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Believer-Skeptic Meets Actor-Critic: Rethinking the Role of Basal Ganglia Pathways during Decision-Making and Reinforcement Learning

机译:怀疑论者遇到演员批评者:重新思考基础神经节通路在决策和强化学习中的作用

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摘要

The flexibility of behavioral control is a testament to the brain's capacity for dynamically resolving uncertainty during goal-directed actions. This ability to select actions and learn from immediate feedback is driven by the dynamics of basal ganglia (BG) pathways. A growing body of empirical evidence conflicts with the traditional view that these pathways act as independent levers for facilitating (i.e., direct pathway) or suppressing (i.e., indirect pathway) motor output, suggesting instead that they engage in a dynamic competition during action decisions that computationally captures action uncertainty. Here we discuss the utility of encoding action uncertainty as a dynamic competition between opposing control pathways and provide evidence that this simple mechanism may have powerful implications for bridging neurocomputational theories of decision making and reinforcement learning.
机译:行为控制的灵活性证明了大脑在目标定向动作中动态解决不确定性的能力。基底神经节(BG)通路的动力学驱动选择行动并从即时反馈中学习的能力。越来越多的经验证据与传统观点相冲突,传统观点认为,这些途径充当促进(即直接途径)或抑制(即间接途径)运动输出的独立杠杆,表明它们在行动决策过程中参与了动态竞争。以计算方式捕获动作不确定性。在这里,我们讨论了将动作不确定性编码为相对控制路径之间的动态竞争的效用,并提供了证据,证明这种简单的机制可能对桥接决策和强化学习的神经计算理论具有强大的意义。

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