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Effect of ageing on the electrical and mechanical properties of human soleus motor units activated by the H reflex and M wave

机译:老化对H反射和M波激活的比目鱼肌运动单元的电气和机械性能的影响

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摘要

This study was designed to investigate the effect of ageing on the mechanical and electromyographic (EMG) characteristics of the soleus motor units (MUs) activated by the maximal Hoffmann reflex (Hmax) and by the direct muscle compound action potential (Mmax). Eleven young (mean age 25 ± 4 years) and ten elderly (mean age 73 ± 5 years) males took part in this investigation. The senior group presented lower amplitudes of Mmax (−57 %, P < 0.001) and Hmax (−68 %, P < 0.001) waves compared to the younger population. These were associated with a depression of relative twitch torque of the plantar flexors. The average values of the Hmax/Mmax ratio did not statistically differ between the two populations, despite a tendency for lower values (∼23 %) in the senior group. However, the older adults showed a greater relative amplitude of the sub-maximal M wave evoked at Hmax (MatHmax) than did the younger males (young 5 % vs. elderly 29 % of the Mmax, P < 0.01). This finding suggests an increased homogeneity between the excitability threshold of sensory and motor axons. The twitch torque at Hmax (PtH–M) was subsequently calculated by subtraction from the total twitch torque of the mechanical contamination associated with MatHmax. The resulting PtH–M was significantly lower in the elderly (−59 %, P < 0.001). Despite a discrepancy of 20 % between the two groups, the mechanical ratio (PtH–M/PtM; PtM, twitch tension related to the Mmax compound action potential), like the EMG ratio, did not statistically differ between the young and older individuals. Nevertheless, the senior subjects exhibited a higher twitch/EMG ratio for the reflexively activated MUs (PtH–M/Hmax) than the younger individuals (+40 %, P < 0.05). This finding suggests an on-going neuromuscular remodelling, resulting in an increased innervation ratio. The neural rearrangement may be viewed as a compensatory adaptation of the motor system to preserve the mechanical efficiency of the surviving MUs, despite the age-related impairment of the segmental reflex system. This phenomenon is confirmed by the maintenance, with senescence, of the approximately constant values of the twitch/EMG ratio for the entire motor pool (PtM/Mmax).
机译:本研究旨在研究衰老对比目鱼运动单位(MUs)的机械和肌电图(EMG)特性的影响,该比目鱼运动单位由最大霍夫曼反射(Hmax)和直接肌肉复合动作电位(Mmax)激活。 11名青年(平均年龄25±4岁)和10名老年(平均年龄73±5岁)男性参加了这项调查。与年轻人群相比,老年人组的Mmax(−57%,P <0.001)和Hmax(−68%,P <0.001)波振幅更低。这些与with屈的相对抽搐扭矩的降低有关。尽管在高龄人群中Hmax / Mmax比值的平均值在统计学上没有降低的趋势(〜23%),但在统计学上没有差异。但是,老年人在Hmax(MatHmax)处诱发的次最大M波的相对振幅比年轻男性更大(年轻5%,老年人29%的Mmax,P <0.01)。这一发现表明,感觉轴突和运动轴突的兴奋性阈值之间的同质性增加。随后,通过减去与MatHmax相关的机械污染的总抽搐扭矩减去Hmax处的抽扭矩(PtH–M)。老年人中产生的PtH–M显着降低(−59%,P <0.001)。尽管两组之间的差异为20%,但肌电图比率等机械比率(PtH–M / PtM; PtM,与M sub 复合动作电位有关的抽搐张力)在统计学上并未年轻人和老年人之间的差异。尽管如此,高年级受测者对自反激活的MUs表现出更高的抽搐/ EMG比(Pt H–M / H max ),而年轻人则更高(+ 40%,P <0.05)。这一发现表明正在进行的神经肌肉重塑,导致神经支配率增加。尽管节段性反射系统与年龄相关,但神经重排可被视为运动系统的一种补偿性适应,以保持存活的MU的机械效率。整个电机池的抽动/ EMG比的近似恒定值保持不变(Pt M / M max )可以确认这种现象。

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