Radiative transfer equation for predicting light propagation in biological media: comparison of a modified finite volume method, the Monte Carlo technique, and an exact analytical solution
Identifieur interne : 000A80 ( Main/Exploration ); précédent : 000A79; suivant : 000A81Radiative transfer equation for predicting light propagation in biological media: comparison of a modified finite volume method, the Monte Carlo technique, and an exact analytical solution
Auteurs : Fatmir Asllanaj [France] ; Sylvain Contassot-Vivier [France]Source :
English descriptors
Abstract
The use of visible or NIR (Near Infrared) light provides many possibilities, particularly forapplications in biomedical treatment and diagnosis, such as optical tomography, laser surgery,and photodynamic therapy. To develop an efficient tool, it is essential to have high orderaccuracy models for predicting light propagation within inhomogeneous, absorbing andhighly forward scattering media, typical for biological tissues. Modelling of light propagationthrough biological tissues has traditionally been done with the Diffusion Approximation (DA)or the statistical Monte Carlo (MC) method.
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<front><div type="abstract" xml:lang="en">The use of visible or NIR (Near Infrared) light provides many possibilities, particularly forapplications in biomedical treatment and diagnosis, such as optical tomography, laser surgery,and photodynamic therapy. To develop an efficient tool, it is essential to have high orderaccuracy models for predicting light propagation within inhomogeneous, absorbing andhighly forward scattering media, typical for biological tissues. Modelling of light propagationthrough biological tissues has traditionally been done with the Diffusion Approximation (DA)or the statistical Monte Carlo (MC) method.</div>
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