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纹状体腹侧和背侧的假定胆碱能中间神经元在二选一的关联任务中具有不同的作用。

Putative cholinergic interneurons in the ventral and dorsal regions of the striatum have distinct roles in a two choice alternative association task.

机构信息

Gonda Interdisciplinary Brain Research Center, Bar Ilan University Ramat-Gan, Israel.

出版信息

Front Syst Neurosci. 2011 May 31;5:36. doi: 10.3389/fnsys.2011.00036. eCollection 2011.

Abstract

The striatum consists of GABAergic projection neurons and various types of interneurons. Despite their relative scarcity, these interneurons play a key role in information processing in the striatum. One such class of interneurons is the cholinergic tonically active neurons (TANs). In the dorsal striatum, TANs are traditionally considered to be responsive to events of motivational significance. However, in recent years, studies have suggested that TANs are not exclusively related to reward and reward-predicting stimuli, but may contribute to other processes, including responses to aversive stimuli, detecting the spatial location of stimuli and generating movement. Currently there is little data concerning TAN activity in the ventral striatum (VS) of behaving animals. Here, we simultaneously recorded neurons in the ventral and the dorsolateral (DLS) regions of the striatum while animals performed a two choice alternative association task. Our data show that a large percentage of the putative TANs in both regions responded around movement initiation and execution. The majority of these neurons exhibited directional selectivity which was stronger in DLS relative to VS. In addition, the preferred directions in VS were mostly contralateral to the recording site whereas the observed preferred directions in DLS were equally distributed contralaterally and ipsilaterally to the recording site. The most interesting difference between DLS and VS was that DLS TANs maintained activity alterations throughout the movement whereas TANs in VS exhibited short-lasting phasic activity alterations that were maintained throughout the movement by different neurons. Our findings suggest that coding of movement by TANs in both regions overlaps to some degree, yet the differences in response patterns support the notion that the TANs in DLS participate in the motor loop whereas TANs in VS convey event-related information such as movement initiation, movement direction, and end of movement.

摘要

纹状体由 GABA 能投射神经元和各种类型的中间神经元组成。尽管它们相对较少,但这些中间神经元在纹状体的信息处理中起着关键作用。其中一类中间神经元是胆碱能持续活动神经元(TANs)。在背侧纹状体中,TANs传统上被认为对具有动机意义的事件有反应。然而,近年来的研究表明,TANs 不仅与奖励和奖励预测刺激有关,而且可能有助于其他过程,包括对厌恶刺激的反应、检测刺激的空间位置和产生运动。目前关于行为动物腹侧纹状体(VS)中 TAN 活动的数据很少。在这里,我们在动物执行两项选择替代关联任务时,同时记录了纹状体腹侧和背外侧(DLS)区域的神经元。我们的数据表明,两个区域中的大部分假定 TANs 在运动开始和执行时都有反应。这些神经元中的大多数表现出方向性选择性,DLS 中的方向性选择性比 VS 更强。此外,VS 中的首选方向主要与记录部位相反,而 DLS 中观察到的首选方向则均匀分布在记录部位的对侧和同侧。DLS 和 VS 之间最有趣的区别是,DLS 的 TANs 在整个运动过程中保持活动改变,而 VS 的 TANs 表现出短暂的相位活动改变,这些改变由不同的神经元在整个运动过程中维持。我们的发现表明,两个区域的 TAN 对运动的编码在某种程度上重叠,但反应模式的差异支持 DLS 中的 TAN 参与运动环,而 VS 中的 TAN 传递与事件相关的信息,如运动开始、运动方向和运动结束的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d80/3106210/8b6609ed95b9/fnsys-05-00036-g001.jpg

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