Physiological Measurement · 2013 · 12 citations · 23 references
EngineeringMicroscopyBiomedical EngineeringMedical InstrumentationTracer ParticlesTissue ImagingHigh Speed PhotographyComputational ImagingClinical ChemistryLaboratory MedicineMicrofluidicsBlood Flow MeasurementMolecular ImagingBiophysicsNovel Imaging MethodRadiologyMedical ImagingMedicineHigh Speed VersusVelocity ProfileBiomedical AnalysisCytometryMedical Image ComputingMicroscope Image ProcessingBioimage AnalysisMicro-particle Image VelocimetryBiomedical ImagingFlow MeasurementCell DetectionImagingRed Blood Cells
High speed photography in micro-particle image velocimetry (μPIV) using red blood cells as tracer particles and the use of fluorescing tracer particles (in conjunction with pulsed images) are directly compared by using both methods simultaneously. Measurements are taken on the same blood sample in the same microchip using both methods. This work directly and statistically compares the two methods of μPIV measurement in a controlled in vitro environment for the first time in literature. The pulsed method using fluorescing tracer particles is found to decrease the depth of correlation as expected, and to better represent the shape of the velocity profile. Two methods of velocity characterization are used (single and double parameter) and the pulsed images provide better shape representation in both cases.
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A particle image velocimetry system for microfluidics
Juan G. Santiago, Steven T. Wereley, Carl Meinhart et al. · Experiments in Fluids · 1998 · 1.1K citations
Flexible Methods for Microfluidics
George M. Whitesides, Abraham D. Stroock · Physics Today · 2001 · 583 citations · Full text