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SCALING METHOD FOR FAST MONTE CARLO SIMULATION OF DIFFUSE REFLECTANCE SPECTRA FROM MULTI-LAYERED TURBID MEDIA AND METHODS AND SYSTEMS FOR USING SAME TO DETERMINE OPTICAL PROPERTIES OF MULTI-LAYERED TURBID MEDIUM FROM MEASURED DIFFUSE REFLECTANCE

  • US 20080270091A1
  • Filed: 02/25/2008
  • Published: 10/30/2008
  • Est. Priority Date: 02/23/2007
  • Status: Abandoned Application
First Claim
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1. A method for fast Monte Carlo simulation of diffuse reflectance of a multi-layered turbid medium to determine scaled diffuse reflectance for the multi-layered turbid medium and for using the scaled diffuse reflectance to determine optical properties of a multi-layered turbid medium with unknown optical properties, the method comprising:

  • performing a baseline Monte Carlo simulation of diffuse reflectance of a homogeneous turbid medium to determine a baseline set of simulated photon trajectories and exit weights for the homogeneous turbid medium;

    scaling, based on relative optical properties of each layer in an n-layered turbid medium with selected optical properties to the optical properties of the homogenous turbid medium, the simulated photon trajectories and weights determined for the homogeneous turbid medium to determine a set of calculated photon trajectories and exit weights for the n-layered turbid medium and, from the set of calculated photon trajectories and exit weights, an impulse response representing photon exit weights and exit positions for the n-layered turbid medium;

    convolving the impulse response with a beam profile for a source-detector geometry to determine a scaled diffuse reflectance for the n-layered turbid medium that would be detected by the source-detector geometry; and

    using the scaled diffuse reflectance for the n-layered turbid medium with selected optical properties as a predicted diffuse reflectance input to an inverse model to determine optical properties of an n-layered turbid medium with unknown optical properties based on measured diffuse reflectance of the n-layered turbid medium with unknown optical properties.

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