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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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书目名称Synthetic Microstructures in Biological Research
编辑Joel M. Schnur,Martin Peckerar,Helen M. Stratton
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图书封面Titlebook: Synthetic Microstructures in Biological Research;  Joel M. Schnur,Martin Peckerar,Helen M. Stratton Book 1992 Springer Science+Business Med
描述The Third International Conference on Synthetic Microstructures in Biological Research (SMIBR) was held in Williamsburg, Virginia, September 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 Electronic Engineers, Inc. (IEEE) Service Center (908­ 562-5418). The purpose of these conferences is to provide an interface between the engineering community and those at the cutting edge of biological and related material science. The overriding motive for assembling representatives from these diverse disciplines is clear. Engineers, even in 1986, could manipulate materials over dimensional scales on the order of those critical to biological systems. The devices that emerge from these manipulations could then be tailored to monitor system function more directly with significantly more localization than ever before. Thus, one important goal of the meetings is to provide the detailed specifications required for effective interfacing of devices with biol
出版日期Book 1992
关键词Monitor; electron microscopy; microscope; microscopy; neural network
版次1
doihttps://doi.org/10.1007/978-1-4899-1630-3
isbn_softcover978-1-4899-1632-7
isbn_ebook978-1-4899-1630-3
copyrightSpringer Science+Business Media New York 1992
The information of publication is updating

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https://doi.org/10.1007/978-1-4899-1630-3Monitor; electron microscopy; microscope; microscopy; neural network
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The Effect of Modification of the Polar Headgroups of Acidic Diacetylenic Phospholipids on Their Bileadgroup size, pH, and the counteranion present in the aqueous medium. The results are discussed with regard to the manner in which the modifications affect the ability of the metal ion to bind to the headgroup and affect headgroup mobility and the consequent affect on acyl chain packing.
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How Well can the Scanning Tunneling Microscope Distinguish between Two Very Similar Molecules?erent in the interpretation of those images. The increasing commercial availability of scanning probe microscopes engenders the notion that these techniques are well understood when, in fact, there remain a large number of crucial questions about the imaging process.
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Interferometric Investigations of Bilayer Lipid Membrane Deformation and Flexoelectricityes which mimic bulk photoelectrical and magneto-optical devices.. Continued utilization of BLMs for biophysical and solid-state modeling requires an understanding of their physical-mechanical properties.
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