République Tunisienne Ministère de l'Enseignement Supérieur et de la Recherche Scientifique

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publications

Article

Visible and near-infrared laser radiation in a biological tissue. A forward model for medical imaging by optical tomography 

GANTRI Mohamed, SEDIKI Ezeddine, TRABELSI Hedi, 2010

Lasers in Medical Science, 1, 25, 41-53, Mars 2010

Résumé

We present a numerical model for the study of a general, two-dimensional, time-dependent, laser radiation transfer problem in a biological tissue. The model is suitable for many situations, especially when the external laser source is pulsed or continuous. We used a control volume discrete-ordinate method associated with an implicit, three-level, second-order, time-differencing scheme. In medical imaging by laser techniques, this could be an optical tomography forward model. We considered a very thin rectangular biological tissue-like medium submitted to a visible or a near-infrared laser source. Different cases were treated numerically. The source was assumed to be monochromatic and collimated. We used either a continuous source or a short-pulsed source. The transmitted radiance was computed in detector points on the boundaries. Also, the distribution of the internal radiation intensity for different instants is presented. According to the source type, we examined either the steady-state response or the transient response of the medium. First, our model was validated by experimental results from the literature for a homogeneous biological tissue. The space and angular grid indepen

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