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Titlebook: Applications of Electrochemistry and Nanotechnology in Biology and Medicine I; Noam Eliaz Book 2011 Springer Science+Business Media, LLC 2

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Rodrigo Franco,Laura Zavala-Florest, about 80% of implant devices in the medical field still consist of metals, and this share is currently maintained, because of their high strength, toughness, and durability. To-date, metallic biomaterials cannot be replaced with ceramics or polymers. The requirements for metallic medical devices are summarized in Table 1.
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A Disintegrin and Metalloprotease chains. This new frontier in electrochemistry, which has been developing over the past two decades,. uses chemically tunable, nanoscopic electrode structures for addressing fundamental questions in charge exchange between electrodes and biomolecules..
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Monitoring of Cellular Dynamics with Electrochemical Detection Techniques,er of targets and ways to treat diseases; clinical studies of disease manifestation can effectively be translated to the level of certain genes and their products, proteins. The traditional way of finding active compounds to treat different diseases has relied on biochemical assays to modulate the f
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Fundamental Studies of Long- and Short-Range Electron Exchange Mechanisms between Electrodes and Prconducting crystalline solids, amorphous glasses, fluidic/viscous liquids, and biomolecules. This basic kinetic motif is an essential element for a broad variety of vital biological and technological processes.. New directions in electrochemistry, a discipline which has contributed greatly to develo
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