We present a computational modeling approach for imitation of the time-domain optical coherence tomography (OCT) images of biotissues. The developed modeling technique is based on the implementation of the Leontovich–Fock equation into the wave Monte Carlo (MC) method. We discuss the benefits of the developed computational model in comparison to the conventional MC method based on the modeling of OCT images of a nevus. The developed model takes into account diffraction on bulk-absorbing microstructures and allows consideration of the influence of the amplitude–phase profile of the wave beam on the quality of the OCT images. The selection of optical parameters of modeling medium, used for simulation of optical radiation propagation in biotis...
A Monte Carlo method for holistically simulating optical coherence tomography (OCT) has been develop...
We combine a Monte Carlo technique with Mie theory to develop a method for simulating optical cohere...
Nowadays optical and laser-based diagnostics technologies are widely used in many fields such as onc...
We present a computational modeling approach for imitation of the time-domain optical coherence tomo...
Abstract We present a computational modeling approach for imitation of the time-domain optical cohe...
Optical \ud Coheren\ud ce\ud Tomography (\ud OCT) is \ud a\ud n emerging\ud imaging technique\ud tha...
Optical coherence Tomography (OCT) relies on optical interferometry to provide non?invasive imaging ...
We demonstrate, what we believe to be, the first mathematical model of image formation in optical co...
Optical scattering and absorption characterize light transport in biological tissue. A popular techn...
We describe two importance sampling techniques for a standard Monte Carlo (MC) method that could ena...
Based on time-independent Helmholtz equation and its solution in frame of inhomogeneous approximatio...
The invention and advancement of biological microscopy depends critically on an ability to accuratel...
The Monte Carlo technique with angle biasing is used to simulate the optical coherence tomography (O...
The concept of optical coherence tomography (OCT) for high-resolution imaging of tissues in vivo is ...
We report the first holistic modelling of optical systems for imaging in turbid media. Using a user-...
A Monte Carlo method for holistically simulating optical coherence tomography (OCT) has been develop...
We combine a Monte Carlo technique with Mie theory to develop a method for simulating optical cohere...
Nowadays optical and laser-based diagnostics technologies are widely used in many fields such as onc...
We present a computational modeling approach for imitation of the time-domain optical coherence tomo...
Abstract We present a computational modeling approach for imitation of the time-domain optical cohe...
Optical \ud Coheren\ud ce\ud Tomography (\ud OCT) is \ud a\ud n emerging\ud imaging technique\ud tha...
Optical coherence Tomography (OCT) relies on optical interferometry to provide non?invasive imaging ...
We demonstrate, what we believe to be, the first mathematical model of image formation in optical co...
Optical scattering and absorption characterize light transport in biological tissue. A popular techn...
We describe two importance sampling techniques for a standard Monte Carlo (MC) method that could ena...
Based on time-independent Helmholtz equation and its solution in frame of inhomogeneous approximatio...
The invention and advancement of biological microscopy depends critically on an ability to accuratel...
The Monte Carlo technique with angle biasing is used to simulate the optical coherence tomography (O...
The concept of optical coherence tomography (OCT) for high-resolution imaging of tissues in vivo is ...
We report the first holistic modelling of optical systems for imaging in turbid media. Using a user-...
A Monte Carlo method for holistically simulating optical coherence tomography (OCT) has been develop...
We combine a Monte Carlo technique with Mie theory to develop a method for simulating optical cohere...
Nowadays optical and laser-based diagnostics technologies are widely used in many fields such as onc...