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Beta synchrony in the cortico-basal ganglia network during regulation of force control on and off dopamine

机译:调节多巴胺的作用力控制过程中皮质基底神经节网络中的β同步

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摘要

Beta power suppression in the basal ganglia is stronger during movements that require high force levels and high movement effort but it has been difficult to dissociate the two. We recorded scalp EEG and basal ganglia local field potentials in Parkinson's disease patients (11 STN, 7 GPi) ON and OFF dopaminergic medication while they performed a visually-guided force matching task using a pen on a force-sensitive graphics tablet. Force adjustments were accompanied by beta power suppression irrespective of whether the force was increased or reduced. Before the adjustment was completed, beta activity returned. High beta power was specifically associated with slowing of the force adjustment. ON medication, the peak force rate was faster and cortico-basal ganglia beta phase coupling was more readily modulated. In particular, phase decoupling was stronger during faster adjustments. The results suggest that beta power in the basal ganglia does not covary with force per se, but rather with a related factor, the absolute force rate, or a more general concept of movement effort. The results also highlight that beta activity reappears during stabilization of isometric contractions, and that dopaminerelated suppression of cortico-basal ganglia beta coupling is linked to faster force adjustments.
机译:在需要高力水平和高运动力的运动中,基底神经节中的β功率抑制作用更强,但很难使两者分离。我们记录了帕金森氏病患者(11 STN,7 GPi)多巴胺能药物的开和关时头皮脑电图和基底神经节局部场的电位,而他们使用笔在力敏绘图板上执行了视觉引导的力匹配任务。不论力是增加还是减小,力的调整都伴随有β功率抑制。在调整完成之前,返回了beta活动。较高的贝塔功率与减慢力调节特别相关。在药物治疗中,峰值作用力速度更快,皮质-基底神经节β相耦合更容易调节。特别地,在更快的调整期间,相位去耦更强。结果表明,基底神经节中的β功率本身并不随力变化,而是与绝对力率或更一般的运动力概念有关。结果还突出表明,β活性在等距收缩的稳定过程中重新出现,而多巴胺相关的皮质-基底神经节β偶联的抑制与更快的力调节有关。

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