A time-resolved Monte Carlo technique was used to simulate the propagation of polarized light in turbid media. Calculated quantities include the reflection Mueller matrices, the transmission Mueller matrices, and the degree of polarization (DOP). The effects of the polarization state of the incident light and of the size of scatterers on the propagation of DOP were studied. Results are shown in animation sequences
We study by means of experiments and Monte Carlo simulations, the scattering of light in random medi...
A novel Monte Carlo simulation algorithm is presented for modeling the time evolution of diffuse lig...
We present both experimental and Monte Carlo–based simulation results for the diffusely backscattere...
A time-resolved Monte Carlo technique was used to simulate the propagation of polarized light in tur...
Monte Carlo method was used to simulate time resolved polarization imaging in turbid media. Mie theo...
This paper presents our study of time-resolved propagation of polarized light in scattering media. M...
A study of polarized light transmitted through randomly scattering media of a polystyrene-microspher...
A study of polarized light transmitted through randomly scattering media of a polystyrene-microspher...
A study of polarized light transmitted through randomly scattering media of a polystyrene-microspher...
This paper presents our study results of polarized short pulse transmission through phantom tissues ...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Due to the character of the original source materials and the nature of batch digitization, quality ...
A detailed study, based on a Monte Carlo algorithm, of polarized light propagation in birefringent t...
We present a single-scattering model as well as a Monte Carlo model of the effect of glucose on pola...
We present a new method of time-resolved Mueller matrix imaging polarimetry for spatial and temporal...
We study by means of experiments and Monte Carlo simulations, the scattering of light in random medi...
A novel Monte Carlo simulation algorithm is presented for modeling the time evolution of diffuse lig...
We present both experimental and Monte Carlo–based simulation results for the diffusely backscattere...
A time-resolved Monte Carlo technique was used to simulate the propagation of polarized light in tur...
Monte Carlo method was used to simulate time resolved polarization imaging in turbid media. Mie theo...
This paper presents our study of time-resolved propagation of polarized light in scattering media. M...
A study of polarized light transmitted through randomly scattering media of a polystyrene-microspher...
A study of polarized light transmitted through randomly scattering media of a polystyrene-microspher...
A study of polarized light transmitted through randomly scattering media of a polystyrene-microspher...
This paper presents our study results of polarized short pulse transmission through phantom tissues ...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Due to the character of the original source materials and the nature of batch digitization, quality ...
A detailed study, based on a Monte Carlo algorithm, of polarized light propagation in birefringent t...
We present a single-scattering model as well as a Monte Carlo model of the effect of glucose on pola...
We present a new method of time-resolved Mueller matrix imaging polarimetry for spatial and temporal...
We study by means of experiments and Monte Carlo simulations, the scattering of light in random medi...
A novel Monte Carlo simulation algorithm is presented for modeling the time evolution of diffuse lig...
We present both experimental and Monte Carlo–based simulation results for the diffusely backscattere...