Record ID | harvard_bibliographic_metadata/ab.bib.12.20150123.full.mrc:681063834:4930 |
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LEADER: 04930nam a2200469 a 4500
001 012803733-4
005 20110920113317.0
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008 110223s2011 nyua b 001 0 eng d
010 $a2011926794
020 $a1617791040
020 $a9781617791048
020 $a9781617791055
035 0 $aocn703548462
040 $aYDXCP$cYDXCP
050 04 $aQH212.A78$bA86 2011
060 00 $aW1$bME9616J v.736 2011
060 10 $aQH 212.A78
245 00 $aAtomic force microscopy in biomedical research :$bmethods and protocols /$cedited by Pier Carlo Braga, Davide Ricci.
260 $aNew York :$bHumana Press,$cc2011.
300 $axiv, 508 p. :$bill. (some col.) ;$c27 cm.
490 1 $aSpringer protocols
490 1 $aMethods in molecular biology,$x1940-6029,$x1064-3745 ;$v736
504 $aIncludes bibliographical references and index
530 $aAlso available in an electronic version.
538 $aMode of access: World Wide Web.
505 00 $tHow the atomic force microscope works /$rBruno Torre, Davide Ricci, and Pier Carlo Braga --$tMeasurement methods in atomic force microscopy /$rBruno Torre [and others] --$tRecognizing and avoiding artifacts in atomic force microscopy imaging /$rClaudio Canale [and others] --$tImaging the spatial orientation of subunits within membrane receptors by atomic force microscopy /$rStewart M. Carnally, J. Michael Edwardson, and Nelson P. Barrera --$tHigh resolution imaging of immunoglobulin G antibodies and other biomolecules using amplitude modulation atomic force microscopy in air /$rSergio Santos and Neil H. Thomson --$tAtomic force microscopy of ex vivo amyloid fibrils /$rClaudio Canale, Annalisa Relini, and Alessandra Gliozzi --$tStudying collagen self-assembly by time-lapse high-resolution atomic force microscopy /$rClemens M. Franz and Daniel J. Muller --$tAtomic force microscopy imaging of human metaphase chromosomes in liquid /$rOsamu Hoshi and Tatsuo Ushiki --
505 00 $tAtomic force microscopy of proteasome assemblies /$rMaria Gaczynska and Pawel A. Osmulski --$tAtomic force microscopy of isolated mitochondria /$rBradley E. Layton and M. Brent Boyd --$tImaging and interrogating native membrane proteins using the atomic force microscope /$rAndreas Engel --$tAtomic force microscopy investigation of viruses /$rAlexander McPherson and Yurii G. Kuznetsov --$tDetermination of the kinetic on- and off-rate of single virus-cell interactions /$rChristian Rankl [and others] --$tAtomic force microscopy as a tool for the study of the ultrastructure of trypanosomatid parasites /$rWanderley de Souza [and others] --$tNormal and pathological erythrocytes studied by atomic force microscopy /$rAndreas Ebner, Hermann Schillers, and Peter Hinterdorfer --$tGrowth cones of living neurons probed by the atomic force microscope /$rDavide Ricci, Massimo Grattarola, and Mariateresa Tedesco --$tHighlights on ultrastructural pathology of human sperm /
505 00 $rNarahari V. Joshi, Ibis Cruz, and Jesus A. Osuna --$tHigh-speed atomic force microscopy and biomolecular processes /$rTakayuki Uchihashi and Toshio Ando --$tAtomic force microscopy in mechanobiology : measuring microelastic heterogeneity of living cells /$rEvren U. Azeloglu and Kevin D. Costa --$tForce-clamp measurements of receptor-ligand interactions /$rFelix Rico, Calvin Chu, and Vincent T. Moy --$tMeasuring cell adhesion forces : theory and principles /$rMartin Benoit and Christine Selhuber-Unkel --$tNanoscale investigation on E. coli adhesion to modified silicone surfaces /$rTing Cao [and others] --$tImaging bacterial shape, surface, and appendages before and after treatment with antibiotics /$rPier Carlo Braga and Davide Ricci --$tThymol-induced alterations in Candida albicans imaged by atomic force microscopy /$rPier Carlo Braga and Davide Ricci --
505 00 $tAtomic force microscope-enabled studies of integrin-extracellular matrix interactions in vascular smooth muscle and endothelial cells /$rZhe Sun and Gerald A. Meininger --$tAtomic force microscopy studies on circular DNA structural changes by vincristine and aspirin /$rZhongdang Xiao [and others] --$tCombined atomic force microscopy and fluorescence microscopy /$rMiklos S.Z. Kellermayer --$tChemical modifications of atomic force microscopy tips /$rRegis Barattin and Normand Voyer --$tAtomic force microscopy as nanorobot /$rNing Xi [and others].
650 22 $aBiomedical Research$xmethods.
650 12 $aMicroscopy, Atomic Force$xmethods.
655 7 $aComputer network resources.$2local
650 0 $aAtomic force microscopy.
650 2 $aMicroscopy, Atomic Force$xmethods$vLaboratory Manuals.
650 2 $aMolecular Biology$xmethods$vLaboratory Manuals.
700 1 $aBraga, Pier Carlo.
700 1 $aRicci, Davide.
830 0 $aSpringer protocols.
830 0 $aMethods in molecular biology (Clifton, N.J.) ;$v736.
988 $a20110614
906 $0OCLC