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皮质在特发性震颤产生中的作用。

Cortical involvement in the generation of essential tremor.

作者信息

Raethjen Jan, Govindan R B, Kopper Florian, Muthuraman M, Deuschl Günther

机构信息

Dept. of Neurology, University of Kiel, 24105 Kiel, Germany.

出版信息

J Neurophysiol. 2007 May;97(5):3219-28. doi: 10.1152/jn.00477.2006. Epub 2007 Mar 7.

Abstract

Conflicting results on the existence of tremor-related cortical activity in essential tremor (ET) have raised questions on the role of the cortex in tremor generation. Here we attempt to address these issues. We recorded 64 channel surface EEGs and EMGs from forearm muscles in 15 patients with definite ET. EEG and EMG power spectra, relative power of the rhythmic EMG activity, relative EEG power at the tremor frequency, and EEG-EMG and EEG-EEG coherence were calculated and their dynamics over time explored. Corticomuscular delay was studied using a new method for narrow-band coherent signals. Corticomuscular coherence in the contralateral central region at the tremor frequency was present in all patients in recordings with a relative tremor EMG power exceeding a certain level. However, the coherence was lost intermittently even with tremors far above this level. Physiological 15- to 30-Hz coherence was found consistently in 11 patients with significantly weaker EMG activity in this frequency range. A more frontal (mesial) hot spot was also intermittently coupled with the tremor and the central hot spot in five patients. Corticomuscular delays were compatible with transmission in fast corticospinal pathways and feedback of the tremor signal. Thus the tremor rhythm is intermittently relayed only in different cortical motor areas. We hypothesize that tremor oscillations build up in different subcortical and subcortico-cortical circuits only temporarily entraining each other.

摘要

关于特发性震颤(ET)中与震颤相关的皮质活动是否存在,相互矛盾的结果引发了关于皮质在震颤产生中作用的疑问。在此,我们试图解决这些问题。我们记录了15例确诊为ET患者的64通道头皮脑电图(EEG)和前臂肌肉的肌电图(EMG)。计算了EEG和EMG功率谱、节律性EMG活动的相对功率、震颤频率下的相对EEG功率以及EEG-EMG和EEG-EEG相干性,并探讨了它们随时间的动态变化。使用一种针对窄带相干信号的新方法研究了皮质肌肉延迟。在相对震颤EMG功率超过一定水平的记录中,所有患者对侧中央区域在震颤频率下均存在皮质肌肉相干性。然而,即使震颤远高于此水平,相干性也会间歇性丧失。在11例该频率范围内EMG活动明显较弱的患者中持续发现了生理上的15至30赫兹相干性。在5例患者中,一个更靠前(内侧)的热点也与震颤和中央热点间歇性耦合。皮质肌肉延迟与快速皮质脊髓通路中的传输以及震颤信号的反馈相一致。因此,震颤节律仅在不同的皮质运动区域间歇性中继。我们假设震颤振荡仅在不同的皮质下和皮质下-皮质回路中暂时相互夹带而形成。

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