Blue-noise sampling for human retinal cone spatial distribution modeling

Author:

Lanaro Matteo PaoloORCID,Perrier Hélène,Coeurjolly David,Ostromoukhov Victor,Rizzi Alessandro

Abstract

Abstract This paper proposes a novel method for modeling retinal cone distribution in humans. It is based on Blue-noise sampling algorithms being strongly related with the mosaic sampling performed by cone photoreceptors in the human retina. Here we present the method together with a series of examples of various real retinal patches. The same samples have also been created with alternative algorithms and compared with plots of the center of the inner segments of cone photoreceptors from imaged retinas. Results are evaluated with different distance measure used in the field, like nearest-neighbor analysis and pair correlation function. The proposed method can effectively describe features of a human retinal cone distribution by allowing to create samples similar to the available data. For this reason, we believe that the proposed algorithm may be a promising solution when modeling local patches of retina.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference68 articles.

1. The mosaic of nerve cells in the mammalian retina;Wassle;Proc. of the Royal Society of London B: Biological Sciences,1978

2. Spectral consequences of photoreceptor sampling in the rhesus retina;Yellott;Science,1983

3. Modelling the mosaic organization of rod and cone photoreceptors with a minimal-spacing rule;Galli-Resta;European Journal of Neuroscience,1999

4. Wang tiles in computer graphics;Lagae;Synthesis Lectures on Computer Graphics and Animation,2009

5. Variability in parafoveal cone mosaic in normal trichromatic individuals;Dees;Biomedical Optics Express,2011

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