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Journal Article

Cholinergic relevant functional reactivity is associated with dopamine responsiveness of tremor in Parkinson’s disease

Jingjing Wu; Cheng Zhou; Tao Guo; Xiaojun Guan; Ting Gao; Xueqin Bai; Haoting Wu; Jingwen Chen; Jiaqi Wen; Xiaocao Liu; Luyan Gu; Zhe Song; Min Xuan; Quanquan Gu; Peiyu Huang; Jiali Pu; Baorong Zhang; Xiaojun Xu; Minming Zhang
Brain Imaging and Behavior · Vol. 16, Issue 3 · pp. 1234-1245 · 2022

Abstract

Tremor in Parkinson’s disease (PD) has distinct responsiveness to dopamine, which is supposed not be exclusively related to dopamine deficiency but has a close relationship with cholinergic system. This phenomenon indicates that cholinergic system may be an important regulatory for distinct dopamine responsiveness of parkinsonian tremor. Through investigating the alterations of cholinergic and dopaminergic network during levodopa administration, we aimed at exploring the mechanisms of differed dopamine responsiveness of parkinsonian tremor. Fifty-two PD patients with tremor were enrolled. MRI scanning, UPDRS III and its sub-symptom scores were collected in OFF and ON status (dopaminergic challenge test). Then, patients were divided into two groups (dopamine-resistant tremor and dopamine-responsive tremor) according to the tremor change rate median score. Dopaminergic and cholinergic network were obtained. LASSO regression was conducted to identify functional connectivity with distinct reactivity during levodopa administration between groups. Afterwards, detailed group comparisons, interaction and correlation analyses were performed. The reactivity of cholinergic connectivity showed the highest possibility to distinguish two groups, especially connectivity of right basal forebrain 123 to right parietal operculum cortex (R.BF123-R.PO). After levodopa administration, connectivity of R.BF123-R.PO was decreased for dopamine-responsive tremor while which remained unchanged for dopamine-resistant tremor. The reactivity of R.BF123-R.PO was negatively correlated with tremor change rate. Reduced cholinergic connectivity to parietal operculum may be an underlying mechanism for the responsive tremor in PD and the distinct cholinergic reactivity of parietal operculum to levodopa may be a core pathophysiology for the differed DA responsiveness of tremor in PD.

Bibliographic Information

JournalBrain Imaging and Behavior
PublisherSpringer
Publication Date2022-06-01
Publication Year2022
Volume16
Issue3
Pages1234-1245
Document TypeJournal Article
eISSN1931-7565
DOI10.1007/s11682-021-00610-9

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NARA Access Coverage2007-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11682
Publisher PageOpen Publisher Page
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