International audienceWe show how to apply the Mellin-Laplace transform to process time-resolved reflectance measurements for diffuse optical tomography. We illustrate this method on simulated signals incorporating the main sources of experimental noise and suggest how to fine-tune the method in order to detect the deepest absorbing inclusions and optimize their localization in depth, depending on the dynamic range of the measurement. To finish, we apply this method to measurements acquired with a setup including a femtosecond laser, photomultipliers and a time-correlated single photon counting board. Simulations and experiments are illustrated for a probe featuring the interfiber distance of 1.5 cm and show the potential of time-resolved t...
International audienceWe design a Time-Resolved (TR) instrumentation coupled with a reconstruction m...
International audienceWe investigate the use of the Mellin–Laplace transform for reconstructing opti...
International audienceWe demonstrate the loss of depth sensitivity induced by the instrument respons...
International audienceWe show how to apply the Mellin-Laplace transform to process time-resolved ref...
Simulations and phantom measurements are used to evaluate the ability of time-domain diffuse optical...
Detecting and localizing precisely contrast in depth is the major challenge of reflectance Diffuse O...
La tomographie optique diffuse (TOD) est une technique d'imagerie médicale émergente utilisant la lu...
International audienceDetecting and localizing precisely contrast in depth is the major challenge of...
International audienceIn this paper, we show how the Mellin-Laplace Transform helps to obtain robust...
Diffuse optical tomography (DOT) is an emerging medical imaging technique using near-infrared light ...
In order to increase sensitivity in the depth of diffusive media and to separate chromophores with d...
International audienceSimulations and phantom measurements are used to evaluate the ability of time-...
International audienceIn order to increase sensitivity in the depth of di usive media and to separat...
International audienceWe design a Time-Resolved (TR) instrumentation coupled with a reconstruction m...
International audienceWe investigate the use of the Mellin–Laplace transform for reconstructing opti...
International audienceWe demonstrate the loss of depth sensitivity induced by the instrument respons...
International audienceWe show how to apply the Mellin-Laplace transform to process time-resolved ref...
Simulations and phantom measurements are used to evaluate the ability of time-domain diffuse optical...
Detecting and localizing precisely contrast in depth is the major challenge of reflectance Diffuse O...
La tomographie optique diffuse (TOD) est une technique d'imagerie médicale émergente utilisant la lu...
International audienceDetecting and localizing precisely contrast in depth is the major challenge of...
International audienceIn this paper, we show how the Mellin-Laplace Transform helps to obtain robust...
Diffuse optical tomography (DOT) is an emerging medical imaging technique using near-infrared light ...
In order to increase sensitivity in the depth of diffusive media and to separate chromophores with d...
International audienceSimulations and phantom measurements are used to evaluate the ability of time-...
International audienceIn order to increase sensitivity in the depth of di usive media and to separat...
International audienceWe design a Time-Resolved (TR) instrumentation coupled with a reconstruction m...
International audienceWe investigate the use of the Mellin–Laplace transform for reconstructing opti...
International audienceWe demonstrate the loss of depth sensitivity induced by the instrument respons...