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We find that the morphology that is most successful at following a wall strongly resembles the morphologies of natural whiskers.
The surface morphologies of natural ESM, Tan-ESM, and AgNPs@Tan-ESM composites were characterized by scanning electron microscopy (SEM; S-4800, Hitachi Ltd). at an accelerating voltage of 3.0 kV equipped with an energy-dispersive X-ray (EDX).
The distinct hierarchical structures and morphologies of natural cellulosic substances (e.g. ordinary laboratory filter paper) provides ideal platforms for the surface modification with various guest species that are immobilized or deposited onto the surfaces of the exquisite structure details.
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The morphology of natural disperse graphite, expanded graphite (TEG), and GNPs was examined by scanning electron microscope (SEM; Mira3 Tescan) at accelerating voltage of 10.0 kV.
The synthetic NF scaffolds, which mimic the morphology of natural collagen fibers, enhanced the osteoblastic differentiation of hAFSCs in vitro and bone formation in vivo.
This might be attributed to the differences in the size and morphology of natural tooth roots and the standard size implants (3.75 or 4 mm), thus providing insufficient support [19].
In this review we focus on the experimental strategies and recent achievements in the bioprinting of major structural proteins (collagen, silk, fibrin), as a particularly interesting technology to reconstruct the biochemical and biophysical composition and hierarchical morphology of natural scaffolds.
The unique architectures – hierarchical macro/mesoporous morphology of natural leaves are retained in the man-made systems to enhance overall light harvesting and to offer more absorption and reaction sites for the catalytic reactions.
As for synthetic adhesives, changes in catalytic activity can affect curing, adhesive strength, and morphology of natural glues.
Phenotypes are variable within species, with high phenotypic variation in the fitness and cell morphology of natural yeast strains due to genetic variation.
The deletion of motility genes, however, allows Pseudomonas aeruginosa to overcome the dispersive effects of mucus and form suspended antibiotic-resistant flocs, which mirror the clustered morphology of immotile natural isolates found in the cystic fibrosis lung mucus [4, 5].
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