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Biomolecular imaging using atomic force microscopy
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title
Biomolecular imaging using atomic force microscopy
(English)
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author
Kurt Anderson
object named as
Kurt Anderson
series ordinal
2
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Daniel Jobst Muller
object named as
Daniel J Müller
series ordinal
1
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publication date
August 2002
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published in
Trends in Biotechnology
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volume
20
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issue
8
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page(s)
S45-S49
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describes a project that uses
atomic force microscopy
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inferred from title
cites work
Imaging crystals, polymers, and processes in water with the atomic force microscope
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https://api.crossref.org/works/10.1016%2FS0167-7799%2802%2902000-0
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Immobilization strategies for biological scanning probe microscopy
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Staphylococcal alpha-hemolysin can form hexamers in phospholipid bilayers
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https://api.crossref.org/works/10.1016%2FS0167-7799%2802%2902000-0
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Tapping-mode atomic force microscopy produces faithful high-resolution images of protein surfaces
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https://api.crossref.org/works/10.1016%2FS0167-7799%2802%2902000-0
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Electrostatically balanced subnanometer imaging of biological specimens by atomic force microscope
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Observing single biomolecules at work with the atomic force microscope.
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Charting the surfaces of the purple membrane
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https://api.crossref.org/works/10.1016%2FS0167-7799%2802%2902000-0
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New insight into cellulose structure by atomic force microscopy shows the i(alpha) crystal phase at near-atomic resolution.
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https://api.crossref.org/works/10.1016%2FS0167-7799%2802%2902000-0
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Sampling the conformational space of membrane protein surfaces with the AFM.
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Imaging the electrostatic potential of transmembrane channels: atomic probe microscopy of OmpF porin
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The bacteriophage phi29 head-tail connector imaged at high resolution with the atomic force microscope in buffer solution
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The vacuolating toxin from Helicobacter pylori forms hexameric pores in lipid bilayers at low pH.
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Structural biology. Proton-powered turbine of a plant motor
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ATP synthase: constrained stoichiometry of the transmembrane rotor.
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Immuno-atomic force microscopy of purple membrane
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Surface tongue-and-groove contours on lens MIP facilitate cell-to-cell adherence.
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High resolution AFM topographs of the Escherichia coli water channel aquaporin Z.
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Conformations of the rhodopsin third cytoplasmic loop grafted onto bacteriorhodopsin
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Direct observation of one-dimensional diffusion and transcription by Escherichia coli RNA polymerase
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Probing protein-protein interactions in real time.
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https://api.crossref.org/works/10.1016%2FS0167-7799%2802%2902000-0
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7 January 2021
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Atomic force microscopy detects changes in the interaction forces between GroEL and substrate proteins
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https://api.crossref.org/works/10.1016%2FS0167-7799%2802%2902000-0
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7 January 2021
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A high-speed atomic force microscope for studying biological macromolecules.
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https://api.crossref.org/works/10.1016%2FS0167-7799%2802%2902000-0
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7 January 2021
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A look at membrane patches with a scanning force microscope
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stated in
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reference URL
https://api.crossref.org/works/10.1016%2FS0167-7799%2802%2902000-0
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7 January 2021
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Imaging the internal and external pore structure of membranes in fluid: TappingMode scanning ion conductance microscopy
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reference URL
https://api.crossref.org/works/10.1016%2FS0167-7799%2802%2902000-0
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7 January 2021
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Direct visualization of surface charge in aqueous solution
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https://api.crossref.org/works/10.1016%2FS0167-7799%2802%2902000-0
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7 January 2021
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Relative surface charge density mapping with the atomic force microscope
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7 January 2021
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DOI
10.1016/S0167-7799(02)02000-0
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