Grella Stephanie L, Donaldson Tia N
MNEME Lab, Department of Psychology, Program in Neuroscience, Loyola University Chicago, Chicago, IL, United States.
Systems Neuroscience and Behavior Lab, Department of Psychology, The University of New Mexico, Albuquerque, NM, United States.
Front Mol Neurosci. 2024 Feb 5;17:1342622. doi: 10.3389/fnmol.2024.1342622. eCollection 2024.
Here, we review the basis of contextual memory at a conceptual and cellular level. We begin with an overview of the philosophical foundations of traversing space, followed by theories covering the material bases of contextual representations in the hippocampus (engrams), exploring functional characteristics of the cells and subfields within. Next, we explore various methodological approaches for investigating contextual memory engrams, emphasizing plasticity mechanisms. This leads us to discuss the role of neuromodulatory inputs in governing these dynamic changes. We then outline a recent hypothesis involving noradrenergic and dopaminergic projections from the locus coeruleus (LC) to different subregions of the hippocampus, in sculpting contextual representations, giving a brief description of the neuroanatomical and physiological properties of the LC. Finally, we examine how activity in the LC influences contextual memory processes through synaptic plasticity mechanisms to alter hippocampal engrams. Overall, we find that phasic activation of the LC plays an important role in promoting new learning and altering mnemonic processes at the behavioral and cellular level through the neuromodulatory influence of NE/DA in the hippocampus. These findings may provide insight into mechanisms of hippocampal remapping and memory updating, memory processes that are potentially dysregulated in certain psychiatric and neurodegenerative disorders.
在此,我们从概念和细胞层面回顾情境记忆的基础。我们首先概述穿越空间的哲学基础,接着阐述涵盖海马体中情境表征物质基础(记忆印记)的理论,探讨其中细胞和子区域的功能特征。接下来,我们探索研究情境记忆印记的各种方法,重点强调可塑性机制。这使我们讨论神经调节输入在控制这些动态变化中的作用。然后,我们概述了一个近期的假说,即涉及从蓝斑(LC)到海马体不同子区域的去甲肾上腺素能和多巴胺能投射在塑造情境表征中的作用,并简要描述了蓝斑的神经解剖学和生理学特性。最后,我们研究蓝斑中的活动如何通过突触可塑性机制影响情境记忆过程,以改变海马体记忆印记。总体而言,我们发现蓝斑的相位激活通过海马体中去甲肾上腺素/多巴胺的神经调节作用,在行为和细胞层面促进新学习和改变记忆过程中发挥重要作用。这些发现可能为海马体重映射和记忆更新机制提供见解,而这些记忆过程在某些精神疾病和神经退行性疾病中可能失调。