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The Functional Role of Striatal Cholinergic Interneurons in Reinforcement Learning From Computational Perspective

机译:从计算的角度来看,纹状胆碱能神经元在强化学习中的功能作用

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In this study, we explore the functional role of striatal cholinergic interneurons, hereinafter referred to as tonically active neurons (TANs), via computational modeling; specifically, we investigate the mechanistic relationship between TAN activity and dopamine variations and how changes in this relationship affect reinforcement learning in the striatum. TANs pause their tonic firing activity after excitatory stimuli from thalamic and cortical neurons in response to a sensory event or reward information. During the pause striatal dopamine concentration excursions are observed. However, functional interactions between the TAN pause and striatal dopamine release are poorly understood. Here we propose a TAN activity-dopamine relationship model and demonstrate that the TAN pause is likely a time window to gate phasic dopamine release and dopamine variations reciprocally modulate the TAN pause duration. Furthermore, this model is integrated into our previously published model of reward-based motor adaptation to demonstrate how phasic dopamine release is gated by the TAN pause to deliver reward information for reinforcement learning in a timely manner. We also show how TAN-dopamine interactions are affected by striatal dopamine deficiency to produce poor performance of motor adaptation.
机译:在这项研究中,我们通过计算模型探索了纹状胆碱能中间神经元的功能作用,以下称其为声活动神经元。具体来说,我们调查TAN活性和多巴胺变化之间的机制关系,以及这种关系的变化如何影响纹状体中的强化学习。响应于感官事件或奖励信息,丘脑和皮层神经元受到兴奋性刺激后,TAN会停止其强壮的射击活动。在暂停期间,观察到纹状体多巴胺浓度偏移。但是,人们对TAN暂停和纹状体多巴胺释放之间的功能相互作用了解甚少。在这里,我们提出了TAN活性与多巴胺的关系模型,并证明TAN暂停可能是控制阶段性多巴胺释放的时间窗口,而多巴胺的变化相互调节TAN暂停持续时间。此外,此模型已集成到我们先前发布的基于奖励的运动适应模型中,以演示TAN暂停如何控制多巴胺的释放,从而及时提供奖励信息以进行强化学习。我们还显示了TAN-多巴胺相互作用如何受到纹状体多巴胺缺乏症的影响而产生不良的运动适应性。

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