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Cellular sorting with femtoliter fluid displacement for integrated flow cytometry systems

Long Beach, CA(2006)

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Abstract
An acousto-optical microfluidic flow cytometer featuring femtoliter fluid-displacement was demonstrated with cellular sorting efficiencies at upwards of 99% at 5 kHz frequency actuation. Simulation and validation was performed using Reynolds stress model for turbulent particle flows.
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Key words
acousto-optical devices,biomems,biological fluid dynamics,cellular biophysics,integrated optics,micro-optomechanical devices,microfluidics,turbulence,reynolds stress model,acousto-optical microfluidic flow cytometer,cellular sorting efficiency,femtoliter fluid displacement,integrated flow cytometry systems,turbulent particle flows,120.7250 velocimetry,130.3120 integrated optics devices,130.6010 sensors,170.1470 blood/tissue constituent monitoring,170.1530 cell analysis,sorting,flow cytometry,atmospheric modeling,computational modeling,frequency
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