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A microscale glucose sensor for biomedical applications was fabricated utilizing the enzyme glucose oxidase and the polymer poly(o-phenylenediamine). A solution containing the enzyme immobilized in the polymer was deposited on interdigitated microelectrodes to form sensor arrays. This was achieved using novel nanopatterning technology offered by BioForce NanoeNablertrade. Samples containing different...
The interdisciplinary field of implantable medical microsystems is gaining immense momentum due to the undoubted potential these devices hold in significantly improving the healthcare and also in the basic understanding of several human diseases. The most widely known success stories in this field are those of pacemakers and cochlear implants. However there is a clear need for such devices to mitigate...
We present a MEMS sensor for continuous glucose monitoring for diabetes management. The device consists of a microcantilever, which is driven by remote magnetic field and situated in a microchamber separated from the sensing environment by a semi-permeable membrane. As glucose concentration varies, viscosity changes induced by glucose/copolymer binding in a poly(acrylamide-ran-3-acrylamidophenylboronic...
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