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A Fiberoptic Reflectance Probe with Multiple Source-collector Separations to Increase the Dynamic Range of Derived Tissue Optical Absorption and Scattering Coefficients

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Journal Opt Express
Date 2010 Apr 15
PMID 20389574
Citations 31
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Abstract

Measurement of tissue optical absorption and (transport) reduced scattering coefficients (mu(a) and mu(s)', respectively) is fundamental to many applications of light in medicine and biology. We report a handheld fiberoptic probe to determine these coefficients by measuring the diffuse reflectance at multiple source-collector distances, which allows for a larger dynamic range than a single source-collector separation. Diffusion theory and a priori knowledge of the spectral shape of mu(a) and mu(s)' are used in a forward model of the diffuse reflectance. The dynamic range and accuracy of this method were evaluated using Monte Carlo simulations, phantom experiments and tissues in vivo.

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