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嗅球中的动态现象。

Dynamic phenomena in the olfactory bulb.

作者信息

Gröbler T, Erdi P

机构信息

KFKI Research Institute for Particle and Nuclear Physics, Hungarian Academy of Sciences, Budapest.

出版信息

Acta Biochim Biophys Hung. 1991;26(1-4):61-5.

PMID:1844800
Abstract

A mathematical model of the olfactory bulb is presented to study the dynamics of the bulbar information processing. A two level model is adopted to describe both neural activity and synaptic modifiability. The model takes explicitly into account the existence of lateral interactions in the mitral layer, and the synaptic modifiability of these connections. A series of bifurcation phenomena among fix points, limit cycle and strange attractors have been demonstrated. Chaos occurred only in the case of excitatory lateral connections. Coexistence between oscillation and chaos, and synaptic modification induced transition have also been found. The model attempts to demonstrate the associative memory character of the olfactory bulb. Odour qualities are coded in distributed spatial amplitude patterns. Differential equations for the mitral and granule cell activities have been supplemented by a continuous-time local learning rule. A nonlinear forgetting term and a selective decreasing term is added to the Hebbian learning rule. A learned odour can be recalled by a subset of the pattern. There is a strict restriction on the parameters: only those values can be admitted which generate physiologically justified activity signals.

摘要

提出了一种嗅球数学模型,用于研究嗅球信息处理的动力学。采用两级模型来描述神经活动和突触可塑性。该模型明确考虑了二尖瓣层中横向相互作用的存在以及这些连接的突触可塑性。已证明在不动点、极限环和奇怪吸引子之间存在一系列分岔现象。混沌仅在兴奋性横向连接的情况下出现。还发现了振荡与混沌之间的共存以及突触修饰诱导的转变。该模型试图展示嗅球的联想记忆特性。气味质量以分布式空间振幅模式编码。二尖瓣和颗粒细胞活动的微分方程已由连续时间局部学习规则补充。在赫布学习规则中添加了非线性遗忘项和选择性递减项。通过模式的一个子集可以回忆起学习到的气味。对参数有严格限制:只有那些能产生生理上合理活动信号的值才被允许。

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