Works matching IS 00220744 AND DT 2000 AND VI 49 AND IP 3
Results: 18
The cell biological application of carbon nanotube probes for atomic force microscopy: comparative studies of malaria-infected erythrocytes.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 453, doi. 10.1093/oxfordjournals.jmicro.a023828
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Microstructure of CuxMo6S8 Chevrel phase thin films on R-plane sapphire.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 493, doi. 10.1093/oxfordjournals.jmicro.a023834
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Atomic force microscopy with carbon nanotube probe resolves the subunit organization of protein complexes.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 415, doi. 10.1093/oxfordjournals.jmicro.a023823
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The application o f the atomic force microscope to studies of medically important protozoan parasites.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 429, doi. 10.1093/oxfordjournals.jmicro.a023825
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Histochemistry of food tissue by colour scanning electron microscopy.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 503, doi. 10.1093/oxfordjournals.jmicro.a023835
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Electron microscopy of satellite tobacco mosaic virus crystals: metal-coated, negatively stained and stereo pairs.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 509, doi. 10.1093/oxfordjournals.jmicro.a023836
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Time–lapse viscoelastic imaging of living fibroblasts using force modulation mode in AFM.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 473, doi. 10.1093/oxfordjournals.jmicro.a023831
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Erratum.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 514, doi. 10.1093/oxfordjournals.jmicro.a023837
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- Article
Structural analysis of red blood cell membrane with an atomic force microscope.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 445, doi. 10.1093/oxfordjournals.jmicro.a023827
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Observations of xenon gas–treated barley cells in solution by atomic force microscopy.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 483, doi. 10.1093/oxfordjournals.jmicro.a023832
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Atomic force microscopy of intact and digested collagen molecules.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 423, doi. 10.1093/oxfordjournals.jmicro.a023824
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Deformation of the envelope of a spherical Gram–negative bacterium during the atomic force microscopic measurements.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 459, doi. 10.1093/oxfordjournals.jmicro.a023829
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Atomic force microscopy in structural biology: from the subcellular to the submolecular.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 395, doi. 10.1093/oxfordjournals.jmicro.a023821
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Preface to the Atomic Force Microscopy for Biomedicine.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 393, doi. 10.1093/oxfordjournals.jmicro.a023820
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Atomic force microscopy proposes a ‘kiss and pull’ mechanism for enhancer function.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 407, doi. 10.1093/oxfordjournals.jmicro.a023822
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Structure of rice starch granules in nanometre scale as revealed by atomic force microscopy.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 487, doi. 10.1093/oxfordjournals.jmicro.a023833
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Changes in the surface structure of the hamster sperm head associated with maturation, in vitro capacitation and acrosome reaction: an atomic force microscopic study.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 437, doi. 10.1093/oxfordjournals.jmicro.a023826
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Quantitative analyses of topography and elasticity of living and fixed astrocytes.
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- Journal of Electron Microscopy, 2000, v. 49, n. 3, p. 463, doi. 10.1093/oxfordjournals.jmicro.a023830
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