首页> 美国卫生研究院文献>Frontiers in Human Neuroscience >Striatal Dopaminergic Innervation Regulates Subthalamic Beta-Oscillations and Cortical-Subcortical Coupling during Movements: Preliminary Evidence in Subjects with Parkinson’s Disease
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Striatal Dopaminergic Innervation Regulates Subthalamic Beta-Oscillations and Cortical-Subcortical Coupling during Movements: Preliminary Evidence in Subjects with Parkinson’s Disease

机译:纹状体多巴胺能神经支配调节运动过程中丘脑β-振荡和皮层-皮层下的耦合:帕金森氏病患者的初步证据。

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摘要

Activation of the basal ganglia has been shown during the preparation and execution of movement. However, the functional interaction of cortical and subcortical brain areas during movement and the relative contribution of dopaminergic striatal innervation remains unclear. We recorded local field potential (LFP) activity from the subthalamic nucleus (STN) and high-density electroencephalography (EEG) signals in four patients with Parkinson’s disease (PD) off dopaminergic medication during a multi-joint motor task performed with their dominant and non-dominant hand. Recordings were performed by means of a fully-implantable deep brain stimulation (DBS) device at 4 months after surgery. Three patients also performed a single-photon computed tomography (SPECT) with [123I]N-ω-fluoropropyl-2β-carbomethoxy-3β-(4-iodophenyl)nortropane (FP-CIT) to assess striatal dopaminergic innervation. Unilateral movement execution led to event-related desynchronization (ERD) followed by a rebound after movement termination event-related synchronization (ERS) of oscillatory beta activity in the STN and primary sensorimotor cortex of both hemispheres. Dopamine deficiency directly influenced movement-related beta-modulation, with greater beta-suppression in the most dopamine-depleted hemisphere for both ipsi- and contralateral hand movements. Cortical-subcortical, but not interhemispheric subcortical coherencies were modulated by movement and influenced by striatal dopaminergic innervation, being stronger in the most dopamine-depleted hemisphere. The data are consistent with a role of dopamine in shielding subcortical structures from an excessive cortical entrapment and cross-hemispheric coupling, thus allowing fine-tuning of movement.
机译:在准备和执行运动过程中已显示了基底神经节的激活。然而,运动过程中皮质和皮质下大脑区域的功能相互作用以及多巴胺能纹状体神经支配的相对贡献仍不清楚。我们记录了四名患有多巴胺能药物的帕金森氏病(PD)患者在他们的显性和非显性多关节运动任务中通过丘脑下核(STN)和高密度脑电图(EEG)信号记录的局部场电位(LFP)活动。 -主导的手。术后4个月通过完全植入的深部脑刺激(DBS)设备进行记录。 3例患者还进行了[[sup> 123 I]N-ω-氟丙基-2β-羰甲氧基-3β-(4-碘苯基)降冰片烷(FP-CIT)的单光子计算机断层扫描(SPECT),以评估纹状体多巴胺能神经支配。单边运动的执行导致事件相关的失步(ERD),然后是运动终止事件相关的同步(ERS)在两个半球的STN和主要感觉运动皮层的振荡β活动后反弹。多巴胺缺乏症直接影响运动相关的β调节,在同侧和对侧手部运动最消耗多巴胺的半球中,β抑制作用更大。皮层下皮层,但不是半球间皮层下的相干性是通过运动来调节的,并且受纹状体多巴胺能神经支配的影响,在最消耗多巴胺的半球中更强。数据与多巴胺在保护皮层下结构免受过多的皮层夹带和跨半球耦合作用中的作用一致,因此可以进行微调运动。

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