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- W2000724332 abstract "In this theoretical paper we study the alterations of the laser induced fluorescence spectra as a function of the spectral variations of the absorption factor μ<SUB>a</SUB>(λ), the scattering factor μ<SUB>s</SUB>(λ) and of the mean cosine of the scattering angle g(λ) of the medium. The calculations of the signal received by the detector are based on a Monte Carlo simulation. All media are homogeneous, with infinite length and width, depth is assumed to be infinite. The total detected fluorescence signal S(λ) may be described by: S(λ)= F(λ<SUB>e</SUB>,λ) . M(μ<SUB>a</SUB>(λ<SUB>e</SUB>),μ<SUB>s</SUB>(λ<SUB>e</SUB>),g(λ<SUB>e</SUB>),μ<SUB>a</SUB>(λ),μ<SUB>s</SUB>(λ),g(λ)) where F is proportional to the original fluorescence spectrum and M a function of the optical and geometrical properties of the medium. In order to show the importance of the scattering, absorption and anisotropy spectral dependence, we have computed M for ideal experiments. Each coefficient μ<SUB>a</SUB>, μ<SUB>s</SUB> and g is alternately considered to be wavelength dependent while the others are considered to be constant. Consequently, each calculation provides a different distorted transfer function M(λ<SUB>e</SUB>,λ) showing the influence of the spectral dependence of each coefficient. This signal is also different if the wavelength of the excitation light is changed." @default.
- W2000724332 created "2016-06-24" @default.
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- W2000724332 date "1993-08-27" @default.
- W2000724332 modified "2023-10-01" @default.
- W2000724332 title "Monte Carlo modelization of laser-induced fluorescence signals in turbid media: determination of original fluorescence spectra" @default.
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- W2000724332 doi "https://doi.org/10.1117/12.151199" @default.
- W2000724332 hasPublicationYear "1993" @default.
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