Influence of light source-detector spacing on shape of probability density functions of scattering angles in laser Doppler flowmetry
Analytical models, describing laser Doppler flowmetry and its derived applications, are based on fundamental assumptions of photon scattering angles. It is shown by means of Monte Carlo simulations that, even in the case these assumptions are correct, the presence of a specific source-detector confi...
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Veröffentlicht in: | Applied optics (2004) 2014-07, Vol.53 (20), p.4580-4584 |
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description | Analytical models, describing laser Doppler flowmetry and its derived applications, are based on fundamental assumptions of photon scattering angles. It is shown by means of Monte Carlo simulations that, even in the case these assumptions are correct, the presence of a specific source-detector configuration may bias the shape of the probability density functions describing scattering angle behavior. It is found that these biased shapes are generated by selective filtering of photons induced by a particular source-detector configuration. In some specific cases, this phenomenon might invalidate laser Doppler analytical models. |
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source | MEDLINE; OSA_美国光学学会数据库1; Alma/SFX Local Collection |
subjects | Computer Simulation Data Interpretation, Statistical Doppler Doppler effect Laser-Doppler Flowmetry - methods Lasers Light Lighting - methods Mathematical analysis Models, Statistical Monte Carlo Method Photons Probability density functions Reproducibility of Results Scattering Scattering, Radiation Sensitivity and Specificity Statistical Distributions |
title | Influence of light source-detector spacing on shape of probability density functions of scattering angles in laser Doppler flowmetry |
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