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Optics Letters

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  • Vol. 21, Iss. 7 — Apr. 1, 1996
  • pp: 546–548

Influence of the scattering phase function on light transport measurements in turbid media performed with small source–detector separations

Judith R. Mourant, James Boyer, Andreas H. Hielscher, and Irving J. Bigio  »View Author Affiliations


Optics Letters, Vol. 21, Issue 7, pp. 546-548 (1996)
http://dx.doi.org/10.1364/OL.21.000546


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Abstract

Many methods of optical tissue diagnosis require that measurements be performed with small source–detector separations in a backscatter geometry. Monte Carlo simulations are used to demonstrate that for these situations light transport depends on the exact form of the angular scattering probability distribution, P(θ). Simulations performed with different forms of P(θ) with the same value of 〈cos θ〉 result in the collection of significantly different fractions of the incident photons, particularly when small-numerical-aperture delivery and collection fibers are employed. More photons are collected for the distribution that has a higher probability of scattering events with θ > 125°. For the clinically relevant optical parameters employed here, the differences in light collection are >60%.

© 1996 Optical Society of America

History
Original Manuscript: November 8, 1995
Published: April 1, 1996

Citation
Judith R. Mourant, James Boyer, Andreas H. Hielscher, and Irving J. Bigio, "Influence of the scattering phase function on light transport measurements in turbid media performed with small source–detector separations," Opt. Lett. 21, 546-548 (1996)
http://www.opticsinfobase.org/ol/abstract.cfm?URI=ol-21-7-546


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