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首页> 外文期刊>CNS neuroscience & therapeutics. >Functional Connectivity of Vim Nucleus in Tremor‐ and Akinetic‐/Rigid‐Dominant Parkinson's Disease
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Functional Connectivity of Vim Nucleus in Tremor‐ and Akinetic‐/Rigid‐Dominant Parkinson's Disease

机译:Vim核在震颤和运动/刚性为主的帕金森氏病中的功能连接

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Summary Aims The aim of this study was to investigate the involvement of the ventral intermediate nucleus of thalamus (Vim) in the tremor‐ and akinetic‐/rigid‐related networks in Parkinson's disease ( PD ). Methods Tremor‐dominant ( TD ) and akinetic‐/rigid‐dominant ( ARD ) PD patients were recruited and scanned by resting‐state functional MRI . Functional connectivity from the Vim nucleus was analyzed. Results In the TD patients, the Vim nucleus exhibited increased connectivity with the cerebellum/dentate nucleus, primary motor cortex (M1), supplementary motor area ( SMA ), premotor cortex, thalamus, globus pallidus, putamen, and parietal cortex compared with the controls, while the connections between the Vim nucleus and M1 and cerebellum/dentate nucleus had positive correlations with the tremor scores. In the ARD patients, the Vim nucleus only showed enhanced connectivity with the globus pallidus and limbic lobe compared with the controls, and no connectivity showed correlation against the akinetic–rigidity scores. TD patients had increased connectivity with the Vim nucleus in the cerebellum, M1, SMA , thalamus, globus pallidus, putamen, and parietal cortex compared with ARD patients. Conclusions This study demonstrates that the Vim nucleus has an important role in the tremor‐related network, but not in the akinetic‐/rigid‐related network. Our finding is helpful to explain the selective effect of Vim deep brain stimulation in PD .
机译:概述目的本研究的目的是研究丘脑腹侧中间核(Vim)与帕金森氏病(PD)的震颤和运动/刚性相关网络的关系。方法募集动摇为主(TD)和运动/刚性为主(ARD)的PD患者,并通过静息态功能MRI进行扫描。分析了Vim核的功能连接性。结果在TD患者中,与对照相比,Vim核与小脑/齿状核,初级运动皮层(M1),辅助运动区(SMA),运动前皮层,丘脑,苍白球,壳状核和顶叶皮层的连接性增强。 ,而Vim核与M1和小脑/齿状核之间的联系与震颤分数呈正相关。在ARD患者中,与对照相比,Vim核仅显示与苍白球和边缘叶的连接性增强,并且没有连接性与运动刚度评分相关。与ARD患者相比,TD患者与小脑,M1,SMA,丘脑,苍白球,壳壳和顶叶皮层的Vim核的连接性增加。结论本研究表明,Vim核在震颤相关网络中起重要作用,而在运动/刚性相关网络中不起重要作用。我们的发现有助于解释Vim深层脑刺激在PD中的选择作用。

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