A A Spiking Model of Cell Assemblies: Short Term and Associative Memory

Christian Huyck
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Abstract

Cell Assemblies are the neural basis of both long and short term memories. Cell Assemblies, whose neurons persistently fire, are active short term memories while the neurons are firing, and the memory ceases to be active when the neurons stop firing. This paper provides simulations of excitatory spiking neurons with small world topologies that persist for several hundred milliseconds. Extending this model to include short term depression allows the Cell Assemblies to persist for several seconds, a reasonable psychological duration. These Cell Assemblies are combined in a simple associative memory so that when three Cell Assemblies are associated, ignition of two causes the third to ignite, while pairs of un-associated Cell Assemblies do not lead to the ignition of other Cell Assemblies. This mechanism has a larger capacity than a Hopfield net. The simulations provide a simple neurally based simulation model of short term and associative memory. A discussion of the current psychological theories, other mechanisms for short term memory, the strengths and weaknesses of the paper's simulated models, and proposed challenges are also provided.
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细胞组合的峰值模型:短期记忆和联想记忆
细胞组合是长期和短期记忆的神经基础。神经元持续放电的细胞集合在神经元放电时是活跃的短期记忆,当神经元停止放电时,记忆就不再活跃。本文提供了具有小世界拓扑结构的兴奋性尖峰神经元的模拟,其持续时间为几百毫秒。将这个模型扩展到包括短期抑郁允许细胞集合持续几秒钟,这是一个合理的心理持续时间。这些细胞组件组合在一个简单的联想存储器中,因此当三个细胞组件相关联时,两个细胞组件的点燃会导致第三个细胞组件点燃,而对未关联的细胞组件不会导致其他细胞组件的点燃。这种机制比Hopfield网络具有更大的容量。这些模拟提供了一个简单的基于神经的短期记忆和联想记忆模拟模型。本文还讨论了当前的心理学理论、短期记忆的其他机制、本文模拟模型的优缺点以及提出的挑战。
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