Department of Neurology, Christian-Albrechts-University, Kiel, Germany.
Neuroimage. 2012 Apr 2;60(2):1331-9. doi: 10.1016/j.neuroimage.2012.01.088. Epub 2012 Jan 26.
Parkinsonian tremor (PD), essential tremor (ET) and voluntarily mimicked tremor represent fundamentally different motor phenomena, yet, magnetoencephalographic and imaging data suggest their origin in the same motor centers of the brain. Using EEG-EMG coherence and coherent source analysis we found a different pattern of corticomuscular delays, time courses and central representations for the basic and double tremor frequencies typical for PD suggesting a wider range defective oscillatory activity. For the basic tremor frequency similar central representations in primary sensorimotor, prefrontal/premotor and diencephalic (e.g. thalamic) areas were reproduced for all three tremors. But renormalized partial directed coherence of the spatially filtered (source) signals revealed a mainly unidirectional flow of information from the diencephalon to cortex in voluntary tremor, e.g. a thalamocortical relay, as opposed to a bidirectional subcortico-cortical flow in PD and ET promoting uncontrollable, e.g. thalamocortical, loop oscillations. Our results help to understand why pathological tremors although originating from the physiological motor network are not under voluntary control and they may contribute to the solution of the puzzle why high frequency thalamic stimulation has a selective effect on pathological tremor leaving voluntary movement performance almost unaltered.
帕金森震颤(PD)、特发性震颤(ET)和自愿模仿震颤代表了根本不同的运动现象,但脑磁图和影像学数据表明它们起源于大脑相同的运动中枢。使用 EEG-EMG 相干性和相干源分析,我们发现了一种不同的皮质-肌肉延迟模式、时间过程和基本及双震颤频率的中枢表示,这表明振荡活动的范围更广。对于基本震颤频率,所有三种震颤在初级感觉运动、前额叶/运动前和间脑(例如丘脑)区域中再现了相似的中枢表示。但是,对空间滤波(源)信号的归一化部分定向相干性揭示了自愿震颤中信息主要从间脑到皮层的单向流动,例如丘脑皮质中继,而 PD 和 ET 中的皮质下-皮质双向流动促进了不可控的、例如丘脑皮质的、环回振荡。我们的结果有助于理解为什么病理性震颤虽然起源于生理运动网络,但不受自愿控制,它们可能有助于解决为什么高频丘脑刺激对病理性震颤具有选择性影响而对自愿运动表现几乎没有影响的难题。