An Image Processing Protocol to Extract Variables Predictive of Human Embryo Fitness for Assisted Reproduction

Author:

Chéles Dóris Spinosa,Ferreira André SatoshiORCID,de Jesus Isabela Sueitt,Fernandez Eleonora Inácio,Pinheiro Gabriel MartinsORCID,Dal Molin Eloiza Adriane,Alves Wallace,de Souza Rebeca Colauto Milanezi,Bori Lorena,Meseguer Marcos,Rocha José Celso,Nogueira Marcelo Fábio GouveiaORCID

Abstract

Despite the use of new techniques on embryo selection and the presence of equipment on the market, such as EmbryoScope® and Geri®, which help in the evaluation of embryo quality, there is still a subjectivity between the embryologist’s classifications, which are subjected to inter- and intra-observer variability, therefore compromising the successful implantation of the embryo. Nonetheless, with the acquisition of images through the time-lapse system, it is possible to perform digital processing of these images, providing a better analysis of the embryo, in addition to enabling the automatic analysis of a large volume of information. An image processing protocol was developed using well-established techniques to segment the image of blastocysts and extract variables of interest. A total of 33 variables were automatically generated by digital image processing, each one representing a different aspect of the embryo and describing a different characteristic of the blastocyst. These variables can be categorized into texture, gray-level average, gray-level standard deviation, modal value, relations, and light level. The automated and directed steps of the proposed processing protocol exclude spurious results, except when image quality (e.g., focus) prevents correct segmentation. The image processing protocol can segment human blastocyst images and automatically extract 33 variables that describe quantitative aspects of the blastocyst’s regions, with potential utility in embryo selection for assisted reproductive technology (ART).

Funder

São Paulo Research Foundation

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

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