首页> 外文期刊>Brain: A journal of neurology >A direct relationship between oscillatory subthalamic nucleus-cortex coupling and rest tremor in Parkinson's disease
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A direct relationship between oscillatory subthalamic nucleus-cortex coupling and rest tremor in Parkinson's disease

机译:帕金森病患者的丘脑下丘脑核皮层耦合与静息震颤之间的直接关系

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Electrophysiological studies suggest that rest tremor in Parkinson's disease is associated with an alteration of oscillatory activity. Although it is well known that tremor depends on cortico-muscular coupling, it is unclear whether synchronization within and between brain areas is specifically related to the presence and severity of tremor. To tackle this longstanding issue, we took advantage of naturally occurring spontaneous tremor fluctuations and investigated cerebral synchronization in the presence and absence of rest tremor. We simultaneously recorded local field potentials from the subthalamic nucleus, the magnetoencephalogram and the electromyogram of forearm muscles in 11 patients with Parkinson's disease (all male, age: 52-74 years). Recordings took place the day after surgery for deep brain stimulation, after withdrawal of anti-parkinsonian medication. We selected epochs containing spontaneous rest tremor and tremor-free epochs, respectively, and compared power and coherence between subthalamic nucleus, cortex and muscle across conditions. Tremor-associated changes in cerebro-muscular coherence were localized by Dynamic Imaging of Coherent Sources. Subsequently, cortico-cortical coupling was analysed by computation of the imaginary part of coherency, a coupling measure insensitive to volume conduction. After tremor onset, local field potential power increased at individual tremor frequency and cortical power decreased in the beta band (13-30 Hz). Sensor level subthalamic nucleus-cortex, cortico-muscular and subthalamic nucleus-muscle coherence increased during tremor specifically at tremor frequency. The increase in subthalamic nucleus-cortex coherence correlated with the increase in electromyogram power. On the source level, we observed tremor-associated increases in cortico-muscular coherence in primary motor cortex, premotor cortex and posterior parietal cortex contralateral to the tremulous limb. Analysis of the imaginary part of coherency revealed tremor-dependent coupling between these cortical areas at tremor frequency and double tremor frequency. Our findings demonstrate a direct relationship between the synchronization of cerebral oscillations and tremor manifestation. Furthermore, they suggest the feasibility of tremor detection based on local field potentials and might thus become relevant for the design of closed-loop stimulation systems.
机译:电生理研究表明,帕金森氏病的静息性震颤与振荡活动的改变有关。尽管众所周知,震颤取决于皮质-肌肉耦合,但尚不清楚大脑区域内和大脑区域之间的同步是否与震颤的存在和严重程度有关。为了解决这个长期存在的问题,我们利用了自然发生的自发性震颤波动,并在有无震颤的情况下研究了大脑的同步性。我们同时记录了11例帕金森氏病患者(全部男性,年龄:52-74岁)的丘脑下核,局部脑电图和前臂肌电图。停药后第二天进行记录,以撤消抗帕金森病药物后,进行深部脑刺激。我们选择了分别包含自然静止震颤和无震颤的时期,并比较了不同条件下丘脑下核,皮质和肌肉之间的力量和连贯性。脑震颤相关性的震颤相关变化通过相关性源的动态成像来定位。随后,通过计算相干的虚部来分析皮层-皮层耦合,这是一种对体积传导不敏感的耦合措施。震颤发作后,局部震颤电位在个别震颤频率下增加,而皮质能量在β波段(13-30 Hz)下降。在震颤期间,特别是在震颤频率下,传感器水平的丘脑下丘脑皮层,皮质-肌肉和丘脑底-肌肉相干性增加。丘脑底核-皮层相干性的增加与肌电图功率的增加相关。在源头上,我们观察到与发颤肢相对的原发性运动皮层,运动前皮层和顶叶后皮质的震颤相关的皮质-肌肉连贯性增加。对相干的虚部的分析显示,在震颤频率和两倍震颤频率下,这些皮质区域之间的震颤依赖性耦合。我们的发现证明了脑震荡与震颤表现同步之间的直接关系。此外,他们提出了基于局部场电势进行震颤检测的可行性,因此可能与闭环刺激系统的设计有关。

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