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Time Course of Central and Peripheral Alterations after Isometric Neuromuscular Electrical Stimulation-Induced Muscle Damage

机译:等距神经肌肉电刺激诱发的肌肉损伤后中枢和周围改变的时程

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摘要

Isometric contractions induced by neuromuscular electrostimulation (NMES) have been shown to result in a prolonged force decrease but the time course of the potential central and peripheral factors have never been investigated. This study examined the specific time course of central and peripheral factors after isometric NMES-induced muscle damage. Twenty-five young healthy men were subjected to an NMES exercise consisting of 40 contractions for both legs. Changes in maximal voluntary contraction force of the knee extensors (MVC), peak evoked force during double stimulations at 10 Hz (Db10) and 100 Hz (Db100), its ratio (10∶100), voluntary activation, muscle soreness and plasma creatine kinase activity were assessed before, immediately after and throughout four days after NMES session. Changes in knee extensors volume and T2 relaxation time were also assessed at two (D2) and four (D4) days post-exercise. MVC decreased by 29% immediately after NMES session and was still 19% lower than the baseline value at D4. The decrease in Db10 was higher than in Db100 immediately and one day post-exercise resulting in a decrease (−12%) in the 10∶100 ratio. On the contrary, voluntary activation significantly decreased at D2 (−5%) and was still depressed at D4 (−5%). Muscle soreness and plasma creatine kinase activity increased after NMES and peaked at D2 and D4, respectively. T2 was also increased at D2 (6%) and D4 (9%). Additionally, changes in MVC and peripheral factors (e.g., Db100) were correlated on the full recovery period, while a significant correlation was found between changes in MVC and VA only from D2 to D4. The decrease in MVC recorded immediately after the NMES session was mainly due to peripheral changes while both central and peripheral contributions were involved in the prolonged force reduction. Interestingly, the chronological events differ from what has been reported so far for voluntary exercise-induced muscle damage.
机译:由神经肌肉电刺激(NMES)引起的等轴测收缩已显示可导致长时间的力下降,但尚未研究潜在的中央和周围因素的时程。这项研究检查了等距NMES诱发的肌肉损伤后中枢和外围因素的特定时程。 25名年轻健康男性接受NMES运动,包括双腿40次收缩。膝关节伸肌最大自愿收缩力(MVC)的变化,两次刺激在10 Hz(Db10)和100 Hz(Db100)时的峰值诱发力,其比率(10∶100),自愿激活,肌肉酸痛和血浆肌酸激酶在NMES会议之前,之后和之后的整整4天评估活动。在运动后两(D2)天和四(D4)天,还评估了膝关节伸肌体积和T2放松时间的变化。 NMES会议结束后,MVC立即下降了29%,但仍比第4天的基线值低19%。 Db10的降低立即高于Db100,运动后一天降低,导致10∶100的比例降低(-12%)。相反,在D2(-5%)时,自愿激活显着下降,而在D4(-5%)时仍被抑制。 NMES后肌肉酸痛和血浆肌酸激酶活性增加,分别在D2和D4达到峰值。 T2在D2(6%)和D4(9%)处也增加。此外,MVC的变化和外围因素(例如,Db100)在整个恢复期之间相关,而仅从D2到D4,MVC和VA的变化之间存在显着的相关性。 NMES会议结束后立即记录的MVC下降主要是由于外围设备的变化,而中央和外围设备的贡献均与长时间的力量减少有关。有趣的是,时间顺序事件与迄今为止针对自愿性运动引起的肌肉损伤所报道的事件有所不同。

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