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The article consists of a Powerpoint presentation on development of micro-electrokinetic devices for biomedical applications. The areas discussed include: micro-electro-mechanical systems; bioMEMS technology; biochip; fluidics; lab-on-chip devices; electroosmosis; cell electromanipulation; dielectrophoresis CMOS chip; cell therapy and diagnosis; and cell isolation challenge; etc. etc.
There are many examples of creatures in the natural world with the ability to sense thermal radiation including pit vipers and fire-seeking beetles. This work has sought inspiration from sensors in the natural world and has investigated a disruptive MEMS-based technology with the potential to achieve high performance uncooled infra red detection at low cost. The novel transduction is based on individual...
The present work reports a simple, rapid and versatile strategy for glycoprotein immobilization, based on the targeted functionalization of carbohydrate residues with disulphide "anchors" derivatives able to spontaneously chemisorb onto gold, with no need of surface pre-functionalization. Different glycoproteins as enzymes and antibodies were chemically modified using this "one step"...
A design for a wireless microsensor that can be injected into the human brain to transmit motor cortical signals to an external computer is outlined in this paper. The design covers the electronic system, including communications, and a mechanical system for deploying micro-wings that help prevent motion within the brain, and increase the communication potential of the sensor.
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