A comparative study of analytical models of diffuse reflectance in homogeneous biological tissues: Gelatin‐based phantoms and Monte Carlo experiments

Author:

Bahl Anisha1ORCID,Segaud Silvere1,Xie Yijing1ORCID,Shapey Jonathan12ORCID,Bergholt Mads S.3,Vercauteren Tom1

Affiliation:

1. School of Biomedical Engineering & Imaging Sciences, King's College London London UK

2. King's College Hospital London UK

3. Department of Craniofacial Development and Stem Cell Biology King's College London, Guy's Tower, Great Maze Pond London UK

Abstract

AbstractInformation about tissue oxygen saturation (StO2) and other related important physiological parameters can be extracted from diffuse reflectance spectra measured through non‐contact imaging. Three analytical optical reflectance models for homogeneous, semi‐infinite, tissue have been proposed (Modified Beer–Lambert, Jacques 1999, Yudovsky 2009) but these have not been directly compared for tissue parameter extraction purposes. We compare these analytical models using Monte Carlo (MC) simulated diffuse reflectance spectra and controlled gelatin‐based phantoms with measured diffuse reflectance spectra and known ground truth composition parameters. The Yudovsky model performed best against MC simulations and measured spectra of tissue phantoms in terms of goodness of fit and parameter extraction accuracy followed closely by Jacques' model. In this study, Yudovsky's model appeared most robust; however, our results demonstrated that both Yudovsky and Jacques models are suitable for modeling tissue that can be approximated as a single, homogeneous, semi‐infinite slab.

Funder

Royal Academy of Engineering

National Institute for Health and Care Research

Wellcome Trust

Engineering and Physical Sciences Research Council

Medtronic

Publisher

Wiley

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