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In comparison to young SCs, old SCs doubled the axonal outgrowth from dorsal root ganglion explants and displayed only one-third as much adhesion to the gray and white matter of spinal cord cryosections.
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Roughness measurements have highlighted that the surface showing Sku > 3 provides a much higher adhesion.
We have confirmed that FGDLC films show much higher adhesion strength than normal DLC films.
Entanglement bridges imparted much better adhesion than did epitaxially crystallized lamellae.
Compared to protein nanofibers, PCL nanofibers showed much lower adhesion, as they slipped on the substrate when mechanically manipulated.
We demonstrated that the alginate-based chitosan hybrid polymer fibers showed much improved adhesion capacity with fibroblast compared with alginate polymer fiber.
The thiol modified BCP showed much greater adhesion strength compared to pristine BCP as determined by lap shear test using a UTM.
This result is particularly interesting since the Daimler Benz indentation test suggested that the TiN/TiAlN had much lower adhesion than the CrN/TiAlN.
Implantation of mixed silicon and carbon ions to the substrate resulted in much higher adhesion strength than that of the epoxy resin.
PGAP had much poorer adhesion property (6.2 m g−2) compared to PAP (0.5 m g−2) probably due to the porous nature of the phosphate/pigment particles on the surface of the metallic core (aluminum pigment).
The duplex TiN/CrN coating showed the hardness value of 36 GPa (TiN: 26 GPa and CrN: 22 GPa) and much superior adhesion property (Lc=43 N) to other specimens.
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CEO of Professional Science Editing for Scientists @ prosciediting.com