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在晚期帕金森病患者中,深部脑刺激可抑制自发的感觉运动皮层活动。

Spontaneous sensorimotor cortical activity is suppressed by deep brain stimulation in patients with advanced Parkinson's disease.

作者信息

Luoma Jarkko, Pekkonen Eero, Airaksinen Katja, Helle Liisa, Nurminen Jussi, Taulu Samu, Mäkelä Jyrki P

机构信息

BioMag Laboratory, HUS Medical Imaging Center, University of Helsinki and Helsinki University Hospital, Finland.

Department of Neurology, Helsinki University Hospital and Department of Clinical Neurosciences (Neurology), University of Helsinki, Helsinki, Finland.

出版信息

Neurosci Lett. 2018 Sep 14;683:48-53. doi: 10.1016/j.neulet.2018.06.041. Epub 2018 Jun 22.

Abstract

Advanced Parkinson's disease (PD) is characterized by an excessive oscillatory beta band activity in the subthalamic nucleus (STN). Deep brain stimulation (DBS) of STN alleviates motor symptoms in PD and suppresses the STN beta band activity. The effect of DBS on cortical sensorimotor activity is more ambiguous; both increases and decreases of beta band activity have been reported. Non-invasive studies with simultaneous DBS are problematic due to DBS-induced artifacts. We recorded magnetoencephalography (MEG) from 16 advanced PD patients with and without STN DBS during rest and wrist extension. The strong magnetic artifacts related to stimulation were removed by temporal signal space separation. MEG oscillatory activity at 5-25 Hz was suppressed during DBS in a widespread frontoparietal region, including the sensorimotor cortex identified by the cortico-muscular coherence. The strength of suppression did not correlate with clinical improvement. Our results indicate that alpha and beta band oscillations are suppressed at the frontoparietal cortex by STN DBS in PD.

摘要

晚期帕金森病(PD)的特征是丘脑底核(STN)中存在过度的振荡β波段活动。对STN进行深部脑刺激(DBS)可缓解PD的运动症状并抑制STN的β波段活动。DBS对皮质感觉运动活动的影响更为模糊;已有报道称β波段活动既有增加也有减少。由于DBS诱发的伪迹,同时进行DBS的非侵入性研究存在问题。我们记录了16例晚期PD患者在休息和手腕伸展时有无STN DBS情况下的脑磁图(MEG)。通过时间信号空间分离去除了与刺激相关的强磁伪迹。在DBS期间,广泛的额顶叶区域(包括通过皮质-肌肉相干性确定的感觉运动皮层)中5-25赫兹的MEG振荡活动受到抑制。抑制强度与临床改善无关。我们的结果表明,PD患者中STN DBS可抑制额顶叶皮质的α和β波段振荡。

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