January 1970

High-speed multiphoton absorption polymerization makes possible the fabrication of microfluidic systems that can incorporate channels with different heights and highly complex cross-sections in a single device.

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A thin (currently [similar]1 cm) platform for simultaneous photoluminescence-based sensing of multi-bioanalytes. It includes microfluidic features ultrasonically micro-embossed on foamed polypropylene lab-on-CD, sub-micron thick OLED pixels, and a photodetector array.

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Microfluidic cell culture systems for drug research

by Min-Hsien Wu on January 1, 1970 · 0 comments

Fundamentals, niches, techniques, applications and challenges

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A novel method for protein patterning with single micron resolution: the proteins adsorb onto thermoresponsive ppNIPAM film by using a computer-controlled laser beam.

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Platelet contractile forces play a major role in thrombosis and hemostasis. We have developed a new approach to analyze platelet forces at the microscale using flexible post sensor arrays.

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We demonstrate a method of scaling up cell-trapping lateral junctions to a standard 1536-well microtiter plate format for the rapid analysis of compounds targeting cellular ion channels.

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We report a new method for measuring the streaming potential/current in size-controlled 2D extended-nanospace on glass substrate to investigate chemistry and fluidics in extended-nanospace.

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Microfabrication offers new possibilities to design fluidic environments for reducing cellular stress during the filtration of circulating tumor cells.

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Contactless dielectrophoresis (cDEP) is a recently developed method of cell manipulation in which the electrodes are physically isolated from the sample. Here we present two microfluidic devices capable of selectively isolating live human leukemia cells from dead cells utilizing their electrical signatures.

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A wireless induction heating system in a microfluidic device was devised for cell lysis to achieve convenience, portability and economic efficiency by wireless operation, easy fabrication and disposability.

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A microfluidic setup for water-methanol distillation is proposed by generating a temperature gradient on a miniaturized system of vacuum membrane distillation.

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