A multi-spectral diffuse reflectance imaging method based on a single snap shot of Red-Green-Blue images acquired with the exposure time of 65 ms (15 fps) was investigated for estimating melanin concentration, blood concentration, and oxygen saturation in human skin tissue. The technique utilizes the Wiener estimation method to deduce spectral reflectance images instantaneously from an RGB image. Using the resultant absorbance spectrum as a response variable and the extinction coefficients of melanin, oxygenated hemoglobin and deoxygenated hemoglobin as predictor variables, multiple regression analysis provides regression coefficients. Concentrations of melanin and total blood are then determined from the regression coefficients using conve...
International audienceThis article presents a multispectral imaging system which, coupled with a neu...
International audienceIn vivo quantitative assessment of skin lesions is an important step in the ev...
Monitoring of tissue blood volume and oxygen saturation using biomedical optics techniques has the p...
A multi-spectral diffuse reflectance imaging method based on a single snap shot of Red-Green-Blue im...
In morphological diagnosis, trained physicians compare medical findings with the typical case develo...
We present a new method for the accurate estimation of diffuse reflectance spectra from RGB values ...
We present a method to determine chromophore concentrations, blood saturation, and epidermal thickne...
Key tissue parameters, e.g., total hemoglobin concentration and tissue oxygenation, are important bi...
Monitoring of tissue blood volume and local oxygen saturation can inform the assessment of tissue he...
Noninvasive and real-time analysis of skin properties is useful in a wide variety of applications. I...
The ability to measure microcirculatory parameters such as hemoglobin oxygen saturation is important...
We present two practical methods for measurement of spectral skin reflectance suited for live subjec...
Skin consists of epidermis and dermis layers that have distinct optical properties. The quantificati...
A number of non invasive methods have been developed to characterize parameters in near-surface skin...
The diffuse reflectance spectrum of human skin in the visible region (400-800 nm) contains informati...
International audienceThis article presents a multispectral imaging system which, coupled with a neu...
International audienceIn vivo quantitative assessment of skin lesions is an important step in the ev...
Monitoring of tissue blood volume and oxygen saturation using biomedical optics techniques has the p...
A multi-spectral diffuse reflectance imaging method based on a single snap shot of Red-Green-Blue im...
In morphological diagnosis, trained physicians compare medical findings with the typical case develo...
We present a new method for the accurate estimation of diffuse reflectance spectra from RGB values ...
We present a method to determine chromophore concentrations, blood saturation, and epidermal thickne...
Key tissue parameters, e.g., total hemoglobin concentration and tissue oxygenation, are important bi...
Monitoring of tissue blood volume and local oxygen saturation can inform the assessment of tissue he...
Noninvasive and real-time analysis of skin properties is useful in a wide variety of applications. I...
The ability to measure microcirculatory parameters such as hemoglobin oxygen saturation is important...
We present two practical methods for measurement of spectral skin reflectance suited for live subjec...
Skin consists of epidermis and dermis layers that have distinct optical properties. The quantificati...
A number of non invasive methods have been developed to characterize parameters in near-surface skin...
The diffuse reflectance spectrum of human skin in the visible region (400-800 nm) contains informati...
International audienceThis article presents a multispectral imaging system which, coupled with a neu...
International audienceIn vivo quantitative assessment of skin lesions is an important step in the ev...
Monitoring of tissue blood volume and oxygen saturation using biomedical optics techniques has the p...