Farmer Simon F, Gibbs John, Halliday David M, Harrison Linda M, James Leon M, Mayston Margaret J, Stephens John A
Institute of Neurology and National Hospital for Neurology and Neurosurgery, Queen Square, London WC1N 3BG, UK.
J Physiol. 2007 Mar 1;579(Pt 2):389-402. doi: 10.1113/jphysiol.2006.123174. Epub 2006 Dec 21.
In adults, motoneurone pools of synergistic muscles that act around a common joint share a common presynaptic drive. Common drive can be revealed by both time domain and frequency domain analysis of EMG signals. Analysis in the frequency domain reveals significant coherence in the range 1-45 Hz, with maximal coherence in low (1-12 Hz) and high (16-32 Hz) ranges. The high-frequency range depends on cortical drive to motoneurones and is coherent with cortical oscillations at approximately 20 Hz frequencies. It is of interest to know whether oscillatory drive to human motoneurone pools changes with development. In the present study we examined age-related changes in coherence between rectified surface EMG signals recorded from the short and long thumb abductor muscles during steady isometric contraction obtained while subjects abducted the thumb against a manipulandum. We analysed EMG data from 36 subjects aged between 4 and 14 years, and 11 adult subjects aged between 22 and 59 years. Using the techniques of pooled coherence analysis and the chi(2) difference of coherence test we demonstrate that between the ages of 7 and 9 years, and 12 and 14 years, there are marked increases in the prevalence and magnitude of coherence at frequencies between 11 and 45 Hz. The data from subjects aged 12-14 years were similar to those obtained from adult controls. The most significant differences between younger children and the older age groups were detected at frequencies close to 20 Hz. We believe that these are the first reported results demonstrating significant late maturational changes in the approximately 20 Hz common oscillatory drive to human motoneurone pools.
在成年人中,围绕共同关节起作用的协同肌运动神经元池共享共同的突触前驱动。共同驱动可通过肌电图(EMG)信号的时域和频域分析来揭示。频域分析显示在1 - 45赫兹范围内存在显著的相干性,在低频(1 - 12赫兹)和高频(16 - 32赫兹)范围内相干性最大。高频范围取决于皮质对运动神经元的驱动,并且与约20赫兹频率的皮质振荡相干。了解对人类运动神经元池的振荡驱动是否随发育而变化很有意义。在本研究中,我们检查了在受试者对抗操作手柄外展拇指时进行稳定等长收缩期间,从短展拇肌和长展拇肌记录的整流表面肌电图信号之间相干性的年龄相关变化。我们分析了36名年龄在4至14岁之间的受试者以及11名年龄在22至59岁之间的成年受试者的肌电图数据。使用合并相干分析技术和相干性检验的卡方差异,我们证明在7至9岁以及12至14岁之间,11至45赫兹频率范围内相干性的发生率和幅度有显著增加。12至14岁受试者的数据与成年对照组的数据相似。在接近20赫兹的频率处检测到年幼儿童与年龄较大组之间最显著的差异。我们认为这些是首次报道的结果,证明了对人类运动神经元池约20赫兹共同振荡驱动存在显著的后期成熟变化。