Presently time-resolved optical spectroscopy is applied with increasing success for non-invasive medical diagnostics mainly up to 1100 nm. We extended the investigation range beyond this limit, employing a supercontinuum fiber laser source and a Single-Photon Avalanche Diode in InGaAs/InP operated in gated mode. First in-vivo measurements were performed on the forearm and the breast of two healthy volunteers, reaching up to 1360 nm
The feasibility of in vivo measurements in the range of 1000 to 1100 nm and the potential benefits o...
A system for time-domain optical spectroscopy of diffusive media in the 1100-1700 nm range based on ...
The optical properties (absorption and transport scattering) of biological tissues (ann, abdomen, an...
Presently time-resolved optical spectroscopy is applied with increasing success for non-invasive med...
Time-resolved spectroscopy has been exploited mostly up to 1100 nm: our system reaches up to 1700 nm...
Time-resolved spectroscopy has been exploited mostly up to 1100 nm: our system reaches up to 1700 nm...
Time-domain diffuse optical spectroscopy is being applied with increasing success to study highly sc...
Time domain diffuse optical spectroscopy provides the absorption and scattering properties of biolog...
Time-domain diffuse optical spectroscopy has become a powerful tool to study highly scattering media...
Optical spectroscopy is becoming a very valuable diagnostic tool in biomedical research. Time-of-fli...
The feasibility of in vivo measurements in the range of 1000 to 1100 nm and the potential benefits o...
A system for time-domain optical spectroscopy of diffusive media in the 1100-1700 nm range based on ...
The optical properties (absorption and transport scattering) of biological tissues (ann, abdomen, an...
Presently time-resolved optical spectroscopy is applied with increasing success for non-invasive med...
Time-resolved spectroscopy has been exploited mostly up to 1100 nm: our system reaches up to 1700 nm...
Time-resolved spectroscopy has been exploited mostly up to 1100 nm: our system reaches up to 1700 nm...
Time-domain diffuse optical spectroscopy is being applied with increasing success to study highly sc...
Time domain diffuse optical spectroscopy provides the absorption and scattering properties of biolog...
Time-domain diffuse optical spectroscopy has become a powerful tool to study highly scattering media...
Optical spectroscopy is becoming a very valuable diagnostic tool in biomedical research. Time-of-fli...
The feasibility of in vivo measurements in the range of 1000 to 1100 nm and the potential benefits o...
A system for time-domain optical spectroscopy of diffusive media in the 1100-1700 nm range based on ...
The optical properties (absorption and transport scattering) of biological tissues (ann, abdomen, an...