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用于习惯、强迫行为和成瘾的背侧纹状体回路。

Dorsal Striatal Circuits for Habits, Compulsions and Addictions.

作者信息

Lipton David M, Gonzales Ben J, Citri Ami

机构信息

Edmond and Lily Safra Center for Brain Sciences, Hebrew University of Jerusalem, Jerusalem, Israel.

Zuckerman Postdoctoral Scholar, Jerusalem, Israel.

出版信息

Front Syst Neurosci. 2019 Jul 18;13:28. doi: 10.3389/fnsys.2019.00028. eCollection 2019.

Abstract

Here, we review the neural circuit bases of habits, compulsions, and addictions, behaviors which are all characterized by relatively automatic action performance. We discuss relevant studies, primarily from the rodent literature, and describe how major headway has been made in identifying the brain regions and neural cell types whose activity is modulated during the acquisition and performance of these automated behaviors. The dorsal striatum and cortical inputs to this structure have emerged as key players in the wider basal ganglia circuitry encoding behavioral automaticity, and changes in the activity of different neuronal cell-types in these brain regions have been shown to co-occur with the formation of automatic behaviors. We highlight how disordered functioning of these neural circuits can result in neuropsychiatric disorders, such as obsessive-compulsive disorder (OCD) and drug addiction. Finally, we discuss how the next phase of research in the field may benefit from integration of approaches for access to cells based on their genetic makeup, activity, connectivity and precise anatomical location.

摘要

在此,我们回顾习惯、强迫行为和成瘾行为的神经回路基础,这些行为的共同特征是动作表现相对自动化。我们讨论相关研究,主要来自啮齿动物文献,并描述在识别大脑区域和神经细胞类型方面取得的重大进展,这些区域和细胞类型的活动在这些自动化行为的习得和执行过程中受到调节。背侧纹状体及其皮质输入已成为更广泛的基底神经节回路中编码行为自动化的关键参与者,并且这些脑区中不同神经元细胞类型的活动变化已被证明与自动化行为的形成同时发生。我们强调这些神经回路的功能紊乱如何导致神经精神疾病,如强迫症(OCD)和药物成瘾。最后,我们讨论该领域的下一阶段研究如何受益于基于细胞的基因组成、活动、连接性和精确解剖位置来获取细胞的方法的整合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dca3/6657020/cdffb695ff97/fnsys-13-00028-g0001.jpg

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