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缰核与杏仁核功能障碍在帕金森病伴强迫性重复行为患者中的作用

Role of habenula and amygdala dysfunction in Parkinson disease patients with punding.

作者信息

Markovic Vladana, Agosta Federica, Canu Elisa, Inuggi Alberto, Petrovic Igor, Stankovic Iva, Imperiale Francesca, Stojkovic Tanja, Kostic Vladimir S, Filippi Massimo

机构信息

From the Neuroimaging Research Unit (V.M., F.A., E.C., F.I., M.F.) and Department of Neurology, Institute of Experimental Neurology, Division of Neuroscience (M.F.), San Raffaele Scientific Institute, Vita-Salute San Raffaele University, Milan, Italy; Clinic of Neurology, School of Medicine (V.M., I.P., I.S., T.S., V.S.K.), University of Belgrade, Serbia; and Unit of Robotics, Brain and Cognitive Sciences (A.I.), Istituto Italiano di Tecnologia, Genoa, Italy.

出版信息

Neurology. 2017 Jun 6;88(23):2207-2215. doi: 10.1212/WNL.0000000000004012. Epub 2017 May 10.

Abstract

OBJECTIVE

To assess whether a functional dysregulation of the habenula and amygdala, as modulators of the reward brain circuit, contributes to Parkinson disease (PD) punding.

METHODS

Structural and resting-state functional MRI were obtained from 22 patients with PD punding, 30 patients with PD without any impulsive-compulsive behavior (ICB) matched for disease stage and duration, motor impairment, and cognitive status, and 30 healthy controls. Resting-state functional connectivity of the habenula and amygdala bilaterally was assessed using a seed-based approach. Habenula and amygdala volumes and cortical thickness measures were obtained.

RESULTS

Compared to both healthy controls and PD cases without any ICB (PD-no ICB), PD-punding patients showed higher functional connectivity of habenula and amygdala with thalamus and striatum bilaterally, and lower connectivity between bilateral habenula and left frontal and precentral cortices. In PD-punding relative to PD-no ICB patients, a lower functional connectivity between right amygdala and hippocampus was also observed. Habenula and amygdala volumes were not different among groups. PD-punding patients showed a cortical thinning of the left superior frontal and precentral gyri and right middle temporal gyrus and isthmus cingulate compared to healthy controls, and of the right inferior frontal gyrus compared to both controls and PD-no ICB patients.

CONCLUSIONS

A breakdown of the connectivity among the crucial nodes of the reward circuit (i.e., habenula, amygdala, basal ganglia, frontal cortex) might be a contributory factor to punding in PD. This study provides potential instruments to detect and monitor punding in patients with PD.

摘要

目的

评估作为奖赏脑回路调节因子的缰核和杏仁核功能失调是否与帕金森病(PD)的刻板行为有关。

方法

对22例有刻板行为的PD患者、30例疾病分期、病程、运动障碍及认知状态相匹配但无任何冲动强迫行为(ICB)的PD患者以及30名健康对照者进行了结构和静息态功能磁共振成像检查。采用基于种子点的方法评估双侧缰核和杏仁核的静息态功能连接。测量了缰核和杏仁核的体积以及皮质厚度。

结果

与健康对照者和无任何ICB的PD患者(PD-无ICB)相比,有刻板行为的PD患者双侧缰核和杏仁核与丘脑及纹状体的功能连接更高,而双侧缰核与左侧额叶和中央前回皮质之间的连接更低。与PD-无ICB患者相比,有刻板行为的PD患者右侧杏仁核与海马之间的功能连接也更低。各组之间缰核和杏仁核的体积没有差异。与健康对照者相比,有刻板行为的PD患者左侧额上回和中央前回、右侧颞中回及扣带回峡部的皮质变薄,与对照者和PD-无ICB患者相比,右侧额下回皮质变薄。

结论

奖赏回路关键节点(即缰核、杏仁核、基底神经节、额叶皮质)之间的连接中断可能是PD患者出现刻板行为的一个促成因素。本研究为检测和监测PD患者的刻板行为提供了潜在手段。

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