Exact(11)
In addition to the ability to generate 3D reconstructions of the sample in question via optical sectioning, confocal microscopy can also be used to measure reaction kinetics in the fluorescence mode.
Monte Carlo simulations and laboratory experiments have shown that analytical scanning electron microscopy can also be used to characterize embedded grains.
An alternative technique called near-field scanning optical microscopy can also etch nanoscale features.
In addition, atomic force microscopy can also be applied to nanoscale lithography.
It should be noted that dark-field microscopy can also be employed for direct visualization of a particle flocculation event [32].
Confocal microscopy can also quantify collagen fibers but the tissues need to be stained and are destroyed.
Similar(49)
Electron microscopy (EM) can also identify poxvirus particles (4, 5 ).
Electron microscopy grids can also be employed; however, careful consideration must be given to the proximity of the area to be mapped with the grid, as the gridbars may also contain elements of interest to the experiment.
Yet, it is interesting to note that stereological methods (especially at electron microscopy level) can also be used to count the number of Schwann cells and other cells in the samples.
Wide-field techniques such as total internal reflection fluorescence microscopy (TIRFM) can also be used to study such interactions by immobilizing one biological molecule on the surface and observing binding events with other biological molecules in solution.
λ can be obtained by observing and counting the slabbed core or the scanning electron microscopy images, and can also be determined by a mathematical derivation.
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