A numerical method is presented to solve exactly the time-dependent diffusion equation that describes light transport in turbid media. The simulation takes into account spatial variations of the scattering and absorption factors of the medium and the objects as well as random fluctuations of these quantities. The technique is employed to explore the possibility of locating millimeter-sized objects immersed in turbid media from time-gated measurements of the transmitted or reflected (near-infrared) light. The simulation results for tissue-like phantoms are compared with experimental transillumination data, and excellent agreement is found. Simulations of time-gated reflection experiments indicate that it may be possible to detect objects of ...
A method is presented to simulate the light propagation in turbid media. Based on a numerical algori...
The suitability and limits of time-resolved transillumination to determine inner details of biologic...
A method is presented to simulate the light propagation in turbid media. Based on a numerical algori...
A numerical method is presented to solve exactly the time-dependent diffusion equation that describe...
A numerical method is presented to solve exactly the time-dependent diffusion equation that describe...
A numerical method is presented to solve exactly the time-dependent diffusion equation that describe...
A simulation technique is employed to explore the possibility of locating millimeter-sized objects, ...
A simulation technique is employed to explore the possibility of locating millimeter-sized objects, ...
A simulation technique is employed to explore the possibility of locating millimeter-sized objects, ...
A simulation technique is employed to explore the possibility of locating millimeter-sized objects, ...
The suitability and limits of time-resolved transillumination to determine inner details of biologic...
The suitability and limits of time-resolved transillumination to determine inner details of biologic...
A method is presented to simulate the light propagation in turbid media. Based on a numerical algori...
A method is presented to simulate the light propagation in turbid media. Based on a numerical algori...
A method is presented to simulate the light propagation in turbid media. Based on a numerical algori...
A method is presented to simulate the light propagation in turbid media. Based on a numerical algori...
The suitability and limits of time-resolved transillumination to determine inner details of biologic...
A method is presented to simulate the light propagation in turbid media. Based on a numerical algori...
A numerical method is presented to solve exactly the time-dependent diffusion equation that describe...
A numerical method is presented to solve exactly the time-dependent diffusion equation that describe...
A numerical method is presented to solve exactly the time-dependent diffusion equation that describe...
A simulation technique is employed to explore the possibility of locating millimeter-sized objects, ...
A simulation technique is employed to explore the possibility of locating millimeter-sized objects, ...
A simulation technique is employed to explore the possibility of locating millimeter-sized objects, ...
A simulation technique is employed to explore the possibility of locating millimeter-sized objects, ...
The suitability and limits of time-resolved transillumination to determine inner details of biologic...
The suitability and limits of time-resolved transillumination to determine inner details of biologic...
A method is presented to simulate the light propagation in turbid media. Based on a numerical algori...
A method is presented to simulate the light propagation in turbid media. Based on a numerical algori...
A method is presented to simulate the light propagation in turbid media. Based on a numerical algori...
A method is presented to simulate the light propagation in turbid media. Based on a numerical algori...
The suitability and limits of time-resolved transillumination to determine inner details of biologic...
A method is presented to simulate the light propagation in turbid media. Based on a numerical algori...