Journal of Biomedical Optics · 2007 · 134 citations · 18 references
HolographySuspension CellsEngineeringMicroscopyBiomedical EngineeringDigital HolographyMicroscopy MethodPhase DistributionLight MicroscopyIntegral Refractive IndexBiophysicsHistopathologyComputational Optical ImagingCell BiologyCell EngineeringRefractive IndexMicroscope Image ProcessingBiomedical ImagingQuantitative Phase ImagingMedicine
A method for the determination of the integral refractive index of living cells in suspension by digital holographic microscopy is described. Digital holographic phase contrast images of spherical cells in suspension are recorded, and the radius as well as the integral refractive index are determined by fitting the relation between cell thickness and phase distribution to the measured phase data. The algorithm only requires information about the refractive index of the suspension medium and the image scale of the microscope system. The specific digital holographic microscopy advantage of subsequent focus correction allows a simultaneous investigation of cells in different focus planes. Results obtained from human pancreas and liver tumor cells show that the integral cellular refractive index decreases with increasing cell radius.
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Numerical methods for least squares problems
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Numerical Analysis, Mathematical Programming, Engineering +16
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Jochen Guck, Revathi Ananthakrishnan, Hamid Mahmood et al. · Biophysical Journal · 2001 · 964 citations · Full text