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Tissue structure and C. albicans morphology were also evaluated.
The domain sizes for each morphology were also calculated analytically.
Cell and nucleus morphology were also considered, with nuclear deformation linked to cell signaling.
Cells showing this nuclear morphology were also ChAT positive, displayed cytoplasmic (Fig. 1b,c) and also surface EphB1 IR as indicated by pre-permeabilisation immunolabelling (Fig. 1d).
The growth mechanism of the nanoparticles and their morphology were also described.
The effects of solvent nature and evaporation rate on the film morphology were also investigated.
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Cell morphology was also observed.
Information on architecture, chirality and cone morphology is also included.
The band gap vs. different morphology was also studied.
The remodelling of mitochondrial morphology was also observed in an ex-vivo tumour model consisting of large glioblastoma tumorospheres.
Microphase morphology was also noted by SAXS and AFM.
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