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An Improved Electrolytic Pump for Potential Drug Delivery Applications.

, , , and . BIODEVICES, page 295-298. SciTePress, (2014)

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A study of the incubation of microbead agglutination assays in a microfluidic system., , , and . NEMS, page 354-357. IEEE, (2016)Simulation of a Low Frequency Z-Axis SU-8 Accelerometer in CoventorWare and MEMS+., , , , and . UKSim, page 792-797. IEEE, (2013)Electromagnetically powered electrolytic pump and thermo-responsive valve for drug delivery., , , , , and . NEMS, page 5-8. IEEE, (2015)Low-cost rapid prototyping of flexible plastic paper based microfluidic devices., , , and . NEMS, page 175-178. IEEE, (2013)Integrated lenses in polystyrene microfluidic devices., , and . NEMS, page 108-111. IEEE, (2013)Capacitive sensor for continuous monitoring of high-volume droplet microfluidic generation., , , , and . NEMS, page 350-353. IEEE, (2016)Piezoelectric transducer array microspeaker., , , , and . NEMS, page 180-183. IEEE, (2016)Simulation of SU-8 Frequency-Driven Scratch Drive Actuators., , , , , , , and . UKSim, page 803-808. IEEE, (2013)Digital electrostatic acoustic transducer array., , , , and . NEMS, page 225-228. IEEE, (2016)Fabrication of Low-Cost Microfluidic Chip for Terahertz Detection Applications., , , and . NEMS, page 52-55. IEEE, (2018)