2002Chinese Journal of Lasers BRequires access

Time-resolved Monte Carlo Simulation of Propagation of Photons Through Layered Tissues

Min Chen, Jianwen Chen, Hongyi Gao, Zhizhan Xu

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Abstract

The propagation of photons through layered tissues is discussed using time resolved Monte Carlo method. The effects of the absorption coefficient, scattering coefficient and anisotropy coefficient on the shape of time resolved transmission are investigated. The energy attenuation of light in layered tissues is also achieved for the infinitesimal width light and infinite width light, respectively.

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The propagation of photons through layered tissues is discussed using time resolved Monte Carlo method. The effects of the absorption coefficient, scattering coefficient and anisotropy coefficient on the shape of time resolved transmission are investigated. The energy attenuation of light in layered tissues is also achieved for the infinitesimal width light and infinite width light, respectively.

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Available abstract

The propagation of photons through layered tissues is discussed using time resolved Monte Carlo method. The effects of the absorption coefficient, scattering coefficient and anisotropy coefficient on the shape of time resolved transmission are investigated. The energy attenuation of light in layered tissues is also achieved for the infinitesimal width light and infinite width light, respectively.

Key concepts: Monte Carlo method, Attenuation coefficient, Photon, Monte Carlo method for photon transport, Attenuation, Transmission coefficient, Anisotropy, Computational physics

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