Literature DB >> 21085367

Spatially resolved absolute diffuse reflectance measurements for noninvasive determination of the optical scattering and absorption coefficients of biological tissue.

A Kienle, L Lilge, M S Patterson, R Hibst, R Steiner, B C Wilson.   

Abstract

The absorption and transport scattering coefficients of biological tissues determine the radial dependence of the diffuse reflectance that is due to a point source. A system is described for making remote measurements of spatially resolved absolute diffuse reflectance and hence noninvasive, noncontact estimates of the tissue optical properties. The system incorporated a laser source and a CCD camera. Deflection of the incident beam into the camera allowed characterization of the source for absolute reflectance measurements. It is shown that an often used solution of the diffusion equation cannot be applied for these measurements. Instead, a neural network, trained on the results of Monte Carlo simulations, was used to estimate the absorption and scattering coefficients from the reflectance data. Tests on tissue-simulating phantoms with transport scattering coefficients between 0.5 and 2.0 mm(-1) and absorption coefficients between 0.002 and 0.1 mm(-1) showed the rms errors of this technique to be 2.6% for the transport scattering coefficient and 14% for the absorption coefficients. The optical properties of bovine muscle, adipose, and liver tissue, as well as chicken muscle (breast), were also measured ex vivo at 633 and 751 nm. For muscle tissue it was found that the Monte Carlo simulation did not agree with experimental measurements of reflectance at distances less than 2 mm from the incident beam.

Entities:  

Year:  1996        PMID: 21085367     DOI: 10.1364/AO.35.002304

Source DB:  PubMed          Journal:  Appl Opt        ISSN: 1559-128X            Impact factor:   1.980


  57 in total

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3.  Laser reflectance imaging of human forearms and their tissue-equivalent phantoms.

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5.  Limitations of the commonly used simplified laterally uniform optical fiber probe-tissue interface in Monte Carlo simulations of diffuse reflectance.

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8.  A method for determination of the absorption and scattering properties interstitially in turbid media.

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Journal:  Phys Med Biol       Date:  2005-05-05       Impact factor: 3.609

9.  Tomographic bioluminescence imaging by use of a combined optical-PET (OPET) system: a computer simulation feasibility study.

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10.  Spatially resolved diffuse reflectance spectroscopy endoscopic sensing with custom Si photodetectors.

Authors:  Ben Lariviere; Katherine S Garman; N Lynn Ferguson; Deborah A Fisher; Nan M Jokerst
Journal:  Biomed Opt Express       Date:  2018-02-15       Impact factor: 3.732

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