Noncontact, frequency-domain measurements of diffusely reflected light are used to quantify optical properties of two-layer tissuelike turbid media. The irradiating source is a sinusoidal intensity-modulated plane wave, with modulation frequencies ranging from 10 to 1500 MHz. Frequency-dependent phase and amplitude of diffusely reflected photon density waves are simultaneously fitted to a diffusion-based two-layer model to quantify absorption (mu(a)) and reduced scattering (mu(s)') parameters of each layer as well as the upper-layer thickness (l). Study results indicate that the optical properties of two-layer media can be determined with a percent accuracy of the order of +/-9% and +/-5% for mu(a) and mu(s)', respectively. The accuracy of ...
We report a novel diffuse optical spectroscopy probe design for determining optical properties of su...
We report a novel diffuse optical spectroscopy probe design for determining optical properties of su...
The basic principles of a non-contact, near-infrared technique for the mapping of layered tissues ar...
Noncontact, frequency-domain measurements of diffusely reflected light are used to quantify optical ...
Noncontact, frequency-domain measurements of diffusely reflected light are used to quantify optical ...
Light propagation in 2-layered turbid media that have an infinitely thick 2nd layer is studied with ...
Light propagation in two-layered turbid media having an infinitely thick second layer is investigate...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
We have used Monte Carlo simulations for a two-layered diffusive medium to investigate the effect of...
We have experimentally investigated the meaning of the effective optical absorption [mu(a)((eff))] a...
We have experimentally investigated the meaning of the effective optical absorption [mu(a)((eff))] a...
In frequency domain photon migration (FDPM), amplitude-modulated light is launched into a turbid med...
We report a novel diffuse optical spectroscopy probe design for determining optical properties of su...
We report a novel diffuse optical spectroscopy probe design for determining optical properties of su...
The basic principles of a non-contact, near-infrared technique for the mapping of layered tissues ar...
Noncontact, frequency-domain measurements of diffusely reflected light are used to quantify optical ...
Noncontact, frequency-domain measurements of diffusely reflected light are used to quantify optical ...
Light propagation in 2-layered turbid media that have an infinitely thick 2nd layer is studied with ...
Light propagation in two-layered turbid media having an infinitely thick second layer is investigate...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
We have used Monte Carlo simulations for a two-layered diffusive medium to investigate the effect of...
We have experimentally investigated the meaning of the effective optical absorption [mu(a)((eff))] a...
We have experimentally investigated the meaning of the effective optical absorption [mu(a)((eff))] a...
In frequency domain photon migration (FDPM), amplitude-modulated light is launched into a turbid med...
We report a novel diffuse optical spectroscopy probe design for determining optical properties of su...
We report a novel diffuse optical spectroscopy probe design for determining optical properties of su...
The basic principles of a non-contact, near-infrared technique for the mapping of layered tissues ar...