帕金森病中冷冻的代谢联系。

IF 5 3区 医学 Q2 NEUROSCIENCES
Journal of Parkinson's disease Pub Date : 2025-02-01 Epub Date: 2024-12-27 DOI:10.1177/1877718X241305713
Céline Tard, Arnaud Delval, Luc Defebvre, Pierre Lenfant, David Devos, Caroline Moreau, Nacim Betrouni
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引用次数: 0

摘要

背景:步态冻结(FoG)是帕金森病最致残性的步态障碍之一。对其机制的充分认识需要网络研究方法。到目前为止,FoG的研究主要是通过磁共振成像,尤其是静息状态功能序列,这并不能完全反映大脑的实际变化。目的:利用位置发射断层扫描(PET)研究代谢网络。休息或步态后的探索结合延迟的示踪剂摄取被认为反映了实际的代谢变化。方法:26例停药状态的患者使用[18F]-氟脱氧葡萄糖进行两次PET成像,第一次是在休息30min后(休息状态),第二次是在真实步态30min后(步态状态)。12例患者在脑葡萄糖摄取过程中出现了真实的FoG。测量各组和各条件下的脑连接矩阵,然后进行比较。结果:在休息条件下,与非冷冻组相比,冷冻组大脑区域之间的代谢连通性整体降低。在步态过程中,观察到小脑、小脑皮层回路和顶叶-额叶区域的连通性增强,冻结组视觉皮层的高招募。然而,冻结组小脑网络内部的连通性仍然低于非冻结组,而冻结组枕额连通性更高。结论:研究直立位置下步态的真实冻结,强调了视觉皮层和小脑在步态问题中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Metabolic connectivity of freezing in Parkinson's disease.

BackgroundFreezing of gait (FoG) is among the most disabling gait disorders of Parkinson's disease. The full understanding of its mechanisms requires a network study approach. So far, FoG was mainly studied using magnetic resonance imaging, and especially using the resting state functional sequence, which does not completely reflect the brain actual modifications.ObjectiveThis study aims to investigate metabolic networks using position emission tomography (PET) imaging. Exploration after a rest or gait session combined with a delayed tracer's uptake are assumed to reflect the actual metabolism modifications.MethodsTwenty-six patients in the off-drug state underwent two PET imaging sessions using [18F]- fluorodeoxyglucose, the first after 30 min of rest (rest condition) and the second after 30 min of real gait (gait condition). Twelve patients presented real FoG during cerebral glucose uptake. Brain connectivity matrices were measured for each group and condition, and then compared.ResultsIn the rest condition, the freezing group showed globally reduced metabolic connectivity between brain regions compared to the non-freezing group. During gait, enhanced connectivity was observed in the cerebellum, cerebello-cortical loops and parieto-frontal regions, with high recruitment of the visual cortex in the freezing group. However, connectivity inside cerebellar networks remained lower in the freezing group than in the non-freezing group, while occipito-frontal connectivity was higher in the freezing group.ConclusionsStudying real freezing of gait in a vertical position emphasized the role of the visual cortex and cerebellum in gait problems.

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来源期刊
CiteScore
8.40
自引率
5.80%
发文量
338
审稿时长
>12 weeks
期刊介绍: The Journal of Parkinson''s Disease (JPD) publishes original research in basic science, translational research and clinical medicine in Parkinson’s disease in cooperation with the Journal of Alzheimer''s Disease. It features a first class Editorial Board and provides rigorous peer review and rapid online publication.
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