Centre of Biomedical Engineering, Bulgarian Academy of Sciences, Acad. G. Bonchev Str., Bl. 105, Sofia, 1113, Bulgaria.
Eur J Appl Physiol. 2010 Jan;108(2):227-37. doi: 10.1007/s00421-009-1206-3. Epub 2009 Sep 22.
The increase in muscle strength without noticeable hypertrophic adaptations is very important in some sports. Motor unit (MU) synchronisation and higher rate of MU activation are proposed as possible mechanisms for such a strength and electromyogram (EMG) increase in the early phase of a training regimen. Root mean square and/or integrated EMG are amplitude measures commonly used to estimate the adaptive changes in efferent neural drive. EMG amplitude characteristics could change also because of alteration in intracellular action potential (IAP) spatial profile. We simulated MUs synchronization under different length of the IAP profile. Different synchronization was simulated by variation of the percent of discharges in a referent MU, to which a variable percent of remaining MUs was synchronized. Population synchrony index estimated the degree of MU synchronization in EMG signals. We demonstrate that the increase in amplitude characteristics due to MU synchronization is stronger in surface than in intramuscularly detected EMG signals. However, the effect of IAP profile lengthening on surface detected EMG signals could be much stronger than that of MU synchronization. Thus, changes in amplitude characteristics of surface detected EMG signals with progressive strength training could hardly be used as an indicator of changes in neural drive without testing possible changes in IAPs.
肌肉力量的增加而没有明显的肥大适应在某些运动中非常重要。运动单位(MU)同步和更高的 MU 激活率被提出作为训练方案早期力量和肌电图(EMG)增加的可能机制。均方根和/或积分 EMG 是常用的估计传出神经驱动适应性变化的幅度测量。由于细胞内动作电位(IAP)空间分布的改变,EMG 幅度特征也可能发生变化。我们模拟了不同 IAP 分布长度下的 MU 同步。通过在参考 MU 中的放电百分比的变化来模拟不同的同步,其中可变百分比的剩余 MU 被同步。群体同步指数估计了 EMG 信号中 MU 同步的程度。我们证明,由于 MU 同步,表面检测到的 EMG 信号中的幅度特征增加比在肌肉内检测到的 EMG 信号更强。然而,IAP 分布长度对表面检测到的 EMG 信号的影响可能比 MU 同步强得多。因此,在没有测试 IAP 可能变化的情况下,渐进式力量训练中表面检测到的 EMG 信号幅度特征的变化几乎不能用作神经驱动变化的指标。