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Optimal defocus estimation in individual natural images

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TLDR
A principled general framework for analyzing the psychophysics and neurophysiology of defocus estimation in species across the animal kingdom and for developing optimal image-based defocus and depth estimation algorithms for computational vision systems is provided.
Abstract
Defocus blur is nearly always present in natural images: Objects at only one distance can be perfectly focused. Images of objects at other distances are blurred by an amount depending on pupil diameter and lens properties. Despite the fact that defocus is of great behavioral, perceptual, and biological importance, it is unknown how biological systems estimate defocus. Given a set of natural scenes and the properties of the vision system, we show from first principles how to optimally estimate defocus at each location in any individual image. We show for the human visual system that high-precision, unbiased estimates are obtainable under natural viewing conditions for patches with detectable contrast. The high quality of the estimates is surprising given the heterogeneity of natural images. Additionally, we quantify the degree to which the sign ambiguity often attributed to defocus is resolved by monochromatic aberrations (other than defocus) and chromatic aberrations; chromatic aberrations fully resolve the sign ambiguity. Finally, we show that simple spatial and spatio-chromatic receptive fields extract the information optimally. The approach can be tailored to any environment–vision system pairing: natural or man-made, animal or machine. Thus, it provides a principled general framework for analyzing the psychophysics and neurophysiology of defocus estimation in species across the animal kingdom and for developing optimal image-based defocus and depth estimation algorithms for computational vision systems.

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Journal ArticleDOI

A Bayesian observer model constrained by efficient coding can explain 'anti-Bayesian' percepts

TL;DR: A new model formulation based on efficient coding that is fully specified for any given natural stimulus distribution is proposed that predicts that perception is often biased away from an observer's prior beliefs and that stimulus uncertainty differentially affects perceptual bias depending on whether the uncertainty is induced by internal or external noise.
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Natural auditory scene statistics shapes human spatial hearing

TL;DR: It is shown that pitch borrows its spatial connotation from the statistics of natural auditory scenes, suggesting that all such diverse phenomena, such as the convoluted shape of the outer ear, the universal use of spatial terms for describing pitch, or the reason why high notes are represented higher in musical notation, ultimately reflect adaptation to the Statistics ofnatural auditory scenes.
Journal ArticleDOI

Blur and Disparity Are Complementary Cues to Depth

TL;DR: Disparity was more precise near fixation and blur was indeed more precise away from fixation, which lead to a new hypothesis about the evolution of slit-shaped pupils and have implications for the design and implementation of stereo 3D displays.
Journal ArticleDOI

Optimal disparity estimation in natural stereo images

TL;DR: By analyzing the photoreceptor responses to natural images, this work provides a normative account of the neurophysiology and psychophysics of absolute disparity processing and reveals how selective invariant tuning-especially for properties not trivially available in the retinal images-could be implemented in neural systems to maximize performance in particular tasks.
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Why do animal eyes have pupils of different shapes

TL;DR: A novel explanation of why certain pupil shapes are visually advantageous for terrestrial animals in different ecological niches, including vertically and horizontally elongated pupils.
References
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Joseph W. Goodman, +1 more
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TL;DR: The striate cortex was studied in lightly anaesthetized macaque and spider monkeys by recording extracellularly from single units and stimulating the retinas with spots or patterns of light, with response properties very similar to those previously described in the cat.
Book

Color Science. Concepts and Methods, Quantitative Data and Formulas

TL;DR: An encyclopedic survey of color science can be found in this article, which includes details of light sources, color filters, physical detectors of radiant energy, and the working concepts in color matching, discrimination, and adaptation.
Proceedings ArticleDOI

Image and depth from a conventional camera with a coded aperture

TL;DR: A simple modification to a conventional camera is proposed to insert a patterned occluder within the aperture of the camera lens, creating a coded aperture, and introduces a criterion for depth discriminability which is used to design the preferred aperture pattern.
Journal ArticleDOI

Color Science: Concepts and Methods, Quantitative Data and Formulas

TL;DR: Eventually, you will discover a further experience and achievement by spending more cash, but why don't you try to acquire something basic in the beginning?
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