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髌腱和肌腱单位刚度对人体股四头肌爆发力的影响。

The influence of patellar tendon and muscle-tendon unit stiffness on quadriceps explosive strength in man.

作者信息

Massey Garry J, Balshaw Thomas G, Maden-Wilkinson Thomas M, Tillin Neale A, Folland Jonathan P

机构信息

Arthritis Research UK Centre for Sport, Exercise and Osteoarthritis, Loughborough University, Leicestershire, UK.

School of Sport, Exercise, and Health Sciences, Loughborough University, Leicestershire, UK.

出版信息

Exp Physiol. 2017 Apr 1;102(4):448-461. doi: 10.1113/EP086190. Epub 2017 Mar 16.

Abstract

What is the central question of this study? Do tendon and/or muscle-tendon unit stiffness influence rate of torque development? What is the main finding and its importance? In our experimental conditions, some measures of relative (to maximal voluntary torque and tissue length) muscle-tendon unit stiffness had small correlations with voluntary/evoked rate of torque development over matching torque increments. However, absolute and relative tendon stiffness were unrelated to voluntary and evoked rate of torque development. Therefore, the muscle aponeurosis but not free tendon influences the relative rate of torque development. Factors other than tissue stiffness more strongly determine the absolute rate of torque development. The influence of musculotendinous tissue stiffness on contractile rate of torque development (RTD) remains opaque. In this study, we examined the relationships between both patellar tendon (PT) and vastus lateralis muscle-tendon unit (MTU) stiffness and the voluntary and evoked knee-extension RTD. Fifty-two healthy untrained men completed duplicate laboratory sessions. Absolute and relative RTD were measured at 50 N m or 25% maximal voluntary torque (MVT) increments from onset and sequentially during explosive voluntary and evoked octet isometric contractions (supramaximal stimulation; eight pulses at 300 Hz). Isometric MVT was also assessed. Patellar tendon and MTU stiffness were derived from simultaneous force and ultrasound recordings of the PT and vastus lateralis aponeurosis during constant RTD ramp contractions. Absolute and relative (to MVT and resting tissue length) stiffness (k) was measured over identical torque increments as RTD. Pearson's correlations tested relationships between stiffness and RTD measurements over matching absolute/relative torque increments. Absolute and relative PT k were unrelated to equivalent voluntary/evoked (r = 0.020-0.255, P = 0.069-0.891). Absolute MTU k was unrelated to voluntary or evoked RTD (r ≤ 0.191, P ≥ 0.184), but some measures of relative MTU k were related to relative voluntary/evoked RTD (e.g. RTD for 25-50% MVT, r = 0.374/0.353, P = 0.007/0.014). In conclusion, relative MTU k explained a small proportion of the variance in relative voluntary and evoked RTD (both ≤19%), despite no association of absolute MTU k or absolute/relative PT k with equivalent RTD measures. Therefore, the muscle-aponeurosis component but not free tendon was associated with relative RTD, although it seems that an overriding influence of MVT negated any relationship of absolute MTU k and absolute RTD.

摘要

本研究的核心问题是什么?肌腱和/或肌肉-肌腱单元的刚度是否会影响扭矩发展速率?主要发现及其重要性是什么?在我们的实验条件下,一些相对(相对于最大自主扭矩和组织长度)的肌肉-肌腱单元刚度测量值与匹配扭矩增量过程中的自主/诱发扭矩发展速率有小的相关性。然而,绝对和相对肌腱刚度与自主和诱发扭矩发展速率无关。因此,肌腹但非游离肌腱会影响相对扭矩发展速率。除组织刚度外的其他因素更强烈地决定了绝对扭矩发展速率。肌肉-肌腱组织刚度对收缩性扭矩发展速率(RTD)的影响仍不明确。在本研究中,我们研究了髌腱(PT)和股外侧肌肌肉-肌腱单元(MTU)刚度与自主和诱发的膝关节伸展RTD之间的关系。52名健康的未经训练男性完成了重复的实验室测试。在从起始点开始以50 N·m或25%最大自主扭矩(MVT)增量进行测量,并在爆发性自主和诱发的八次等长收缩(超强刺激;300 Hz的八个脉冲)过程中依次测量绝对和相对RTD。还评估了等长MVT。髌腱和MTU刚度是在恒定RTD斜坡收缩过程中通过对PT和股外侧肌肌腹同时进行力和超声记录得出的。在与RTD相同的扭矩增量上测量绝对和相对(相对于MVT和静息组织长度)刚度(k)。Pearson相关性检验了在匹配的绝对/相对扭矩增量上刚度与RTD测量值之间的关系。绝对和相对PT k与等效的自主/诱发值无关(r = 0.020 - 0.255,P = 0.069 - 0.891)。绝对MTU k与自主或诱发RTD无关(r≤0.191,P≥0.184),但一些相对MTU k测量值与相对自主/诱发RTD相关(例如25 - 50% MVT时的RTD,r = 0.374/0.353,P = 0.007/0.014)。总之,尽管绝对MTU k或绝对/相对PT k与等效RTD测量值无关联,但相对MTU k解释了相对自主和诱发RTD中一小部分方差(均≤19%)。因此,肌腹成分而非游离肌腱与相对RTD相关,尽管似乎MVT的主导影响抵消了绝对MTU k与绝对RTD之间的任何关系。

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