A Model of the Plastic Neuron

V. Griffith
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引用次数: 4

Abstract

Substantial physiological evidence indicates that neuron thresholds and synaptic weights in living creatures are adjusted by mechanisms quite different from those that have ordinarily been proposed in neural net investigations. This paper presents a theoretical model of the plastic neuron in which threshold and synaptic weights are adjusted solely on the basis of the time history of afferent and efferent activity of the neuron. Physiological, psychological and mathematical evidence is presented which supports the postulate that each neuron in living creatures is an autonomous, dynamically self-adjusting unit which is advised (not directed) by higher centers during the adjustnent process. The model duplicates much of the behavior of neurons in experimental preparations, and simulations of small nets have yielded learning behavior apparently similar in some respects to that of living creatures.
可塑性神经元的模型
大量的生理证据表明,生物中神经元阈值和突触权重的调节机制与神经网络研究中通常提出的机制大不相同。本文提出了一个塑性神经元的理论模型,其中阈值和突触权值仅根据神经元的传入和传出活动的时间历史进行调整。生理、心理和数学证据都支持这样的假设,即生物中的每个神经元都是一个自主的、动态的自我调节单元,在调节过程中由更高的中心建议(而不是指导)。这个模型复制了实验准备中神经元的许多行为,对小网络的模拟已经产生了在某些方面与生物的学习行为明显相似的行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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