的时间比较显示,在大多数运动过程中(运动持续时间的11%-81%和87%-95%),90%负荷时的FT更大。然而,RFDT仅在运动起始早期阶段(运动持续时间的8%-15%)90%负荷时更大,但在偏心阶段后期(运动持续时间的27%-38%)0%负荷时更大。90%负荷时,LT在运动早期(运动持续时间的12%-23%)较长,但在偏心后期和向心早期阶段(运动持续时间的48%-55%)较短。

讨论

外部负荷对峰值FT和RFDT有积极影响,但肌腱应变似乎未受影响,这表明在人类跳跃过程中,外部负荷对髌腱延长没有叠加效应。时间分析表明,外部负荷导致了较大的初始RFDT,这可能导致肌腱动态变硬并在整个运动过程中减弱肌腱应变。这些结果表明,外部负荷以负荷和运动依赖的方式影响肌腱延长。

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