Estimating individual cone fundamentals from their color-matching functions. 2016

Casper F Andersen, and Graham D Finlayson, and David Connah

Estimation of individual spectral cone fundamentals from color-matching functions is a classical and longstanding problem in color science. In this paper we propose a novel method to carry out this estimation based on a linear optimization technique, employing an assumption of a priori knowledge of the retinal absorptance functions. The result is an estimation of the combined lenticular and macular filtration for an individual, along with the nine coefficients in the linear combination that relates their color-matching functions to their estimated spectral-cone fundamentals. We test the method on the individual Stiles and Burch color-matching functions and derive cone-fundamental estimations for different viewing fields and matching experiment repetition. We obtain cone-fundamental estimations that are remarkably similar to those available in the literature. This suggests that the method yields results that are close to the true fundamentals.

UI MeSH Term Description Entries
D003118 Color Perception Mental processing of chromatic signals (COLOR VISION) from the eye by the VISUAL CORTEX where they are converted into symbolic representations. Color perception involves numerous neurons, and is influenced not only by the distribution of wavelengths from the viewed object, but also by its background color and brightness contrast at its boundary. Color Perceptions,Perception, Color,Perceptions, Color
D016014 Linear Models Statistical models in which the value of a parameter for a given value of a factor is assumed to be equal to a + bx, where a and b are constants. The models predict a linear regression. Linear Regression,Log-Linear Models,Models, Linear,Linear Model,Linear Regressions,Log Linear Models,Log-Linear Model,Model, Linear,Model, Log-Linear,Models, Log-Linear,Regression, Linear,Regressions, Linear
D017949 Retinal Cone Photoreceptor Cells Photosensitive afferent neurons located primarily within the FOVEA CENTRALIS of the MACULA LUTEA. There are three major types of cone cells (red, blue, and green) whose photopigments have different spectral sensitivity curves. Retinal cone cells operate in daylight vision (at photopic intensities) providing color recognition and central visual acuity. Cone Photoreceptors,Cones (Retina),Cone Photoreceptor Cells,Photoreceptors, Cone,Retinal Cone,Retinal Cone Cells,Retinal Cone Photoreceptors,Cell, Cone Photoreceptor,Cell, Retinal Cone,Cells, Cone Photoreceptor,Cells, Retinal Cone,Cone (Retina),Cone Cell, Retinal,Cone Cells, Retinal,Cone Photoreceptor,Cone Photoreceptor Cell,Cone Photoreceptor, Retinal,Cone Photoreceptors, Retinal,Cone, Retinal,Cones, Retinal,Photoreceptor Cell, Cone,Photoreceptor Cells, Cone,Photoreceptor, Cone,Photoreceptor, Retinal Cone,Photoreceptors, Retinal Cone,Retinal Cone Cell,Retinal Cone Photoreceptor,Retinal Cones

Related Publications

Casper F Andersen, and Graham D Finlayson, and David Connah
October 2002, Proceedings of the National Academy of Sciences of the United States of America,
Casper F Andersen, and Graham D Finlayson, and David Connah
December 1980, Journal of the Optical Society of America,
Casper F Andersen, and Graham D Finlayson, and David Connah
August 2021, Neural computation,
Casper F Andersen, and Graham D Finlayson, and David Connah
March 1954, Journal of the Optical Society of America,
Casper F Andersen, and Graham D Finlayson, and David Connah
February 2004, Journal of glaucoma,
Casper F Andersen, and Graham D Finlayson, and David Connah
April 1987, Journal of the Optical Society of America. A, Optics and image science,
Casper F Andersen, and Graham D Finlayson, and David Connah
June 2022, Journal of the Optical Society of America. A, Optics, image science, and vision,
Casper F Andersen, and Graham D Finlayson, and David Connah
January 1972, Journal of the Optical Society of America,
Casper F Andersen, and Graham D Finlayson, and David Connah
January 1978, Vision research,
Casper F Andersen, and Graham D Finlayson, and David Connah
January 2013, Optics express,
Copied contents to your clipboard!