Division of Functional and Restorative Neurosurgery, Department of Neurosurgery, and Centre for Integrative Neuroscience, Eberhard Karls University Tuebingen, Tuebingen, Germany.
Department for Neurodegenerative Diseases and Hertie Institute for Clinical Brain Research, and German Centre of Neurodegenerative Diseases (DZNE), Eberhard Karls University Tuebingen, Tuebingen, Germany.
Mov Disord. 2018 Feb;33(2):251-261. doi: 10.1002/mds.27221.
Both the cerebello-thalamo-cortical circuit and the basal ganglia/cortical motor loop have been postulated to be generators of tremor in PD. The recent suggestion that the basal ganglia trigger tremor episodes and the cerebello-thalamo-cortical circuitry modulates tremor amplitude combines both competing hypotheses. However, the role of the STN in tremor generation and the impact of proprioceptive feedback on tremor suppression during voluntary movements have not been considered in this model yet.
The objective of this study was to evaluate the role of the STN and proprioceptive feedback in PD tremor generation during movement execution.
Local-field potentials of the STN as well as electromyographical and electroencephalographical rhythms were recorded in tremor-dominant and nontremor PD patients while performing voluntary movements of the contralateral hand during DBS surgery. Effective connectivity between these electrophysiological signals were analyzed and compared to electromyographical tremor activity.
There was an intensified information flow between the STN and the muscle in the tremor frequencies (5-8 Hz) for tremor-dominant, in comparison to nontremor, patients. In both subtypes, active movement was associated with an increase of afferent interaction between the muscle and the cortex in the β- and γ-frequencies. The γ-frequency (30-40 Hz) of this communication between muscle and cortex correlated inversely with electromyographical tremor activity.
Our results indicate an involvement of the STN in propagation of tremor-related activity to the muscle. Furthermore, we provide evidence that increased proprioceptive information flow during voluntary movement interferes with central tremor generation. © 2018 International Parkinson and Movement Disorder Society.
小脑-丘脑-皮质回路和基底节/皮质运动回路都被认为是 PD 震颤的产生源。最近的观点认为基底节触发震颤发作,而小脑-丘脑-皮质电路调节震颤幅度,这两种假说相互竞争。然而,该模型尚未考虑 STN 在震颤产生中的作用以及本体感受反馈对自愿运动中震颤抑制的影响。
本研究旨在评估 STN 及本体感受反馈在 PD 震颤产生中的作用,在运动执行过程中。
在 DBS 手术中,记录震颤主导型和非震颤 PD 患者对侧手进行自愿运动时 STN 的局部场电位以及肌电图和脑电图节律。分析这些电生理信号之间的有效连通性,并与肌电图震颤活动进行比较。
与非震颤患者相比,震颤主导型患者的 STN 与肌肉之间在震颤频率(5-8 Hz)的信息流量增加。在这两种亚型中,主动运动与肌肉和皮层之间在β和γ频率(β-和γ-频率)的传入相互作用增加有关。肌肉和皮层之间的γ频率(30-40 Hz)的这种通信与肌电图震颤活动呈负相关。
我们的结果表明 STN 参与了将震颤相关活动传播到肌肉。此外,我们提供的证据表明,自愿运动期间本体感受信息流量增加会干扰中枢震颤的产生。