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Titlebook: Synthetic Microstructures in Biological Research; Joel M. Schnur,Martin Peckerar,Helen M. Stratton Book 1992 Springer Science+Business Med

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9-12, 1991. This book represents the compilation of many of the papers and posters presented at the meeting. Publications resulting from previous SMIBR meetings held at Airlie House, Airlie, Virginia (March 24-26, 1986 and March 20-23, 1988) can be obtained from the Institute of Electrical and Elec
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Advanced Materials Processes for Bio-Probes to manipulate structures using a variety of materials has improved dramatically. We can currently fabricate objects with micron and submicron features out of silicon, polymers and metal. The geometries of these structures can be tailored to interface directly with living cells. In this paper, we re
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Genetically Engineered Protein Pores as Components of Synthetic Microstructuresonfer novel permeability properties upon them. These films in turn would have several technological applications, which are discussed below, including acting as molecular filters in sensors or as components of microelectronic devices. The development of genetically engineered pores for this purpose
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Structural Characterization of Molecular Interface Layers Using Neutron and X-Ray Reflectivity Technifferent fabrication and characterization techniques. One class of microstructures that is at the boundary between life and materials sciences, and certainly has been associated closer to the latter in the past, is that of molecularly structured planar interface films. In fact, Langmuir-Blodgett (LB
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