Monte-Carlo simulation and tissue-phantom model for validation of ocular oximetry

Author:

Akitegetse Cléophace1ORCID,Landry Patricia2,Robidoux Jonathan2,Lapointe Nicolas1,Brouard Danny2,Sauvageau Dominic13

Affiliation:

1. Zilia inc.

2. Affaires médicales et innovation

3. University of Alberta

Abstract

Ocular oximetry, in which blood oxygen saturation is evaluated in retinal tissues, is a promising technique for the prevention, diagnosis and management of many diseases and conditions. However, the development of new tools for evaluating oxygen saturation in the eye fundus has often been limited by the lack of reference tools or techniques for such measurements. In this study, we describe a two-step validation method. The impact of scattering, blood volume fraction and lens yellowing on the oximetry model is investigated using a tissue phantom, while a Monte Carlo model of the light propagation in the eye fundus is used to study the effect of the fundus layered-structure. With this method, we were able to assess the performance of an ocular oximetry technique in the presence of confounding factors and to quantify the impact of the choroidal circulation on the accuracy of the measurements. The presented strategy will be useful to anyone involved in studies based on the eye fundus diffuse reflectance.

Funder

Zilia Inc

Héma-Québec

National Research Council of Canada - Industrial Research Assistance Program

Government of Canada Scientific Research and Experimental Development Tax Incentive Program

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Biotechnology

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Anatomy and Regulation of the Optic Nerve Blood Flow;Reference Module in Neuroscience and Biobehavioral Psychology;2024

2. Targeted spectroscopy in the eye fundus;Journal of Biomedical Optics;2023-12-15

3. Test-retest repeatability in macular retinal oximetry;Clinical and Experimental Optometry;2023-10-16

4. Sensitivity of visible range multi-wavelength algorithms for retinal tissue oximetry to acquisition parameters;Biomedical Optics Express;2023-07-26

5. Targeted spectroscopy in the eye fundus;2023-04-29

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