textabstractReflectance spectra measured in Intralipid (IL) close to the source are sensitive to wavelength-dependent changes in reduced scattering coefficient (μs ′) and scattering phase function (PF). Experiments and simulations were performed using device designs with either single or separate optical fibers for delivery and collection of light in varying concentrations of IL. Spectral reflectance is not consistently linear with varying IL concentration, with PF-dependent effects observed for single fiber devices with diameters smaller than ten transport lengths and for separate source-detector devices that collected light at less than half of a transport length from the source. Similar effects are thought to be seen in tissue, limiting ...
We present a versatile and compact fiber optic probe for real-time determination of the absorption a...
In this paper, simulations by Monte Carlo method are applied to reveal the effect of numerical apert...
Thesis (Ph.D.)--Boston UniversityLight interacts with biological tissue through two predominant mech...
Reflectance spectra measured in Intralipid (IL) close to the source are sensitive to wavelength -dep...
Reflectance spectra measured in Intralipid (IL) close to the source are sensitive to wavelength-depe...
Multiple diameter single fiber reflectance (MDSFR) measurements of turbid media can be used to deter...
This paper presents a relationship between the intensity collected by a single fiber reflectance dev...
Multiple diameter single fiber reflectance (MDSFR) measurements of turbid media can be used to deter...
textabstractMulti-diameter single fiber reflectance (MDSFR) spectroscopy enables quantitative measur...
Local and superficial optical property characterization of biological tissues can be performed by me...
Multi diameter single fiber reflectance (MDSFR) spectroscopy is a non-invasive optical technique bas...
Light reflectance has been widely used to diagnose random media in both in situ and in vivo applicat...
This study utilizes experimentally validated Monte Carlo simulations to identify a mathematical form...
SIGNIFICANCE: The combination of reflectance and fluorescence spectroscopy allows the determination ...
Intralipid is a material widely employed for the preparation of phantoms simulating optical properti...
We present a versatile and compact fiber optic probe for real-time determination of the absorption a...
In this paper, simulations by Monte Carlo method are applied to reveal the effect of numerical apert...
Thesis (Ph.D.)--Boston UniversityLight interacts with biological tissue through two predominant mech...
Reflectance spectra measured in Intralipid (IL) close to the source are sensitive to wavelength -dep...
Reflectance spectra measured in Intralipid (IL) close to the source are sensitive to wavelength-depe...
Multiple diameter single fiber reflectance (MDSFR) measurements of turbid media can be used to deter...
This paper presents a relationship between the intensity collected by a single fiber reflectance dev...
Multiple diameter single fiber reflectance (MDSFR) measurements of turbid media can be used to deter...
textabstractMulti-diameter single fiber reflectance (MDSFR) spectroscopy enables quantitative measur...
Local and superficial optical property characterization of biological tissues can be performed by me...
Multi diameter single fiber reflectance (MDSFR) spectroscopy is a non-invasive optical technique bas...
Light reflectance has been widely used to diagnose random media in both in situ and in vivo applicat...
This study utilizes experimentally validated Monte Carlo simulations to identify a mathematical form...
SIGNIFICANCE: The combination of reflectance and fluorescence spectroscopy allows the determination ...
Intralipid is a material widely employed for the preparation of phantoms simulating optical properti...
We present a versatile and compact fiber optic probe for real-time determination of the absorption a...
In this paper, simulations by Monte Carlo method are applied to reveal the effect of numerical apert...
Thesis (Ph.D.)--Boston UniversityLight interacts with biological tissue through two predominant mech...