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The morphology studies from scanning electron microscope and transmission electron microscope analysis revealed that cMWCNTs as conductive bridges were successfully incorporated into CD edge-functionalized graphene layers.
Consistent with this, optical microscopy and scanning electron microscope analysis revealed a relatively high density of fine intermetallic and silicon particles at these areas.
X-ray diffraction analysis and transmission electron microscope analysis revealed the formation of nanograin crystalline structure on the ball impact peened surface layer.
Confocal microscope analysis revealed that the stained mitochondria in control cells were evenly distributed around the cell.
Electron microscope analysis revealed that astrocytes projected into the ventricle numerous, irregularly shaped, microvilli; cilia were missing (Figs. 1m, n, 5b).
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Atomic Force Microscope (AFM) analysis revealed that large amounts of fluoride adsorbed on mica surface, forming an irregular micro-nanometer structure.
Transmission Electron Microscope (TEM) analysis revealed the attachment of bacterial cells to the fungal hyphae.
Field Emission Scanning Electron Microscope (FESEM) analysis reveals the formation of randomly distributed clusters, particulates, droplets and agglomers for lower ion doses which are explainable on the basis of cascade collisional process and thermal spike model.
X-ray diffraction (XRD), scanning electron microscopy (SEM) and transmission electron microscope (TEM) analysis reveal that the improvement of mechanical properties in the Mg base alloy is attributed to the formation of fine α-Mg dendrite and ternary eutectic phase (α-Mg + Cu2Mg + CuMgZn).
Results from immunofluorescence staining and transmission electronic microscope analysis also revealed that BM-MSCs promoted autophagosomes and autolysosomes formation in HG-treated INS-1 cells.
As observed in other habituated cells, TAhab cells had a modified cell volume and reduced growth rate but they progressively became more elongated and did not form aggregates. Electron microscope analysis also revealed the accumulation of electron-dense material in fragmented vacuoles and in some cases close to cell walls.
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