Bočková Martina, Chládek Jan, Jurák Pavel, Halámek Josef, Rapcsak Steven Z, Baláž Marek, Chrastina Jan, Rektor Ivan
Central European Institute of Technology (CEITEC), Brain and Mind Research Programme, Masaryk University, Brno, Czech Republic.
Movement Disorders Centre, First Department of Neurology, Medical Faculty of Masaryk University, Masaryk University, St. Anne's Hospital, Pekařská 53, 656 91, Brno, Czech Republic.
J Neural Transm (Vienna). 2017 Jul;124(7):841-852. doi: 10.1007/s00702-017-1719-6. Epub 2017 Apr 7.
This study investigates how complex motor-cognitive activities are processed in the subthalamic nucleus (STN) and internal globus pallidum (GPi), as adverse neuropsychiatric effects may accompany deep brain stimulation (DBS), mainly in Parkinson's disease (PD) and STN-DBS. Dystonia patients with GPi-DBS electrodes (n = 5) and PD subjects (n = 5) with STN-DBS electrodes performed two tasks: (1) copying letters; and (2) writing any letter other than that appearing on the monitor. The cognitive load of the second task was greater than that of the first. Intracranial local field potentials (LFPs) were analysed. A beta power decrease was the main correlate of the enhanced cognitive load during the second task in both structures, with a lateralization to the left side, mainly in the GPi. A gamma power increase linked with the increased cognitive activity was observed only in the STN. Differences were also observed in the theta and alpha bandpasses. Beta ERD reactivity seems to be essential during the processing of complex motor-cognitive tasks, increases with enhanced cognitive effort, and was observed in both the STN and GPi. Oscillatory reactivity to effortful cognitive processing in other frequency bands was less consistent, with differences between the studied nuclei. Lateralization of activity related to cognitive factors was observed mainly in the GPi.
本研究调查了复杂运动认知活动在丘脑底核(STN)和苍白球内侧部(GPi)中是如何被处理的,因为深部脑刺激(DBS)可能会伴随不良神经精神效应,主要见于帕金森病(PD)和STN-DBS。植入GPi-DBS电极的肌张力障碍患者(n = 5)和植入STN-DBS电极的PD患者(n = 5)执行两项任务:(1)抄写字母;(2)书写与显示器上出现的字母不同的任何字母。第二项任务的认知负荷大于第一项。对颅内局部场电位(LFP)进行了分析。在两项任务中,β功率降低是第二项任务中认知负荷增强的主要相关因素,并向左侧偏侧化,主要发生在GPi。仅在STN中观察到与认知活动增加相关的γ功率增加。在θ和α带通中也观察到差异。β事件相关去同步化(ERD)反应性在复杂运动认知任务处理过程中似乎至关重要,并随着认知努力的增强而增加,在STN和GPi中均有观察到。其他频段对费力认知处理的振荡反应性不太一致,在所研究核团之间存在差异。与认知因素相关的活动偏侧化主要在GPi中观察到。