Striatal and hippocampal contributions to flexible navigation in rats and humans.

Brain and neuroscience advances Pub Date : 2020-12-21 eCollection Date: 2020-01-01 DOI:10.1177/2398212820979772
Christoffer J Gahnstrom, Hugo J Spiers
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引用次数: 0

Abstract

The hippocampus has been firmly established as playing a crucial role in flexible navigation. Recent evidence suggests that dorsal striatum may also play an important role in such goal-directed behaviour in both rodents and humans. Across recent studies, activity in the caudate nucleus has been linked to forward planning and adaptation to changes in the environment. In particular, several human neuroimaging studies have found the caudate nucleus tracks information traditionally associated with that by the hippocampus. In this brief review, we examine this evidence and argue the dorsal striatum encodes the transition structure of the environment during flexible, goal-directed behaviour. We highlight that future research should explore the following: (1) Investigate neural responses during spatial navigation via a biophysically plausible framework explained by reinforcement learning models and (2) Observe the interaction between cortical areas and both the dorsal striatum and hippocampus during flexible navigation.

Abstract Image

Abstract Image

纹状体和海马对大鼠和人类灵活导航的贡献
海马体在灵活导航中发挥着至关重要的作用,这一点已得到证实。最近的证据表明,背侧纹状体也可能在啮齿动物和人类的这种目标导向行为中发挥重要作用。在最近的研究中,尾状核的活动与前瞻性规划和适应环境变化有关。特别是,几项人类神经影像学研究发现,尾状核追踪的信息传统上与海马相关。在这篇简短的综述中,我们研究了这些证据,并认为背侧纹状体在灵活的目标导向行为中编码了环境的过渡结构。我们强调,未来的研究应探索以下内容:(1)通过强化学习模型解释的生物物理上合理的框架,调查空间导航过程中的神经反应;(2)观察灵活导航过程中大脑皮层区域与背侧纹状体和海马之间的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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