The suitability and limits of time-resolved transillumination to determine inner details of biological tissues are investigated by phantom experiments. The achievable improvement is demonstrated by using different phantoms (absorbing objects embedded in a turbid medium). By means of line-scans across a sharp edge the spatial resolution and its dependence on temporal resolution can be determined. To demonstrate the physical resolution according to the Rayleigh-criterion, measurements were performed on blackened bead pairs. Investigations with partially transparent beads demonstrate the high sensitivity of time-resolving techniques with respect to variations in scattering or absorption coefficients
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 time-gated technique to improve the possibility of localizing spatial differences in absorption wh...
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...
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...
The applicability and limits of time-resolved transillumination to determine the internal details of...
The applicability and limits of time-resolved transillumination to determine the internal details of...
The applicability and limits of time-resolved transillumination to determine the internal details of...
The applicability and limits of time-resolved transillumination to determine the internal details of...
The applicability and limits of time-resolved transillumination to determine the internal details of...
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, ...
A time-gated technique to improve the possibility of localizing spatial differences in absorption wh...
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...
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...
The applicability and limits of time-resolved transillumination to determine the internal details of...
The applicability and limits of time-resolved transillumination to determine the internal details of...
The applicability and limits of time-resolved transillumination to determine the internal details of...
The applicability and limits of time-resolved transillumination to determine the internal details of...
The applicability and limits of time-resolved transillumination to determine the internal details of...
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, ...
A time-gated technique to improve the possibility of localizing spatial differences in absorption wh...