International audienceOptical properties of fresh and frozen tissues of rat heart, kidney, brain, liver, and muscle were measured in the 450-to 700-nm range. The total reflectance and transmittance were measured using a well-calibrated integral sphere setup. Absorption coefficient μ a and reduced scattering coefficient μ 0 s were derived from the experimental measurements using the inverse adding doubling technique. The influence of cryogenic processing on optical properties was studied. Interindividual and intraindividual variations were assessed. These new data aim at filling the lack of validated optical properties in the visible range especially in the blue-green region of particular interest for fluorescence and optogenetics preclinica...
A simple optical dosimeter was used to measure the light intensity in rat liver and muscle in vivo w...
Injured tissues are often accompanied by morphological or biochemical changes that can be detected o...
Optical characterization and internal structure of biological tissues is highly important for biomed...
International audienceOptical properties of fresh and frozen tissues of rat heart, kidney, brain, li...
An optical fiber-based supercontinuum setup and a custom-made spectrophotometer that can measure spe...
The optical properties of a rat muscle and myocardium were measured at two wavelengths 980 and 1860 ...
With the objective to study the variation of optical properties of rat muscle during optical clearin...
The optical properties (absorption and scattering coefficients and the scattering anisotropy factor)...
In this work, we demonstrate the results of measuring the optical properties of rat liver tissue sli...
The development of photomedical modalities for diagnostics and treatment has created a need for know...
Spatially resolved reflectance is a frequently used technique to derive optical properties and physi...
531-535Optical characteristics of freshly isolated tissues depend on their color and composition. ...
We present a systematic characterization of the optical properties (µa and µs') of nine representati...
A simple optical dosimeter was used to measure the light intensity in rat liver and muscle in vivo w...
Biological tissues are generally highly scattering samples and the determination of their optical pr...
A simple optical dosimeter was used to measure the light intensity in rat liver and muscle in vivo w...
Injured tissues are often accompanied by morphological or biochemical changes that can be detected o...
Optical characterization and internal structure of biological tissues is highly important for biomed...
International audienceOptical properties of fresh and frozen tissues of rat heart, kidney, brain, li...
An optical fiber-based supercontinuum setup and a custom-made spectrophotometer that can measure spe...
The optical properties of a rat muscle and myocardium were measured at two wavelengths 980 and 1860 ...
With the objective to study the variation of optical properties of rat muscle during optical clearin...
The optical properties (absorption and scattering coefficients and the scattering anisotropy factor)...
In this work, we demonstrate the results of measuring the optical properties of rat liver tissue sli...
The development of photomedical modalities for diagnostics and treatment has created a need for know...
Spatially resolved reflectance is a frequently used technique to derive optical properties and physi...
531-535Optical characteristics of freshly isolated tissues depend on their color and composition. ...
We present a systematic characterization of the optical properties (µa and µs') of nine representati...
A simple optical dosimeter was used to measure the light intensity in rat liver and muscle in vivo w...
Biological tissues are generally highly scattering samples and the determination of their optical pr...
A simple optical dosimeter was used to measure the light intensity in rat liver and muscle in vivo w...
Injured tissues are often accompanied by morphological or biochemical changes that can be detected o...
Optical characterization and internal structure of biological tissues is highly important for biomed...