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Application of fourier analysis to the visibility of gratings

The Journal of Physiology · 1968 · Vol. 197(3) · pp. 551–566

Abstract

1. The contrast thresholds of a variety of grating patterns have been measured over a wide range of spatial frequencies.2. Contrast thresholds for the detection of gratings whose luminance profiles are sine, square, rectangular or saw-tooth waves can be simply related using Fourier theory.3. Over a wide range of spatial frequencies the contrast threshold of a grating is determined only by the amplitude of the fundamental Fourier component of its wave form.4. Gratings of complex wave form cannot be distinguished from sine-wave gratings until their contrast has been raised to a level at which the higher harmonic components reach their independent threshold.5. These findings can be explained by the existence within the nervous system of linearly operating independent mechanisms selectively sensitive to limited ranges of spatial frequencies.

Visual perception and processing mechanismsNeurobiology and Insect Physiology ResearchOcular and Laser Science ResearchSpatial frequencyGratingSine waveOpticsFourier transformContrast (vision)SineFourier analysisHarmonicAmplitude

MeSH terms

Form PerceptionHumansMathematics
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References
The contrast sensitivity of retinal ganglion cells of the cat
The Journal of Physiology · 1966 · 2,643 citations
Optical and retinal factors affecting visual resolution.
The Journal of Physiology · 1965 · 1,600 citations
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