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海马吸引子动力学预测基于记忆的决策。

Hippocampal Attractor Dynamics Predict Memory-Based Decision Making.

作者信息

Steemers Ben, Vicente-Grabovetsky Alejandro, Barry Caswell, Smulders Peter, Schröder Tobias Navarro, Burgess Neil, Doeller Christian F

机构信息

Donders Institute for Brain, Cognition and Behaviour, Radboud University, 6525 EN Nijmegen, the Netherlands; Laboratory of Neuropsychology, National Institute of Mental Health, NIH, Bethesda, MD 20892, USA.

Donders Institute for Brain, Cognition and Behaviour, Radboud University, 6525 EN Nijmegen, the Netherlands.

出版信息

Curr Biol. 2016 Jul 11;26(13):1750-1757. doi: 10.1016/j.cub.2016.04.063. Epub 2016 Jun 23.

Abstract

Memories are thought to be retrieved by attractor dynamics if a given input is sufficiently similar to a stored attractor state [1-5]. The hippocampus, a region crucial for spatial navigation [6-12] and episodic memory [13-18], has been associated with attractor-based computations [5, 9], receiving support from the way rodent place cells "remap" nonlinearly between spatial representations [19-22]. In humans, nonlinear response patterns have been reported in perceptual categorization tasks [23-25]; however, it remains elusive whether human memory retrieval is driven by attractor dynamics and what neural mechanisms might underpin them. To test this, we used a virtual reality [7, 11, 26-28] task where participants learned object-location associations within two distinct virtual reality environments. Participants were subsequently exposed to four novel intermediate environments, generated by linearly morphing the background landscapes of the familiar environments, while tracking fMRI activity. We show that linear changes in environmental context cause linear changes in activity patterns in sensory cortex but cause dynamic, nonlinear changes in both hippocampal activity pattern and remembered locations. Furthermore, the sigmoidal response in the hippocampus scaled with the strength of the sigmoidal pattern in spatial memory. These results indicate that mnemonic decisions in an ambiguous novel context relate to putative attractor dynamics in the hippocampus, which support the dynamic remapping of memories.

摘要

如果给定输入与存储的吸引子状态足够相似,记忆被认为是通过吸引子动力学来检索的[1-5]。海马体是对空间导航[6-12]和情景记忆[13-18]至关重要的区域,已与基于吸引子的计算相关联[5,9],从啮齿动物位置细胞在空间表征之间非线性“重新映射”的方式中得到支持[19-22]。在人类中,在感知分类任务中已报告了非线性反应模式[23-25];然而,人类记忆检索是否由吸引子动力学驱动以及哪些神经机制可能支持它们仍然难以捉摸。为了测试这一点,我们使用了虚拟现实[7,11,26-28]任务,参与者在两个不同的虚拟现实环境中学习物体-位置关联。随后,参与者接触到通过对熟悉环境的背景景观进行线性变形生成的四个新颖的中间环境,同时追踪功能磁共振成像活动。我们表明,环境背景的线性变化会导致感觉皮层活动模式的线性变化,但会导致海马体活动模式和记忆位置的动态、非线性变化。此外,海马体中的S形反应与空间记忆中S形模式的强度成比例。这些结果表明,在模糊的新颖背景下的记忆决策与海马体中假定的吸引子动力学有关,这支持了记忆的动态重新映射。

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