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左旋多巴在伴有冻结步态的帕金森病中更有选择性地改变静息状态功能连接。

Levodopa alters resting-state functional connectivity more selectively in Parkinson's disease with freezing of gait.

机构信息

Department of Kinesiology and Physical Education Montréal, McGill University, Montreal, Québec, Canada.

Integrated Program in Neuroscience, McGill University, Montreal, Québec, Canada.

出版信息

Eur J Neurosci. 2023 Jan;57(1):163-177. doi: 10.1111/ejn.15849. Epub 2022 Nov 11.

Abstract

Freezing of gait (FOG) is a debilitating motor symptom of Parkinson's disease (PD). Although PD dopaminergic medication (L-DOPA) seems to generally reduce FOG severity, its effect on neural mechanisms of FOG remains to be determined. The purpose of this study was to quantify the effect of L-DOPA on brain resting-state functional connectivity in individuals with FOG. Functional magnetic resonance imaging was acquired at rest in 30 individuals living with PD (15 freezers) in the ON- and OFF- medication state. A seed-to-voxel analysis was performed with seeds in the bilateral basal ganglia nuclei, the thalamus and the mesencephalic locomotor region. In freezers, medication-state contrasts revealed numerous changes in resting-state functional connectivity, not modulated by L-DOPA in non-freezers. In freezers, L-DOPA increased the functional connectivity between the seeds and regions including the posterior parietal, the posterior cingulate, the motor and the medial prefrontal cortices. Comparisons with non-freezers revealed that L-DOPA generally normalizes brain functional connectivity to non-freezers levels but can also increase functional connectivity, possibly compensating for dysfunctional networks in freezers. Our findings suggest that L-DOPA could contribute to a better sensorimotor, attentional, response inhibition and limbic processing to prevent FOG when triggers are encountered but could also contribute to FOG by interfering with the processing capacity of the striatum. This study shows that levodopa taken to control PD symptoms induces changes in functional connectivity at rest, in freezers only. Increases (green) in functional connectivity of GPe, GPi, putamen and thalamus with cognitive, sensorimotor and limbic cortical regions of the Interference model (blue) was observed. Our results suggest that levodopa can normalize connections similar to non-freezers or increases connectivity to compensate for dysfunctional networks.

摘要

冻结步态(FOG)是帕金森病(PD)的一种使人虚弱的运动症状。虽然 PD 多巴胺能药物(L-DOPA)似乎通常会降低 FOG 的严重程度,但它对 FOG 的神经机制的影响仍有待确定。本研究的目的是量化 L-DOPA 对有 FOG 个体的大脑静息状态功能连接的影响。在 ON-和 OFF-药物状态下,对 30 名患有 PD 的个体(15 名冻结者)进行了静息功能磁共振成像采集。使用双侧基底节核、丘脑和中脑运动区的种子进行种子到体素分析。在冻结者中,药物状态对比揭示了静息状态功能连接的许多变化,这些变化在非冻结者中不受 L-DOPA 调节。在冻结者中,L-DOPA 增加了种子与包括后顶叶、后扣带、运动和内侧前额叶皮质在内的区域之间的功能连接。与非冻结者的比较表明,L-DOPA 通常使大脑功能连接正常化到非冻结者的水平,但也可以增加功能连接,这可能补偿了冻结者的功能障碍网络。我们的发现表明,L-DOPA 可以通过改善感觉运动、注意力、反应抑制和边缘处理来预防遇到触发因素时的 FOG,但也可能通过干扰纹状体的处理能力而导致 FOG。本研究表明,为了控制 PD 症状而服用的左旋多巴会引起仅在冻结者中静息状态下的功能连接变化。在干扰模型(蓝色)中,观察到 GPe、GPi、壳核和丘脑与认知、感觉运动和边缘皮质区域的功能连接增加(绿色)。我们的结果表明,左旋多巴可以使连接正常化类似于非冻结者,或增加连接以补偿功能障碍网络。

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