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使用超完备基集的稀疏编码:V1区采用的一种策略?

Sparse coding with an overcomplete basis set: a strategy employed by V1?

作者信息

Olshausen B A, Field D J

机构信息

Department of Psychology, Cornell University, Ithaca, NY 14853, USA.

出版信息

Vision Res. 1997 Dec;37(23):3311-25. doi: 10.1016/s0042-6989(97)00169-7.

Abstract

The spatial receptive fields of simple cells in mammalian striate cortex have been reasonably well described physiologically and can be characterized as being localized, oriented, and bandpass, comparable with the basis functions of wavelet transforms. Previously, we have shown that these receptive field properties may be accounted for in terms of a strategy for producing a sparse distribution of output activity in response to natural images. Here, in addition to describing this work in a more expansive fashion, we examine the neurobiological implications of sparse coding. Of particular interest is the case when the code is overcomplete--i.e., when the number of code elements is greater than the effective dimensionality of the input space. Because the basis functions are non-orthogonal and not linearly independent of each other, sparsifying the code will recruit only those basis functions necessary for representing a given input, and so the input-output function will deviate from being purely linear. These deviations from linearity provide a potential explanation for the weak forms of non-linearity observed in the response properties of cortical simple cells, and they further make predictions about the expected interactions among units in response to naturalistic stimuli.

摘要

哺乳动物纹状皮层中简单细胞的空间感受野在生理学上已得到较为充分的描述,其特征可被描述为具有局部性、方向性和带通性,这与小波变换的基函数类似。此前,我们已经表明,这些感受野特性可以通过一种策略来解释,即针对自然图像产生稀疏的输出活动分布。在此,除了以更全面的方式描述这项工作外,我们还研究了稀疏编码的神经生物学意义。特别值得关注的是编码超完备的情况——即当编码元素的数量大于输入空间的有效维度时。由于基函数是非正交的且彼此之间不是线性独立的,对编码进行稀疏化将只调用那些表示给定输入所需的基函数,因此输入 - 输出函数将偏离纯线性。这些与线性的偏差为在皮层简单细胞的反应特性中观察到的弱形式非线性提供了一种潜在解释,并且它们进一步对响应自然刺激时单元之间的预期相互作用做出了预测。

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