International audienceWe derive a reciprocity relation for the 3D vector radia-tive transport equation that describes propagation of polarized light in multiple-scattering media. We then show how this result, together with translational in-variance of a plane-parallel sample, can be used to efficiently compute the sensitivity kernel of diffuse optical tomography by Monte Carlo simulations. Numerical examples of polarization-selective sensitivity kernels are given
We present a computational study of diffuse optical tomography using the one-way radiative transfer ...
We present a computational study of diffuse optical tomography using the one-way radiative transfer ...
A ray tracing based path length calculation is investigated for polarized light transport in a pixel...
International audienceWe derive a reciprocity relation for the 3D vector radia-tive transport equati...
International audienceWe describe a reciprocity relation for polarized radiative transport between a...
International audienceWe describe a reciprocity relation for polarized radiative transport between a...
International audienceWe describe a reciprocity relation for polarized radiative transport between a...
International audienceAn efficient GPU-based Monte Carlo (MC) simulator for modeling polarized light...
International audienceAn efficient GPU-based Monte Carlo (MC) simulator for modeling polarized light...
The present investigation of three-dimensional radiative transfer accounts for polarization and mult...
The classical reciprocity relation of radiative transfer fails for two points placed in regions havi...
We present a computational study of diffuse optical tomography using the one-way radiative transfer ...
We present a computational study of diffuse optical tomography using the one-way radiative transfer ...
We present a computational study of diffuse optical tomography using the one-way radiative transfer ...
We present a computational study of diffuse optical tomography using the one-way radiative transfer ...
We present a computational study of diffuse optical tomography using the one-way radiative transfer ...
We present a computational study of diffuse optical tomography using the one-way radiative transfer ...
A ray tracing based path length calculation is investigated for polarized light transport in a pixel...
International audienceWe derive a reciprocity relation for the 3D vector radia-tive transport equati...
International audienceWe describe a reciprocity relation for polarized radiative transport between a...
International audienceWe describe a reciprocity relation for polarized radiative transport between a...
International audienceWe describe a reciprocity relation for polarized radiative transport between a...
International audienceAn efficient GPU-based Monte Carlo (MC) simulator for modeling polarized light...
International audienceAn efficient GPU-based Monte Carlo (MC) simulator for modeling polarized light...
The present investigation of three-dimensional radiative transfer accounts for polarization and mult...
The classical reciprocity relation of radiative transfer fails for two points placed in regions havi...
We present a computational study of diffuse optical tomography using the one-way radiative transfer ...
We present a computational study of diffuse optical tomography using the one-way radiative transfer ...
We present a computational study of diffuse optical tomography using the one-way radiative transfer ...
We present a computational study of diffuse optical tomography using the one-way radiative transfer ...
We present a computational study of diffuse optical tomography using the one-way radiative transfer ...
We present a computational study of diffuse optical tomography using the one-way radiative transfer ...
A ray tracing based path length calculation is investigated for polarized light transport in a pixel...