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通过同步振荡在嗅觉信息处理中的球皮质相互作用。

Bulbocortical interplay in olfactory information processing via synchronous oscillations.

作者信息

Fukai T

机构信息

Department of Electronics, Tokai University, Kanagawa, Japan.

出版信息

Biol Cybern. 1996 Apr;74(4):309-17. doi: 10.1007/BF00194923.

Abstract

Emergence of synchronous oscillatory activity is an inherent feature of the olfactory systems of insects, mollusks and mammals. A class of simple computational models of the mammalian olfactory system consisting of olfactory bulb and olfactory cortex is constructed to explore possible roles of the related neural circuitry in olfactory information processing via synchronous oscillations. In the models, the bulbar neural circuitry is represented by a chain of oscillators and that of cortex is analogous to an associative memory network with horizontal synaptic connections. The models incorporate the backprojection from cortical units to the bulbar oscillators in particular ways. They exhibit rapid and robust synchronous oscillations in the presence of odorant stimuli, while they show either nonoscillatory states or propagating waves in the absence of stimuli, depending on the values of model parameters. In both models, the backprojection is shown to enhance the establishment of large-scale synchrony. The results suggest that the modulation of neural activity through centrifugal inputs may play an important role at the early stage of cortical information processing.

摘要

同步振荡活动的出现是昆虫、软体动物和哺乳动物嗅觉系统的一个固有特征。构建了一类由嗅球和嗅觉皮层组成的哺乳动物嗅觉系统的简单计算模型,以探索相关神经回路在通过同步振荡进行嗅觉信息处理中的可能作用。在这些模型中,球状神经回路由一串振荡器表示,而皮层的神经回路类似于具有水平突触连接的联想记忆网络。这些模型以特定方式纳入了从皮层单元到球状振荡器的反向投射。在存在气味刺激的情况下,它们表现出快速而稳健的同步振荡,而在没有刺激的情况下,根据模型参数的值,它们要么表现出非振荡状态,要么表现出传播波。在这两个模型中,反向投射都被证明能增强大规模同步的建立。结果表明,通过离心输入对神经活动的调制可能在皮层信息处理的早期阶段发挥重要作用。

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