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Hence, epr-SRS microscopy can be complementary to or even supersede fluorescence in multiplex applications.
Hence, single virus microscopy can be applied to study inhibitors of early steps of the HIV-1 replication cycle.
Two-photon intravital microscopy can be combined with FRET to visualize the real-time activity of target molecules33,34.
Image formation in bright field electron microscopy can be described with the help of the contrast transfer function (CTF).
Solving the structure of macromolecular complexes using transmission electron microscopy can be an arduous task.
Atomic force microscopy can be used on insulating substrates to obtain structural6 and electrostatic7,8 information but does not generally access electronic states.
A NEW APPROACH Capturing images using standard microscopy can be a tedious process of constant refocusing that requires movement of a microscope element.
By this method semicrystalline particles with mean diameter of 280 nm, as revealed by atomic force microscopy, can be obtained.
Scanning probe microscopy can be used to manipulate a skeletal rearrangement at the single-molecule level, while monitoring the geometry of reactants, intermediates and final products with atomic resolution.
Although well-established laser confocal microscopy can be used for these purposes, this technique has serious limitations including penetration depth and availability.
Atomic force and orientation imaging microscopy can be used to identify slip planes responsible for slip step formation around indentations in FCC polycrystalline engineering alloys.
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