4.6 Review

Selective Dysfunction of Basal Ganglia Subterritories: From Movement to Behavioral Disorders

期刊

MOVEMENT DISORDERS
卷 30, 期 9, 页码 1155-1170

出版社

WILEY
DOI: 10.1002/mds.26199

关键词

basal ganglia; Parkinson's disease; Tourette's syndrome; nonhuman primate; MPTP; GABA inhibition; fast spiking interneurons; striatum; pallidum; deep brain stimulation; dopamine; serotonin; dyskinesia; impulse control disorders; dopamine dysregulation syndrome

资金

  1. French National Agency of Research [ANR-11-LABX-0042, ANH-11-IDLX-0007]

向作者/读者索取更多资源

Historically, Parkinson's disease (PD) was defined as a pure movement disorder. Currently, it is widely accepted that this disease is also characterized by nonmotor signs, such as depression, apathy, and anxiety. On the other hand, the consideration of Gilles de la Tourette syndrome (GTS) as a neuropsychiatric disorder has also been debated. In this review, we will focus on these two disorders, which combine both motor and behavioral features and in which dysfunction of cortical and subcortical regions was suggested. Anatomical, experimental, and clinical data are reported to support the involvement of basal ganglia (BG) in cognitive and motivational functions in addition to motor control. In PD, the nonmotor signs could result from the heterogeneity of dopanninergic lesions and excessive activation of the dopamine receptors, particularly within the limbic neuronal networks. Experimental results obtained on nonhuman primates using local disinhibition within functional territories of BG allowed the precise mapping of their motor and nonmotor functions. Thus, impairment of inhibitory control inside specific striatal territories induced behavioral disorders and abnormal movements, which had striking similarities to clinical expressions of GTS. Establishing such a relationship between BG sub-territories and motor and behavioral disorders could potentially be helpful for future target choices for DBS in many neuropsychiatric disorders. Furthermore, it is also of great interest for therapeutic research and for the efficient targeting of symptom relief to determine the precise pharmacological effects of the two main modulators of BG function, which are dopamine and serotonin. (C) 2015 International Parkinson and Movement Disorder Society

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