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一个V4形状选择性与不变性的模型。

A model of V4 shape selectivity and invariance.

作者信息

Cadieu Charles, Kouh Minjoon, Pasupathy Anitha, Connor Charles E, Riesenhuber Maximilian, Poggio Tomaso

机构信息

Center for Biological and Computational Learning, McGovern Institute, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.

出版信息

J Neurophysiol. 2007 Sep;98(3):1733-50. doi: 10.1152/jn.01265.2006. Epub 2007 Jun 27.

Abstract

Object recognition in primates is mediated by the ventral visual pathway and is classically described as a feedforward hierarchy of increasingly sophisticated representations. Neurons in macaque monkey area V4, an intermediate stage along the ventral pathway, have been shown to exhibit selectivity to complex boundary conformation and invariance to spatial translation. How could such a representation be derived from the signals in lower visual areas such as V1? We show that a quantitative model of hierarchical processing, which is part of a larger model of object recognition in the ventral pathway, provides a plausible mechanism for the translation-invariant shape representation observed in area V4. Simulated model neurons successfully reproduce V4 selectivity and invariance through a nonlinear, translation-invariant combination of locally selective subunits, suggesting that a similar transformation may occur or culminate in area V4. Specifically, this mechanism models the selectivity of individual V4 neurons to boundary conformation stimuli, exhibits the same degree of translation invariance observed in V4, and produces observed V4 population responses to bars and non-Cartesian gratings. This work provides a quantitative model of the widely described shape selectivity and invariance properties of area V4 and points toward a possible canonical mechanism operating throughout the ventral pathway.

摘要

灵长类动物的物体识别由腹侧视觉通路介导,传统上被描述为一个由日益复杂的表征构成的前馈层次结构。猕猴V4区是腹侧通路中的一个中间阶段,该区域的神经元已被证明对复杂边界构象具有选择性,并且对空间平移具有不变性。这样的表征是如何从诸如V1等较低视觉区域的信号中推导出来的呢?我们表明,作为腹侧通路中更大的物体识别模型一部分的层次处理定量模型,为在V4区观察到的平移不变形状表征提供了一种合理的机制。模拟的模型神经元通过局部选择性亚基的非线性、平移不变组合成功再现了V4区的选择性和不变性,这表明类似的转换可能在V4区发生或达到顶点。具体而言,该机制模拟了单个V4神经元对边界构象刺激的选择性,表现出与在V4区观察到的相同程度的平移不变性,并产生了观察到的V4区群体对条形和非笛卡尔光栅的反应。这项工作提供了一个关于V4区广泛描述的形状选择性和不变性特性的定量模型,并指向了一种可能在整个腹侧通路中起作用的典型机制。

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