Department of Psychology, University of Washington, Seattle, WA, United States.
Department of Psychology, University of Washington, Seattle, WA, United States.
Pharmacol Biochem Behav. 2017 Nov;162:62-68. doi: 10.1016/j.pbb.2017.07.012. Epub 2017 Aug 1.
The ability to rapidly switch behaviors in dynamic environments is fundamental to survival across species. Recognizing when an ongoing behavioral strategy should be replaced by an alternative one requires the integration of a diverse number of cues both internal and external to the organism including hunger, stress, or the presence of reward predictive cues. Increasingly sophisticated behavioral paradigms coupled with state of the art electrophysiological and pharmacological approaches have delineated a brain circuit involved in behavioral flexibility. However, how diverse contextual cues are integrated to influence strategy selection on a trial by trial basis remains largely unknown. One promising candidate for integration of internal and external cues to determine whether an ongoing behavioral strategy is appropriate is the lateral habenula (LHb). The LHb receives input from many brain areas that signal both internal and external environmental contexts and in turn projects to areas involved in behavioral monitoring and plasticity. This review examines how these connections, combined with recent pharmacological and electrophysiological results reveal a critical role for the LHb in behavioral flexibility in dynamic environments. This proposed role extends the known contributions of the LHb to motivated behaviors and suggests that the fundamental role of the LHb in these behaviors goes beyond signaling rewards and punishments to dopaminergic systems.
在动态环境中快速切换行为的能力是物种生存的基础。识别当前的行为策略是否应该被另一种策略替代,需要整合生物体内外部的多种线索,包括饥饿、压力或奖励预测线索的存在。越来越复杂的行为范式,加上最先进的电生理学和药理学方法,已经描绘出了一个参与行为灵活性的大脑回路。然而,不同的上下文线索如何整合,以影响每次试验的策略选择,在很大程度上仍然未知。一个有希望的候选者,用于整合内部和外部线索,以确定当前的行为策略是否合适,是外侧缰核(LHb)。LHb 接收来自许多大脑区域的输入,这些区域信号既包括内部环境线索,也包括外部环境线索,反过来又投射到参与行为监测和可塑性的区域。这篇综述探讨了这些连接,结合最近的药理学和电生理学结果,揭示了 LHb 在动态环境中行为灵活性中的关键作用。这种被提议的作用扩展了已知的 LHb 对动机行为的贡献,并表明 LHb 在这些行为中的基本作用不仅限于向多巴胺能系统发出奖励和惩罚信号。