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帕金森病患者等长肌力产生过程中丘脑底核局部场电位功率的调制。

Modulation of local field potential power of the subthalamic nucleus during isometric force generation in patients with Parkinson's disease.

机构信息

Department of Neurology, University Hospital Cologne, Cologne, Germany.

出版信息

Neuroscience. 2013 Jun 14;240:106-16. doi: 10.1016/j.neuroscience.2013.02.043. Epub 2013 Feb 27.

Abstract

Investigations of local field potentials of the subthalamic nucleus of patients with Parkinson's disease have provided evidence for pathologically exaggerated oscillatory beta-band activity (13-30 Hz) which is amenable to physiological modulation by, e.g., voluntary movement. Previous functional magnetic resonance imaging studies in healthy controls have provided evidence for an increase of subthalamic nucleus blood-oxygenation-level-dependant signal in incremental force generation tasks. However, the modulation of neuronal activity by force generation and its relationship to peripheral feedback remain to be elucidated. We hypothesised that beta-band activity in the subthalamic nucleus is modulated by incremental force generation. Subthalamic nucleus local field potentials were recorded intraoperatively in 13 patients with Parkinson's disease (37 recording sites) during rest and five incremental isometric force generation conditions of the arm with applied loads of 0-400 g (in 100-g increments). Repeated measures analysis of variance (ANOVA) revealed a modulation of local field potential (LFP) power in the upper beta-band (in 24-30 Hz; F(₃.₀₄₂)=4.693, p=0.036) and the gamma-band (in 70-76 Hz; F(₄)=4.116, p=0.036). Granger-causality was computed with the squared partial directed coherence and showed no significant modulation during incremental isometric force generation. Our findings indicate that the upper beta- and gamma-band power of subthalamic nucleus local field potentials are modulated by the physiological task of force generation in patients with Parkinson's disease. This modulation seems to be not an effect of a modulation of peripheral feedback.

摘要

对帕金森病患者的丘脑底核局部场电位的研究提供了证据,表明病理性地夸大了振荡β带活动(13-30 Hz),这种活动可以通过例如自愿运动进行生理调节。先前在健康对照者中的功能磁共振成像研究提供了证据,表明在递增力产生任务中,丘脑底核血氧水平依赖信号增加。然而,力产生对神经元活动的调节及其与外周反馈的关系仍有待阐明。我们假设,丘脑底核中的β带活动可以通过递增力产生来调节。在 13 名帕金森病患者(37 个记录部位)的手术过程中记录了丘脑底核的局部场电位,在休息时和手臂的五个递增等长力产生条件下,手臂施加的负荷为 0-400 g(每 100 g 递增一次)。重复测量方差分析(ANOVA)显示局部场电位(LFP)功率在上部β带(在 24-30 Hz 之间;F(₃.₀₄₂)=4.693,p=0.036)和γ带(在 70-76 Hz 之间;F(₄)=4.116,p=0.036)中得到了调节。使用平方偏部分定向相干性计算格兰杰因果关系,在递增等长力产生期间没有显示出显著的调节。我们的发现表明,帕金森病患者在进行力产生的生理任务时,丘脑底核局部场电位的上部β带和γ带功率会发生调节。这种调节似乎不是外周反馈调节的结果。

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