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期待、模糊性和行为灵活性:眶额皮质和杏仁核在处理奖励预期中的可分离和互补作用。

Expectancy, ambiguity, and behavioral flexibility: separable and complementary roles of the orbital frontal cortex and amygdala in processing reward expectancies.

机构信息

Department of Psychology, University of Colorado at Boulder, 345 UCB, Boulder, CO 80309, USA.

出版信息

J Cogn Neurosci. 2012 Feb;24(2):351-66. doi: 10.1162/jocn_a_00155. Epub 2011 Oct 17.

Abstract

Appetitive goal-directed behavior can be associated with a cue-triggered expectancy that it will lead to a particular reward, a process thought to depend on the OFC and basolateral amygdala complex. We developed a biologically informed neural network model of this system to investigate the separable and complementary roles of these areas as the main components of a flexible expectancy system. These areas of interest are part of a neural network with additional subcortical areas, including the central nucleus of amygdala, ventral (limbic) and dorsomedial (associative) striatum. Our simulations are consistent with the view that the amygdala maintains Pavlovian associations through incremental updating of synaptic strength and that the OFC supports flexibility by maintaining an activation-based working memory of the recent reward history. Our model provides a mechanistic explanation for electrophysiological evidence that cue-related firing in OFC neurons is nonselectively early after a contingency change and why this nonselective firing is critical for promoting plasticity in the amygdala. This ambiguous activation results from the simultaneous maintenance of recent outcomes and obsolete Pavlovian contingencies in working memory. Furthermore, at the beginning of reversal, the OFC is critical for supporting responses that are no longer inappropriate. This result is inconsistent with an exclusive inhibitory account of OFC function.

摘要

中文译文

有动机的目标导向行为可能与线索触发的期望有关,即它将导致特定的奖励,这一过程被认为依赖于外侧眶额皮质和基底外侧杏仁核复合体。我们开发了一个具有生物启发性的神经网络模型来研究这些区域作为灵活期望系统的主要组成部分的可分离和互补作用。这些感兴趣的区域是神经网络的一部分,包括杏仁核中央核、腹侧(边缘)和背侧(联合)纹状体等其他皮质下区域。我们的模拟结果与以下观点一致,即杏仁核通过突触强度的增量更新来维持巴甫洛夫式的联想,而外侧眶额皮质通过维持最近奖励历史的基于激活的工作记忆来支持灵活性。我们的模型为电生理证据提供了一种机制解释,即外侧眶额皮质神经元的线索相关放电在条件变化后不久是非选择性的,以及这种非选择性放电为什么对促进杏仁核的可塑性至关重要。这种模糊的激活是由于最近结果和过时的巴甫洛夫条件在工作记忆中的同时维持造成的。此外,在反转开始时,外侧眶额皮质对于支持不再适当的反应至关重要。这一结果与外侧眶额皮质功能的排他性抑制作用的观点不一致。

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