Monte Carlo methods commonly used in tissue optics are limited to a layered tissue geometry and thus provide only a very rough approximation for many complex media such as biological structures. To overcome these limitations, a Meshed Monte Carlo method with flexible phase function choice (fpf-MC) has been developed to function in a mesh. This algorithm can model the light propagation in any complexly shaped structure, by attributing optical properties to the different mesh elements. Furthermore, this code allows the use of different discretized phase functions for each tissue type, which can be simulated from the microstructural properties of the tissue, in combination with a tool for simulating the bulk optical properties of polydisperse ...
A Monte Carlo code for the calculation of light transport in heterogeneous scattering media is prese...
A Monte Carlo code for the calculation of light transport in heterogeneous scattering media is prese...
A Monte Carlo code is built taking into account macroscopic spheroid cavities inside a turbid medium...
Monte Carlo modeling of light transport in multilayered tissue (MCML) is modified to incorporate obj...
Monte Carlo modeling of light transport in multilayered tissue (MCML) is modified to incorporate obj...
Monte Carlo modeling of light transport in multilayered tissue (MCML) is modified to incorporate obj...
In the recent years, optical imaging has attracted increasing attention in the field of clinical dia...
In the recent years, optical imaging has attracted increasing attention in the field of clinical dia...
Monte Carlo (MC) simulation for light propagation in tissue is the gold standard for studying the li...
International audienceLight propagation in turbid media is driven by the equation of radiative trans...
A Monte Carlo code is built taking into account macroscopic spheroid cavities inside a turbid medium...
Monte Carlo (MC) stimulation is one of the prominent simulation technique and is rapidly becoming t...
Laser has got a property of having high irradiance and penetration power to be used for different me...
Monte Carlo (MC) stimulation is one of the prominent simulation technique and is rapidly becoming t...
Abstract. A general survey is provided on the capability of Monte Carlo (MC) modeling in tissue opti...
A Monte Carlo code for the calculation of light transport in heterogeneous scattering media is prese...
A Monte Carlo code for the calculation of light transport in heterogeneous scattering media is prese...
A Monte Carlo code is built taking into account macroscopic spheroid cavities inside a turbid medium...
Monte Carlo modeling of light transport in multilayered tissue (MCML) is modified to incorporate obj...
Monte Carlo modeling of light transport in multilayered tissue (MCML) is modified to incorporate obj...
Monte Carlo modeling of light transport in multilayered tissue (MCML) is modified to incorporate obj...
In the recent years, optical imaging has attracted increasing attention in the field of clinical dia...
In the recent years, optical imaging has attracted increasing attention in the field of clinical dia...
Monte Carlo (MC) simulation for light propagation in tissue is the gold standard for studying the li...
International audienceLight propagation in turbid media is driven by the equation of radiative trans...
A Monte Carlo code is built taking into account macroscopic spheroid cavities inside a turbid medium...
Monte Carlo (MC) stimulation is one of the prominent simulation technique and is rapidly becoming t...
Laser has got a property of having high irradiance and penetration power to be used for different me...
Monte Carlo (MC) stimulation is one of the prominent simulation technique and is rapidly becoming t...
Abstract. A general survey is provided on the capability of Monte Carlo (MC) modeling in tissue opti...
A Monte Carlo code for the calculation of light transport in heterogeneous scattering media is prese...
A Monte Carlo code for the calculation of light transport in heterogeneous scattering media is prese...
A Monte Carlo code is built taking into account macroscopic spheroid cavities inside a turbid medium...