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Effect of reflexive activation of motor units on torque development during electrically-evoked contractions of the triceps surae muscle

机译:电机单元对肱三头肌肌肉电诱发收缩期间电机单元对电机单元对扭矩发展的影响

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The aim of the study was to identify stimulation conditions permitting the occurrence of extra torque (ET) and to examine their impact on spinal and corticospinal excitabilities. Twelve subjects received stimulation trains over the tibial nerve (20 s duration, 1 ms pulse duration) that were delivered at 3 stimulation frequencies (20, 50, and 100 Hz) and at 5 intensities (110%, 120%. 130%, 140%, and 150% of the motor threshold). Torque-time integral (TTI) of each stimulation train was calculated. Spinal [maximum H-reflex (H-max)/maximal M-wave (M-max)] and corticospinal [maximal motor evoked potential amplitude (MEPmax)/M-max] excitabilities were assessed at rest before and after each stimulation train by tibial nerve stimulation and by transcranial magnetic stimulation, respectively. Moreover, a twitch at each stimulation intensity was delivered before and after each stimulation train. The EMG activity associated with this twitch was analyzed to identify the initial motor unit (MU) recruitment pathway before each stimulation train and discriminate trials to H-trials (indirect recruitment) and M-trials (direct recruitment). TTI was higher for H-trials compared with M-trials for all tested frequencies. There was a decrease in H-max/M(max )for the 20 Hz-H trials and an increase for the 100 Hz-H trials, whereas MEPmax/M(max )remained unchanged at post measurements. Present results demonstrate that the initial MU recruitment pattern plays a main role in the ET occurrence, with the indirect recruitment via the afferent volley being substantial for its development. The modulations of H-max/M(max )without changes in MEPmax/M(max )suggest that the ET development affects spinal excitability and that these changes are frequency dependent.
机译:该研究的目的是识别允许额外扭矩(ET)的刺激条件并检查它们对脊柱和皮质源性的影响。 12个受试者接受了在3刺激频率(20,50和100Hz)和5个强度(110%,120%的脉冲持续时间)上递送的胫骨神经(20次持续时间,1ms脉冲持续时间)上的刺激培训。(110%,120%。130%,140 %,和150%的电动机阈值)。计算每个刺激列车的扭矩 - 时间积分(TTI)。脊柱[最大H-REFLEX(H-MAX)/最大M波(M-MAX)]和皮质螺旋[最大电机诱发电位幅度(MEPMAX)/ M-MAX]兴趣在每次刺激列车之前和之后都在休息时进行评估分别胫骨神经刺激和经颅磁刺激。此外,在每次刺激列车之前和之后,在每个刺激强度处交付每个刺激强度的抽搐。分析与该抽搐相关的EMG活性,以识别每次刺激列车前的初始电机单元(MU)招募途径,并对H次试验(间接招募)和M-Ispers(直接招聘)进行区分试验。与所有测试频率的M-Isper相比,TTI对H次试验更高。对于20 Hz-H试验,H-MAX / M(MAX)的降低和100 Hz-H试验的增加,而MEPMAX / M(MAX)在后测量中保持不变。目前的结果表明,初始穆招聘模式在ET发生中起主要作用,通过传入凌行的间接招聘是重要的,因为它的发展很大。 H-MAX / M(MAX)的调制而不发生MEPMAX / M(MAX)的变化表明ET开发影响脊柱兴奋性,并且这些变化是频率相关的。

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