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Effects of Dopamine Medication on Sequence Learning with Stochastic Feedback in Parkinson's Disease

机译:多巴胺药物对帕金森病随机反馈序列学习的影响

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摘要

A growing body of evidence suggests that the midbrain dopamine system plays a key role in reinforcement learning and disruption of the midbrain dopamine system in Parkinson's disease (PD) may lead to deficits on tasks that require learning from feedback. We examined how changes in dopamine levels (“ON” and “OFF” their dopamine medication) affect sequence learning from stochastic positive and negative feedback using Bayesian reinforcement learning models. We found deficits in sequence learning in patients with PD when they were “ON” and “OFF” medication relative to healthy controls, but smaller differences between patients “OFF” and “ON”. The deficits were mainly due to decreased learning from positive feedback, although across all participant groups learning was more strongly associated with positive than negative feedback in our task. The learning in our task is likely mediated by the relatively depleted dorsal striatum and not the relatively intact ventral striatum. Therefore, the changes we see in our task may be due to a strong loss of phasic dopamine signals in the dorsal striatum in PD.
机译:越来越多的证据表明,中脑多巴胺系统在强化学习中起着关键作用,帕金森病(PD)中脑多巴胺系统的破坏可能导致需要反馈学习的任务不足。我们检查了多巴胺水平的变化(多巴胺药物的“开”和“关”)如何影响使用贝叶斯强化学习模型从随机正反馈和负反馈进行的序列学习。我们发现相对于健康对照,PD患者在“开”和“关”药物治疗时,序列学习方面存在缺陷,但“关”和“开”患者之间的差异较小。缺陷主要是由于从积极反馈中学习的减少,尽管在所有参与者组中,在我们的任务中学习与积极反馈相比,与消极反馈的关联更大。我们任务中的学习很可能是由相对耗竭的背侧纹状体而不是相对完整的腹侧纹状体介导的。因此,我们在任务中看到的变化可能是由于PD背侧纹状体中的多巴胺信号的强烈损失所致。

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