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Time resolved reflectance and transmittance for the noninvasive measurement of tissue optical properties

Applied Optics · 1989 · Vol. 28(12) · pp. 2331–2331
Michael S. PattersonB. ChanceBrian C. Wilson

Abstract

When a picosecond light pulse is incident on biological tissue, the temporal characteristics of the light backscattered from, or transmitted through, the sample carry information about the optical absorption and scattering coefficients of the tissue. We develop a simple model, based on the diffusion approximation to radiative transfer theory, which yields analytic expressions for the pulse shape in terms of the interaction coefficients of a homogeneous slab. The model predictions are in good agreement with the results of preliminary in vivo experiments and Monte Carlo simulations.

Optical Imaging and Spectroscopy TechniquesPhotoacoustic and Ultrasonic ImagingThermoregulation and physiological responsesTransmittanceOpticsMonte Carlo methodPhoton diffusionScatteringRadiative transferAttenuation coefficientHeavy traffic approximationMaterials scienceAbsorption (acoustics)
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References
Diffuse radiation in the Galaxy
The Astrophysical Journal · 1941 · 2,847 citations
Estimation of optical pathlength through tissue from direct time of flight measurement
Physics in Medicine and Biology · 1988 · 2,212 citations
Stochastic Problems in Physics and Astronomy
Reviews of Modern Physics · 1943 · 8,430 citations
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