We present a new method for extracting the effective attenuation coefficient and the diffusion coefficient from relative spectrally resolved cw radiance measurements using the diffusion approximation. The method is validated on both simulated and experimental radiance data sets using Intralipid-1% as a test platform. The effective attenuation coefficient is determined from a simple algebraic expression constructed from a ratio of two radiance measurements at two different source-detector separations and the same 90° angle. The diffusion coefficient is determined from another ratio constructed from two radiance measurements at two angles (0° and 180°) and the same source-detector separation. The conditions of the validity of the method as we...
Abstract. We describe a fast, accurate method for determination of the optical coefficients of ‘semi...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
A method is described for finding the optical properties (scattering, absorption, and scattering ani...
We have developed an analytic solution for spatially resolved diffuse reflectance within the deltaP1...
We report a novel diffuse optical spectroscopy probe design for determining optical properties of su...
We introduce a robust method to recover optical absorption, reduced scattering, and single-scatterin...
Many applications seek to measure a sample’s absorption coefficient spectrum to retrieve the chemica...
Separation of absorption and scattering properties of turbid media using relativ
The diffusion approximation to the Boltzmann transport equation is commonly used to analyze data obt...
Noncontact, frequency-domain measurements of diffusely reflected light are used to quantify optical ...
Many applications seek to measure a sample's absorption coefficient spectrum to retrieve the chemica...
We have experimentally investigated the meaning of the effective optical absorption [mu(a)((eff))] a...
In spite of many progresses achieved both with theories and with experiments in studying light propa...
We present a fast and accurate method for real-time determination of the absorption coefficient, the...
This thesis explores four methods for improving quantitative diffuse reflectance spec...
Abstract. We describe a fast, accurate method for determination of the optical coefficients of ‘semi...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
A method is described for finding the optical properties (scattering, absorption, and scattering ani...
We have developed an analytic solution for spatially resolved diffuse reflectance within the deltaP1...
We report a novel diffuse optical spectroscopy probe design for determining optical properties of su...
We introduce a robust method to recover optical absorption, reduced scattering, and single-scatterin...
Many applications seek to measure a sample’s absorption coefficient spectrum to retrieve the chemica...
Separation of absorption and scattering properties of turbid media using relativ
The diffusion approximation to the Boltzmann transport equation is commonly used to analyze data obt...
Noncontact, frequency-domain measurements of diffusely reflected light are used to quantify optical ...
Many applications seek to measure a sample's absorption coefficient spectrum to retrieve the chemica...
We have experimentally investigated the meaning of the effective optical absorption [mu(a)((eff))] a...
In spite of many progresses achieved both with theories and with experiments in studying light propa...
We present a fast and accurate method for real-time determination of the absorption coefficient, the...
This thesis explores four methods for improving quantitative diffuse reflectance spec...
Abstract. We describe a fast, accurate method for determination of the optical coefficients of ‘semi...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
A method is described for finding the optical properties (scattering, absorption, and scattering ani...