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Noradrenergic and Cholinergic Modulation of Belief Updating

机译:信念更新的去甲肾上腺素能和胆碱能调节

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摘要

To make optimal predictions in a dynamic environment, the impact of new observations on existing beliefsthat is, the learning rateshould be guided by ongoing estimates of change and uncertainty. Theoretical work has proposed specific computational roles for various neuromodulatory systems in the control of learning rate, but empirical evidence is still sparse. The aim of the current research was to examine the role of the noradrenergic and cholinergic systems in learning rate regulation. First, we replicated our recent findings that the centroparietal P3 component of the EEGan index of phasic catecholamine release in the cortexpredicts trial-to-trial variability in learning rate and mediates the effects of surprise and belief uncertainty on learning rate (Study 1, n = 17). Second, we found that pharmacological suppression of either norepinephrine or acetylcholine activity produced baseline-dependent effects on learning rate following nonobvious changes in an outcome-generating process (Study 1). Third, we identified two genes, coding for 2A receptor sensitivity (ADRA2A) and norepinephrine reuptake (NET), as promising targets for future research on the genetic basis of individual differences in learning rate (Study 2, n = 137). Our findings suggest a role for the noradrenergic and cholinergic systems in belief updating and underline the importance of studying interactions between different neuromodulatory systems.
机译:为了在动态环境中做出最佳预测,新观察结果对现有信念(即学习率)的影响应以不断变化和不确定性的估计为指导。理论工作已经提出了各种神经调节系统在学习率控制中的特定计算作用,但是经验证据仍然很少。当前研究的目的是研究去甲肾上腺素能和胆碱能系统在学习率调节中的作用。首先,我们复制了我们最近的发现,即皮质中阶段性儿茶酚胺释放的EEGan指数的向心P3成分预测了学习率在试验之间的差异,并介导了惊喜和信念不确定性对学习率的影响(研究1,n = 17)。其次,我们发现,在产生结果的过程中没有明显变化之后,对去甲肾上腺素或乙酰胆碱活性的药理抑制作用会对学习率产生基线依赖性的影响(研究1)。第三,我们基于个体学习率差异的遗传基础,确定了编码2A受体敏感性(ADRA2A)和去甲肾上腺素再摄取(NET)的两个基因作为未来研究的有希望的目标(研究2,n = 137)。我们的研究结果表明去甲肾上腺素能和胆碱能系统在信念更新中的作用,并强调研究不同神经调节系统之间相互作用的重要性。

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