We explore the propagation of the cylindrical vector beams (CVB) in turbid tissue-like scattering medium in comparison with the conventional Gaussian laser beam. The study of propagation of CVB and Gaussian laser beams in the medium is performed utilizing the unified electric field Monte Carlo model. The implemented Monte Carlo model is a part of a generalized on-line computational tool and utilizes parallel computing, executed on the NVIDIA Graphics Processing Units (GPUs) supporting Compute Unified Device Architecture (CUDA). Using extensive computational studies, we demonstrate that after propagation through the turbid tissue-like scattering medium, the degree of fringe contrast for CVB becomes at least twice higher in comparison to the ...
A framework is developed that combines electric field Monte Carlo simulations of random scattering w...
Abstract Fabricated tissue phantoms are instrumental in optical in-vitro investigations concerning c...
Abstract. We describe a fast, accurate method for determination of the optical coefficients of ‘semi...
We explore the propagation of the cylindrical vector beams (CVB) in turbid tissue-like scattering me...
We explore the propagation of the cylindrical vector beams (CVB) in turbid tissue-like scattering me...
The focal field distribution of tightly focused laser beams in turbid media is sensitive to optical ...
Nowadays optical and laser-based diagnostics technologies are widely used in many fields such as onc...
Energy deposition in bio-tissues is a prerequisite for the calculation of heat transfer during laser...
Within the framework of further development of unified Monte Carlo code for the needs of biomedical ...
In Part I of this study [1], good agreement between experimental measurements and results from Monte...
In Part I of this study [1], good agreement between experimental measurements and results from Monte...
ABSTRACT: We present the experimental results for scattering intensity which arises from illuminatio...
International audienceWe developed a new parallel computational method for solving fluorescence and ...
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...
A framework is developed that combines electric field Monte Carlo simulations of random scattering w...
Abstract Fabricated tissue phantoms are instrumental in optical in-vitro investigations concerning c...
Abstract. We describe a fast, accurate method for determination of the optical coefficients of ‘semi...
We explore the propagation of the cylindrical vector beams (CVB) in turbid tissue-like scattering me...
We explore the propagation of the cylindrical vector beams (CVB) in turbid tissue-like scattering me...
The focal field distribution of tightly focused laser beams in turbid media is sensitive to optical ...
Nowadays optical and laser-based diagnostics technologies are widely used in many fields such as onc...
Energy deposition in bio-tissues is a prerequisite for the calculation of heat transfer during laser...
Within the framework of further development of unified Monte Carlo code for the needs of biomedical ...
In Part I of this study [1], good agreement between experimental measurements and results from Monte...
In Part I of this study [1], good agreement between experimental measurements and results from Monte...
ABSTRACT: We present the experimental results for scattering intensity which arises from illuminatio...
International audienceWe developed a new parallel computational method for solving fluorescence and ...
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...
A framework is developed that combines electric field Monte Carlo simulations of random scattering w...
Abstract Fabricated tissue phantoms are instrumental in optical in-vitro investigations concerning c...
Abstract. We describe a fast, accurate method for determination of the optical coefficients of ‘semi...