Computational Modeling and Measurement of Electro - osmosis
نویسندگان
چکیده
Overview Membranes in the outer hair cell lateral wall form a naturally occurring nanostructure which acts as a microelectromechanical (MEM) system. Computational and optical techniques are being developed to predict, verify and refine the description of nanoscale behavior in the outer hair cell (OHC) lateral wall. The biological, engineering and physics expertise of an interdisciplinary three-member team investigate electro-osmotic fluid movement in the cell’s 30 nm extracisternal space. Nature may have co-opted electro-osmosis as the most efficient means of achieving bulk flow in nanoscale structures. The technology developed in describing this phenomenon in the outer hair cell can be applied to man-made nanoscale devices.
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Computational Modeling and Measurement of Electro - osmosis NSF Functional Nanostructures
Overview Membranes in the outer hair cell lateral wall form a naturally occurring nanostructure which acts as a microelectromechanical (MEM) system. Computational and optical techniques are being developed to predict, verify and refine the description of nanoscale behavior in the outer hair cell (OHC) lateral wall. The biological, engineering and physics expertise of an interdisciplinary three-...
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