Applied Optics · 2006 · 172 citations · 9 references
EngineeringBiomedical EngineeringLight Scattering SpectroscopyFresnel Reflectance MeasurementsOptical PropertiesClinical ChemistryOptical SystemsOptical SpectroscopyBiophysicsComplex Refractive IndexOphthalmologyBiophotonicsRefractive IndexNative HemoglobinSpectroscopyModel FunctionMedicinePhysical HemolysisOptical Sensor
The real part of the complex refractive index of oxygenated native hemoglobin solutions dependent on concentration was determined in the wavelength range 250 to 1100 nm by Fresnel reflectance measurements. The hemoglobin solution was produced by physical hemolysis of human erythrocytes followed by ultracentrifugation and filtration. A model function is presented for calculating the refractive index of hemoglobin solutions depending on concentration in the wavelength range 250 to 1100 nm.
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Refractometry and Interferometry of Living Cells*†
R. Barer · Journal of the Optical Society of America · 1957 · 282 citations
Single scattering by red blood cells
Martin Hammer, Dietrich Schweitzer, Bernhard Michel et al. · Applied Optics · 1998 · 212 citations