Saves chip area to allow/maintain device miniaturization.Ripple-rejection technology consumes no additional power by utilizing a passive design.Design is considerably simpler than current state-of-the-art devices.
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Increases repetition time by several fold with no corresponding sacrifice in scan timeImaging tissues with long relaxation times that are otherwise difficult to visualize with standard fast gradient echo techniques
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Allows for faster operative timeStronger, watertight anastomosesPrevents uncoupling and sperm leakage
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The utility has been demonstrated in patients with hyperapoB (Cianflone et. al J. Clin. Invest. 1990, 85(3):722; Journal of Lipid Research, 39, 884-891, 1998) who demonstrated significantly reduced levels of ASP commensurate with increased hepatic VLDL production. .
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Framework for properties-driven, high performance dielectric-based thin electromagnetic metadevicesLow costCompact componentsScalable fabrication Rapid versatile design and prototyping
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