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情绪与记忆相互作用的模型。

A model of the interaction between mood and memory.

作者信息

Rolls E T, Stringer S M

机构信息

Department of Experimental Psychology, Oxford University, UK.

出版信息

Network. 2001 May;12(2):89-109.

Abstract

This paper investigates a neural network model of the interaction between mood and memory. The model has two attractor networks that represent the inferior temporal cortex (IT), which stores representations of visual stimuli, and the amygdala, the activity of which reflects the mood state. The two attractor networks are coupled by forward and backward projections. The model is however generic, and is relevant to understanding the interaction between different pairs of modules in the brain, particularly, as is the case with moods and memories, when there are fewer states represented in one module than in the other. During learning, a large number of patterns are presented to the IT, each paired with one of two mood states represented in the amygdala. The recurrent connections within each module, the forward connections from the memory module to the amygdala, and the backward connections from the amygdala to the memory module, are associatively modified. It is shown how the mood state in the amygdala can influence which memory patterns are recalled in the memory module. Further, it is shown that if there is an existing mood state in the amygdala, it can be difficult to change it even when a retrieval cue is presented to the memory module that is associated with a different mood state. It is also shown that the backprojections from the amygdala to the memory module must be relatively weak if memory retrieval in the memory module is not to be disrupted. The results are relevant to understanding the interaction between structures important in mood and emotion (such as the amygdala and orbitofrontal cortex) and other brain areas involved in storing objects and faces (such as the inferior temporal visual cortex) and memories (such as the hippocampus).

摘要

本文研究了情绪与记忆相互作用的神经网络模型。该模型有两个吸引子网络,分别代表存储视觉刺激表征的颞下回(IT)和其活动反映情绪状态的杏仁核。这两个吸引子网络通过前向和反向投射相互耦合。然而,该模型具有通用性,对于理解大脑中不同模块对之间的相互作用具有重要意义,特别是当一个模块中所代表的状态比另一个模块少时,就像情绪和记忆的情况一样。在学习过程中,大量模式被呈现给IT,每个模式都与杏仁核中所代表的两种情绪状态之一配对。每个模块内的循环连接、从记忆模块到杏仁核的前向连接以及从杏仁核到记忆模块的反向连接都会进行关联修改。研究表明了杏仁核中的情绪状态如何影响记忆模块中回忆起哪些记忆模式。此外,研究还表明,如果杏仁核中存在现有的情绪状态,即使向记忆模块呈现与不同情绪状态相关的检索线索,也可能难以改变它。研究还表明,如果要不干扰记忆模块中的记忆检索,从杏仁核到记忆模块的反向投射必须相对较弱。这些结果对于理解情绪和情感方面重要的结构(如杏仁核和眶额皮质)与其他参与存储物体和面孔(如颞下视觉皮质)以及记忆(如海马体)的脑区之间的相互作用具有重要意义。

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