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加载强度对最大膝关节伸肌拉伸缩短循环运动中肌肉-肌腱单元行为的影响。

The influence of loading intensity on muscle-tendon unit behavior during maximal knee extensor stretch shortening cycle exercise.

机构信息

Department of Movement Science, Sport and Leisure Studies, Westfield State University, Westfield, MA, USA,

出版信息

Eur J Appl Physiol. 2014 Jan;114(1):59-69. doi: 10.1007/s00421-013-2744-2. Epub 2013 Oct 23.

Abstract

Tendon stiffness increases as the magnitude and rate of loading increases, according to its viscoelastic properties. Thus, under some loading conditions tendons should become exceptionally stiff and act almost as rigid force transducers. Nonetheless, observations of tendon behavior during multi-joint sprinting and jumping tasks have shown that tendon strain increases whilst muscle strain decreases as the loading intensity increases. The purpose of the current study was to examine the influence of external loading intensity on muscle-tendon unit (MTU) behavior during a high-speed single-joint, stretch-shortening cycle (SSC) knee extension task. Eighteen men (n = 9) and women (n = 9) performed single-leg, maximum intensity SSC knee extensions at loads of 20, 60 and 90% of their one repetition maximum. Vastus lateralis fascicle length (L(f)) and velocity (v(f)) as well as MTU (L(MTU)) and tendinous tissue (L(t)) length were measured using high-speed ultrasonography (96 Hz). Patellar tendon force (F(t)) and rate of force development (RFDt) were estimated using inverse dynamics. Results showed that as loading intensity increased, concentric joint velocity and shortening v f decreased whilst F t and RFDt increased, but no significant differences were observed in eccentric joint velocity or peak L(MTU) or L(f). In addition, the tendon lengthened significantly less at the end of the eccentric phase at heavier loads. This is the first observation that tendon strain decreases significantly during a SSC movement as loading intensity increases in vivo, resulting in a shift in the tendon acting as a power amplifier at light loads to a more rigid force transducer at heavy loads.

摘要

根据粘弹性特性,随着加载幅度和速率的增加,肌腱的刚度也会增加。因此,在某些加载条件下,肌腱应该变得异常坚硬,几乎可以作为刚性力传感器。然而,在多关节冲刺和跳跃任务中观察到肌腱的行为时,已经表明随着加载强度的增加,肌腱应变增加,而肌肉应变减少。本研究的目的是研究在高速单关节、伸展-缩短循环(SSC)膝关节伸展任务中,外部加载强度对肌肉-肌腱单元(MTU)行为的影响。18 名男性(n=9)和女性(n=9)以 20%、60%和 90%的最大重复次数进行单腿最大强度 SSC 膝关节伸展。使用高速超声(96 Hz)测量股外侧肌束长度(L(f))和速度(v(f))以及 MTU(L(MTU))和腱组织(L(t))长度。使用逆动力学估计髌腱力(F(t)和力发展速率(RFDt)。结果表明,随着加载强度的增加,向心关节速度和缩短 v f 降低,而 F t 和 RFDt 增加,但在离心关节速度或峰值 L(MTU)或 L(f)上没有观察到显著差异。此外,在较重的负荷下,在离心阶段结束时,肌腱明显缩短。这是首次观察到,在体内 SSC 运动中,随着加载强度的增加,肌腱应变显著减小,导致肌腱从轻负荷下的功率放大器转变为重负荷下的更刚性力传感器。

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