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Advances in neuroprostheses are strongly dependent on the development of microelectrodes with an enhanced ability to selectively record or stimulate neural signals. Selectivity for a microelectrode depends on its ability to interact with a small number of neurons and/or nerve fibers. In order to achieve selective electrical transduction, the surface area of active site should be on the order of tens...
Advances in silicon micromachining have lead to development of sophisticated neural interfaces such as the Utah slant electrode array (USEA). The unique architecture of the USEA comprises of electrodes which increase in length in one direction, while being constant in length in the other. When implanted into a peripheral nerve, the tips of the electrodes penetrate nerve fascicles, and are close to...
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