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Experimental validation of Monte Carlo and finite-element methods for the estimation of the optical path length in inhomogeneous tissue

Authors :
Okada, Eiji
Schweiger, Martin
Arridge, Simon R.
Firbank, Michael
Delpy, David T.
Source :
Applied Optics. July 1, 1996, Vol. 35 Issue 19, p3362, 10 p.
Publication Year :
1996

Abstract

To validate models of light propagation in biological tissue, experiments to measure the mean time of flight have been carried out on several solid cylindrical layered phantoms. The optical properties of the inner cylinders of the phantoms were close to those of adult brain white matter, whereas a range of scattering or absorption coefficients was chosen for the outer layer. Experimental results for the mean optical path length have been compared with the predictions of both an exact Monte Carlo (MC) model and a diffusion equation, with two differing boundary conditions implemented in a finite-element method (FEM). The MC and experimental results are in good agreement despite poor statistics for large fiber spacings, whereas good agreement with the FEM prediction requires a careful choice of proper boundary conditions. Key words: Light propagation, time-of-flight measurement, Monte Carlo method, finite-element method.

Details

ISSN :
1559128X
Volume :
35
Issue :
19
Database :
Gale General OneFile
Journal :
Applied Optics
Publication Type :
Academic Journal
Accession number :
edsgcl.18605518