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Modeling Reconsolidation in Kernel Associative Memory

机译:内核关联内存中的模型重新整合

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摘要

Memory reconsolidation is a central process enabling adaptive memory and the perception of a constantly changing reality. It causes memories to be strengthened, weakened or changed following their recall. A computational model of memory reconsolidation is presented. Unlike Hopfield-type memory models, our model introduces an unbounded number of attractors that are updatable and can process real-valued, large, realistic stimuli. Our model replicates three characteristic effects of the reconsolidation process on human memory: increased association, extinction of fear memories, and the ability to track and follow gradually changing objects. In addition to this behavioral validation, a continuous time version of the reconsolidation model is introduced. This version extends average rate dynamic models of brain circuits exhibiting persistent activity to include adaptivity and an unbounded number of attractors.
机译:内存重新整合是一个中心过程,可启用自适应内存并感知不断变化的现实。它使记忆在回忆后得到增强,减弱或改变。提出了内存整合的计算模型。与Hopfield类型的内存模型不同,我们的模型引入了无限数量的可更新吸引子,它们可以处理实值,大型,逼真的刺激。我们的模型复制了重新整合过程对人类记忆的三个特征性影响:关联性增强,恐惧记忆的消亡以及跟踪和追踪逐渐变化的物体的能力。除了这种行为验证之外,还引入了重新整合模型的连续时间版本。此版本扩展了显示持续活动的大脑回路的平均速率动态模型,包括适应性和无限数量的吸引子。

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