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早期视觉运动处理的一种生物学上合理的模型。I:理论与实现

A biologically plausible model of early visual motion processing. I: theory and implementation.

作者信息

Gurney K, Wright M J

机构信息

Department of Psychology, University of Sheffield, UK.

出版信息

Biol Cybern. 1996 Apr;74(4):339-48. doi: 10.1007/BF00194926.

Abstract

A model of local image encoding is described which explicitly incorporates quantitative data about the number density, bandwidth and receptive field organisation of neurons involved in motion detection. The model solves the problem of extracting local velocity on the basis of inputs tuned to spatiotemporal frequency and sensitive to contrast. The spatiotemporally tuned, opponent motion filters are followed by a compressive non-linearity and comprise a first stage. The inter-stage signals are interpreted as those from single neurons and the second stage is modelled as a neural-network layer. The second stage uses semilinear units and models the effect of lateral, on-centre off-surround, intra-layer connections. Characterisation of the first stage leads to a clarification of the concept of the psychophysical 'channel' and its relation to physiological data. The quantitative parametrisation of the model allows the simulation of several psychophysical phenomena which are reported in a companion paper.

摘要

本文描述了一种局部图像编码模型,该模型明确纳入了有关参与运动检测的神经元的数量密度、带宽和感受野组织的定量数据。该模型解决了基于调谐到时空频率并对对比度敏感的输入来提取局部速度的问题。时空调谐的对立运动滤波器之后是一个压缩非线性,构成第一阶段。阶段间信号被解释为来自单个神经元的信号,第二阶段被建模为神经网络层。第二阶段使用半线性单元,并模拟侧向、中心开环外周、层内连接的效果。对第一阶段的表征有助于澄清心理物理学“通道”的概念及其与生理数据的关系。该模型的定量参数化允许模拟在一篇配套论文中报道的几种心理物理学现象。

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