Publication | Closed Access
Microscopy imaging and quantitative phase contrast mapping in turbid microfluidic channels by digital holography
86
Citations
16
References
2012
Year
HolographyEngineeringMicroscopyBiomedical EngineeringSharp ImagingDigital HolographyClear ImagingMicroscopy MethodTurbid Microfluidic ChannelsPorous MediaLight MicroscopyMicrofluidicsBiophysicsDoppler Frequency ShiftImagingBiophotonicsBiomedical ImagingMicroscopy ImagingLab-on-a-chipQuantitative Phase ImagingMedicineCell Imaging
We show that sharp imaging and quantitative phase-contrast microcopy is possible in microfluidics in flowing turbid media by digital holography. In fact, in flowing liquids with suspended colloidal particles, clear vision is hindered and cannot be recovered by any other microscopic imaging technique. On the contrary, using digital holography, clear imaging is possible thanks to the Doppler frequency shift experienced by the photons scattered by the flowing colloidal particles, which do not contribute to the interference process, i.e. the recorded hologram. The method is illustrated and imaging results are demonstrated for pure phase objects, i.e. biological cells in microfluidic channels.
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