2015
Three-dimensional, three-vector-component velocimetry of cilia-driven fluid flow using correlation-based approaches in optical coherence tomography
Huang BK, Gamm UA, Bhandari V, Khokha MK, Choma MA. Three-dimensional, three-vector-component velocimetry of cilia-driven fluid flow using correlation-based approaches in optical coherence tomography. Biomedical Optics Express 2015, 6: 3515-3538. PMID: 26417520, PMCID: PMC4574676, DOI: 10.1364/boe.6.003515.Peer-Reviewed Original ResearchDigital particle image velocimetryFluid flowVelocimetry measurementsParticle image velocimetryImage velocimetryFlow performanceFlow velocity measurementsVelocimetryVelocity measurementsLow-dimensional measurementsDimensional measurementsS regimeFlowNoise ratioCilia-driven fluid flowMeasurementsFlow imagingCorrelation-based approach
2014
Resolving directional ambiguity in dynamic light scattering-based transverse motion velocimetry in optical coherence tomography.
Huang BK, Choma MA. Resolving directional ambiguity in dynamic light scattering-based transverse motion velocimetry in optical coherence tomography. Optics Letters 2014, 39: 521-4. PMID: 24487855, PMCID: PMC4174353, DOI: 10.1364/ol.39.000521.Peer-Reviewed Original ResearchConceptsTotal transverseDirectional velocityFunction calibrationTomography approachDirectional ambiguityScan axisDirectional velocity componentsThree-component velocimetryOptical coherence tomographyTransverse planeVelocity componentsLongitudinal angleCoherence tomographyDoppler velocimetryVelocimetryTransversePlane
2011
Microfluidic characterization of cilia-driven fluid flow using optical coherence tomography-based particle tracking velocimetry
Jonas S, Bhattacharya D, Khokha MK, Choma MA. Microfluidic characterization of cilia-driven fluid flow using optical coherence tomography-based particle tracking velocimetry. Biomedical Optics Express 2011, 2: 2022-2034. PMID: 21750777, PMCID: PMC3130586, DOI: 10.1364/boe.2.002022.Peer-Reviewed Original Research