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在与目标相关的预测和编码过程中,海马体与决策神经回路的整合。

Integrative hippocampal and decision-making neurocircuitry during goal-relevant predictions and encoding.

作者信息

Mizumori Sheri J Y, Tryon Valerie L

机构信息

Psychology Department, University of Washington, Seattle, WA, USA.

Psychology Department, University of Washington, Seattle, WA, USA.

出版信息

Prog Brain Res. 2015;219:217-42. doi: 10.1016/bs.pbr.2015.03.010. Epub 2015 May 27.

Abstract

It has become clear that the hippocampus plays a critical role in the identification of new contexts and for the detection of changes in familiar contexts. The hippocampus accomplishes these goals through a continual process of comparing predicted features of a context or situation to those actually experienced. A mismatch between expected and experienced context expectations is thought to lead to the generation of a context prediction error (Mizumori, 2013) that functionally alerts connected brain areas to alter subsequent decision making and response selection. Little is understood about how hippocampal context analyses impact downstream decision processes. This issue is evaluated here first by comparing the nature of the information represented in hippocampus and decision-related midbrain-striatal structures, while rats perform a hippocampal-dependent spatial memory task in which rewards of different value are found at different locations. In contrast to place-specific and egocentric neural representations, neural representations of goal information are broadly distributed in hippocampal and decision neural circuitry, but they appear in different forms for different brain structures. It is suggested that further researching on how goal information processing occurs in hippocampus and decision neural circuitry may reveal insights into the nature of the interaction between memory and decision systems. The second part of this review describes neural pathways by which hippocampal context information might arrive within the decision circuit. The third section presents a hypothesis that the nature of the interactions between hippocampal and midbrain-striatal circuitry is regulated by the prefrontal cortex.

摘要

海马体在识别新环境以及检测熟悉环境中的变化方面起着关键作用,这一点已变得清晰明了。海马体通过持续不断地将环境或情境的预测特征与实际经历的特征进行比较来实现这些目标。预期与经历的环境期望之间的不匹配被认为会导致产生环境预测误差(水森,2013年),这在功能上会提醒相连的脑区改变后续的决策制定和反应选择。关于海马体的环境分析如何影响下游决策过程,我们了解得很少。在此,首先通过比较海马体以及与决策相关的中脑纹状体结构中所呈现信息的性质来评估这个问题,实验中大鼠执行一项依赖海马体的空间记忆任务,在不同位置可获得不同价值的奖励。与特定位置和以自我为中心的神经表征不同,目标信息的神经表征广泛分布于海马体和决策神经回路中,但在不同脑结构中呈现出不同形式。有人提出,进一步研究目标信息在海马体和决策神经回路中是如何处理的,可能会揭示记忆系统与决策系统之间相互作用的本质。本综述的第二部分描述了海马体环境信息可能到达决策回路的神经通路。第三部分提出了一个假说,即海马体与中脑纹状体回路之间相互作用的性质受前额叶皮质调节。

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