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Microstructure mechanical properties and bio-corrosion evaluation of biodegradable AZ91-FA nanocomposites for biomedical applications
Microstructure mechanical properties and bio-corrosion evaluation of biodegradable AZ91-FA nanocomposites for biomedical applications
Evaluating and Modeling the Mechanical Properties of the Prepared PLGA/nano-BCP Composite Scaffolds for Bone Tissue Engineering
Nickel(II) and cobalt(II) complexes of lidocaine Synthesis structure and comparative in vitro evaluations of biological perspectives
Evaluation of Effective Electrospinning Parameters Controlling Polyvinylpyrrolidone Nanofibers Surface Morphology via Response Surface Methodology
Evaluation of load support capacity of remoulded fine and coarse textured soils as affected by wetting and drying cycles
Electrospun PHBV nanofibers containing HA and bredigite nanoparticles Fabrication characterization and evaluation of mechanical properties and bioactivity
Electrospun PHBV nanofibers containing HA and bredigite nanoparticles Fabrication characterization and evaluation of mechanical properties and bioactivity
Electrospun PHBV nanofibers containing HA and bredigite nanoparticles Fabrication characterization and evaluation of mechanical properties and bioactivity
Preparation and biocompatibility evaluation of bioactive glass forsterite nanocomposite powder for oral bone defects treatment applications
Preparation and biocompatibility evaluation of bioactive glass forsterite nanocomposite powder for oral bone defects treatment applications
Electrospun PHBV nanofibers containing HA and bredigite nanoparticles Fabrication characterization and evaluation of mechanical properties and bioactivity
Electrospun PHBV nanofibers containing HA and bredigite nanoparticles Fabrication characterization and evaluation of mechanical properties and bioactivity
Electrospun PHBV nanofibers containing HA and bredigite nanoparticles Fabrication characterization and evaluation of mechanical properties and bioactivity
Production and evaluation of the surface properties of chiral poly(amide-imide)/TiO 2 nanocomposites containing L-phenylalanine units