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Independent component filters of natural images compared with simple cells in primary visual cortex

Proceedings of the Royal Society B Biological Sciences · 1998 · Vol. 265(1394) · pp. 359–366
J. H. van HaterenA. van der Schaaf

Abstract

Properties of the receptive fields of simple cells in macaque cortex were compared with properties of independent component filters generated by independent component analysis (ICA) on a large set of natural images. Histograms of spatial frequency bandwidth, orientation tuning bandwidth, aspect ratio and length of the receptive fields match well. This indicates that simple cells are well tuned to the expected statistics of natural stimuli. There is no match, however, in calculated and measured distributions for the peak of the spatial frequency response: the filters produced by ICA do not vary their spatial scale as much as simple cells do, but are fixed to scales close to the finest ones allowed by the sampling lattice. Possible ways to resolve this discrepancy are discussed.

Neural dynamics and brain functionVisual perception and processing mechanismsBlind Source Separation TechniquesReceptive fieldVisual cortexMacaqueSpatial frequencyBandwidth (computing)HistogramBiological systemIndependent component analysisOrientation (vector space)Spatial filter

MeSH terms

AnimalsEidetic ImageryInformation TheoryMacacaNeuronsVisual CortexVisual Perception

Funding

  • Nederlandse Organisatie voor Wetenschappelijk Onderzoek
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References
A Fast Fixed-Point Algorithm for Independent Component Analysis
Neural Computation · 1997 · 3,396 citations
What Is the Goal of Sensory Coding?
Neural Computation · 1994 · 1,219 citations
Receptive fields and functional architecture of monkey striate cortex
The Journal of Physiology · 1968 · 6,597 citations
Spatial frequency selectivity of cells in macaque visual cortex
Vision Research · 1982 · 1,505 citations
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