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Journal ArticleDOI

Contrast in complex images.

Eli Peli
- 01 Oct 1990 - 
- Vol. 7, Iss: 10, pp 2032-2040
TLDR
A definition of local band-limited contrast in images is proposed that assigns a contrast value to every point in the image as a function of the spatial frequency band and is helpful in understanding the effects of image-processing algorithms on the perceived contrast.
Abstract
The physical contrast of simple images such as sinusoidal gratings or a single patch of light on a uniform background is well defined and agrees with the perceived contrast, but this is not so for complex images. Most definitions assign a single contrast value to the whole image, but perceived contrast may vary greatly across the image. Human contrast sensitivity is a function of spatial frequency; therefore the spatial frequency content of an image should be considered in the definition of contrast. In this paper a definition of local band-limited contrast in images is proposed that assigns a contrast value to every point in the image as a function of the spatial frequency band. For each frequency band, the contrast is defined as the ratio of the bandpass-filtered image at the frequency to the low-pass image filtered to an octave below the same frequency (local luminance mean). This definition raises important implications regarding the perception of contrast in complex images and is helpful in understanding the effects of image-processing algorithms on the perceived contrast. A pyramidal image-contrast structure based on this definition is useful in simulating nonlinear, threshold characteristics of spatial vision in both normal observers and the visually impaired.

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Citations
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Journal ArticleDOI

Accounting for speed of sound variations in volumetric hand-held optoacoustic imaging

TL;DR: An efficient graphics processing unit (GPU)-based reconstruction framework is further proposed to mitigate the SoS-related image quality degradation without compromising the high-frame-rate volumetric imaging performance of the method, essential for real-time visualization during hand-held scans.
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Color constancy for visual compensation of projector displayed image

TL;DR: It is argued that depending on the target application, the computational color constancy can be specified at different steps of the formation scheme of the sensed image by a human and that the resulting transformations cannot be explained by von Kries theory.
Dissertation

The role of near adaptation in myopia development

TL;DR: The authors found that children who spend prolonged periods reading at a young age are most vulnerable to near-work induced adaptations and hence near work induced myopia, and that these adaptations are likely to occur for all types of common reading texts.
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The Effect of Fractal Contact Lenses on Peripheral Refraction in Myopic Model Eyes

TL;DR: FCLs have several design parameters that can be varied to obtain optimum results: lens diameter, number of zones, addition and asphericity; resulting in a very promising customized lens for the treatment of myopia progression.
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A novel approach for enhancement of geometric and contrast resolution properties of low contrast images

TL;DR: A new image enhancement algorithm using newly constructed Chebyshev fractional order differentiator is encompasses and the visual results obtained are encouraging for image enhancement.
References
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Journal ArticleDOI

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Journal ArticleDOI

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TL;DR: Among other things, it is shown that many stirate cells have quite narrow spatial bandwidths and at a given retinal eccentricity, the distribution of peak frequency covers a wide range of frequencies; these findings support the basic multiple channel notion.
Journal ArticleDOI

Feature Detection in Human Vision: A Phase-Dependent Energy Model

TL;DR: A simple and biologically plausible model of how mammalian visual systems could detect and identify features in an image is presented and it is suggested that the points in a waveform that have unique perceptual significance as ‘lines’ and ‘edges’ are the points where the Fourier components of the waveform come into phase with each other.
Journal ArticleDOI

Contrast constancy: deblurring in human vision by spatial frequency channels.

TL;DR: It is argued that spatial frequency channels in the visual cortex are organized to compensate for earlier attenuation, and achieves a dramatic 'deblurring' of the image, and optimizes the clarity of vision.
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