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Electron microscopy reveals a serious reduction of myosin filament density very rapidly after onset of critical illness.
Morphological analysis performed by dynamic light scattering and transmission electron microscopy reveals a particles size included between 100 and 300 nm.
We show that lamin dysfunction is conserved in human tauopathy, as super-resolution microscopy reveals a significantly disrupted nuclear lamina in postmortem tissue from human Alzheimer's disease brain.
SEM microscopy reveals a distinct core-sheath morphology of the starch-formate/glycerol (SFG) compound fibers with mean diameters of 4.13 ± 1.05 μm.
The environmental scanning electron microscopy reveals a very rough, array-like internal structure for the COE-1 complex at this salt concentration.
While conventional microscopy reveals a hierarchy of voids, complementary advanced techniques allow quantification of these voids in terms of component porosities, anisotropy, size and gradient through the coating thickness.
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Freeze-fracture electron microscopy reveals an orderly array of small particles (about 10 nm in diameter) within these active zones, which are believed to represent voltage-gated calcium channels.
Optical microscopy reveals an important heterogeneity of fibre distribution inside the matrix with many contacts between fibres.
High-resolution electron microscopy with optical image reconstruction, as well as freeze-fracture electron microscopy, reveal a highly symmetrical structure, looking from the top somewhat like a life belt, with the presumed channel in the centre.
Electron microscopy revealed a good preservation of the fine structure.
b Microscopy revealed a proliferation of markedly atypical polygonal epithelial cells having hyperchromatic nuclei (×400).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com