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首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Effect of high-load and high-volume resistance exercise on the tensiomyographic twitch response of biceps brachii
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Effect of high-load and high-volume resistance exercise on the tensiomyographic twitch response of biceps brachii

机译:高负荷,大容量抵抗运动对肱二头肌肌张力描记反应的影响

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摘要

The purpose of the present study was to assess the ability of TMG in detecting mechanical fatigue induced by two different resistance exercises on biceps brachii: high-volume (HV), and high-load (HL). Sixteen healthy subjects (age 25.1±2.6years; body mass 79.9±8.9kg; height 179±7.4cm) performed arm-curl in two different protocols (HV: 8×15×10kg, HL: 5×3×30kg). Tensiomyography was used to assess muscle response to both exercise protocols. The contractile capacity of biceps brachii significantly varied by means of the effects of potentiation and fatigue mechanisms that take place at different exercise phases. The most significant changes correspond to values of maximum radial displacement of muscle belly (D _m), sustained contraction time (T _s), relaxation time (T _r), and contraction velocity (V _c). The behavior of these parameters is, in general, similar in both exercise protocols, but they show subtle differences among them. During the first set, in both protocols, values for V _c increase, along with a decrease in T _r, T _s, and D _m values. Fatigue onset was evident from changes in such parameters, with HL being the first in showing these mechanisms. Tensiomyography has been shown to be highly sensitive in detecting fatigue-induced changes.
机译:本研究的目的是评估TMG检测肱二头肌的两种不同抵抗运动引起的机械疲劳的能力:高容量(HV)和高负荷(HL)。 16名健康受试者(年龄25.1±2.6岁;体重79.9±8.9kg;身高179±7.4cm)以两种不同的方式(HV:8×15×10kg,HL:5×3×30kg)进行手臂弯曲。肌张力描记术用于评估对两种运动方案的肌肉反应。肱二头肌的收缩能力通过在不同运动阶段发生的增强和疲劳机制的影响而显着变化。最显着的变化对应于肌肉腹部的最大径向位移(D _m),持续收缩时间(T s),松弛时间(T _r)和收缩速度(V _c)的值。这些参数的行为通常在两种锻炼方案中都相似,但是它们之间显示出细微的差异。在第一组中,在两种协议中,V _c的值都会增加,T _r,T s和D _m值也会减少。从这些参数的变化可以明显看出疲劳发作,而HL是第一个显示这些机制的人。张力描记术已显示出在检测疲劳引起的变化中非常敏感。

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