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

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          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.

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          Author and article information

          Journal
          Biomed Opt Express
          Biomedical optics express
          Optica Publishing Group
          2156-7085
          2156-7085
          May 01 2022
          : 13
          : 5
          Affiliations
          [1 ] Zilia inc., Québec, QC, G1K 3G5, Canada.
          [2 ] Affaires médicales et innovation, Héma-Québec, Québec, QC, G1V 5C3, Canada.
          [3 ] Chemical and Materials Engineering, University of Alberta, Edmonton, AB, T6G 1H9, Canada.
          Article
          458079
          10.1364/BOE.458079
          9203094
          35774309
          7fc15030-87db-4480-b956-0108168502fc
          History

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