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灵长类动物基底前脑处理奖励不确定性的多种机制。

Multiple Mechanisms for Processing Reward Uncertainty in the Primate Basal Forebrain.

作者信息

Ledbetter Noah M, Chen Charles D, Monosov Ilya E

机构信息

Department of Neuroscience, Washington University School of Medicine, St. Louis, Missouri 63110.

Department of Neuroscience, Washington University School of Medicine, St. Louis, Missouri 63110

出版信息

J Neurosci. 2016 Jul 27;36(30):7852-64. doi: 10.1523/JNEUROSCI.1123-16.2016.

Abstract

UNLABELLED

The ability to use information about the uncertainty of future outcomes is critical for adaptive behavior in an uncertain world. We show that the basal forebrain (BF) contains at least two distinct neural-coding strategies to support this capacity. The dorsal-lateral BF, including the ventral pallidum (VP), contains reward-sensitive neurons, some of which are selectively suppressed by uncertain-reward predictions (U(-)). In contrast, the medial BF (mBF) contains reward-sensitive neurons, some of which are selectively enhanced (U(+)) by uncertain-reward predictions. In a two-alternative choice-task, U(-) neurons were selectively suppressed while monkeys chose uncertain options over certain options. During the same choice-epoch, U(+) neurons signaled the subjective reward value of the choice options. Additionally, after the choice was reported, U(+) neurons signaled reward uncertainty until the choice outcome. We suggest that uncertainty-related suppression of VP may participate in the mediation of uncertainty-seeking actions, whereas uncertainty-related enhancement of the mBF may direct cognitive resources to monitor and learn from uncertain-outcomes.

SIGNIFICANCE STATEMENT

To survive in an uncertain world, we must approach uncertainty and learn from it. Here we provide evidence for two mostly distinct mechanisms for processing uncertainty about rewards within different subregions of the primate basal forebrain (BF). We found that uncertainty suppressed the representation of certain (or safe) reward values by some neurons in the dorsal-lateral BF, in regions occupied by the ventral pallidum. This uncertainty-related suppression was evident as monkeys made risky choices. We also found that uncertainty-enhanced the activity of many medial BF neurons, most prominently after the monkeys' choices were completed (as they awaited uncertain outcomes). Based on these findings, we propose that different subregions of the BF could support action and learning under uncertainty in distinct but complimentary manners.

摘要

未标注

在一个充满不确定性的世界中,利用有关未来结果不确定性的信息的能力对于适应性行为至关重要。我们表明,基底前脑(BF)包含至少两种不同的神经编码策略来支持这种能力。背外侧BF,包括腹侧苍白球(VP),包含对奖励敏感的神经元,其中一些神经元会被不确定奖励预测(U(-))选择性抑制。相比之下,内侧BF(mBF)包含对奖励敏感的神经元,其中一些神经元会被不确定奖励预测选择性增强(U(+))。在一个二选一的选择任务中,当猴子选择不确定选项而非确定选项时,U(-)神经元被选择性抑制。在同一选择阶段,U(+)神经元发出选择选项的主观奖励值信号。此外,在报告选择之后,U(+)神经元发出奖励不确定性信号,直到选择结果出现。我们认为,与不确定性相关的VP抑制可能参与了寻求不确定性行为的调节,而与不确定性相关的mBF增强可能会引导认知资源去监测并从不确定结果中学习。

意义声明

为了在一个充满不确定性的世界中生存,我们必须面对不确定性并从中学习。在这里,我们提供了证据,证明在灵长类动物基底前脑(BF)的不同亚区域中存在两种主要不同的机制来处理奖励的不确定性。我们发现,不确定性抑制了背外侧BF中某些神经元(位于腹侧苍白球所在区域)对确定(或安全)奖励值的表征。这种与不确定性相关的抑制在猴子做出冒险选择时很明显。我们还发现,不确定性增强了许多内侧BF神经元的活动,最显著的是在猴子完成选择之后(当它们等待不确定结果时)。基于这些发现,我们提出BF的不同亚区域可以以不同但互补的方式支持在不确定性下的行动和学习。

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