Hardness

Compositional and microstructural design of highly bioactive P2O5–Na2O–CaO–SiO2 glass-ceramics

Glass / Crystallization / Multidisciplinary / Elasticity / Ceramics / Humans / Animals / Hardness / Grain size / Flexural Strength / Thermal Treatment / Microstructures / Elastic Modulus / Bioactive Glass / Cortical Bone / Chemical Composition / Fracture Toughness / Materials Testing / Biocompatible Materials / Theoretical Model / Volume Fraction / Humans / Animals / Hardness / Grain size / Flexural Strength / Thermal Treatment / Microstructures / Elastic Modulus / Bioactive Glass / Cortical Bone / Chemical Composition / Fracture Toughness / Materials Testing / Biocompatible Materials / Theoretical Model / Volume Fraction

Matrix Metalloproteinase-20 Over-Expression Is Detrimental to Enamel Development: A Mus musculus Model

Scanning Electron Microscopy / Multidisciplinary / Western blotting / Humans / Mice / Female / Animals / Male / Hardness / Phenotype / PLoS one / Behavioral Animal Models / Amelogenin / Dental Enamel / X Ray Microtomography / Tooth Calcification / Matrix Metalloproteinase / Female / Animals / Male / Hardness / Phenotype / PLoS one / Behavioral Animal Models / Amelogenin / Dental Enamel / X Ray Microtomography / Tooth Calcification / Matrix Metalloproteinase

Niobium pentoxide as a novel filler for dental adhesive resin

Dentistry / Crystallography / Scanning Electron Microscopy / Polymerization / Animals / Temperature / Hardness / Niobium / Cattle / X ray diffraction / Particle Size / Fourier transform infrared spectroscopy / Time Factors / Surface Properties / Dentin / Dental Bonding / Oxides / Polymethyl Methacrylates / Camphor / Contrast Media / Refractometry / Polyethylene Glycols / Resin Cements / Temperature / Hardness / Niobium / Cattle / X ray diffraction / Particle Size / Fourier transform infrared spectroscopy / Time Factors / Surface Properties / Dentin / Dental Bonding / Oxides / Polymethyl Methacrylates / Camphor / Contrast Media / Refractometry / Polyethylene Glycols / Resin Cements

Semi-degradable poly(β-amino ester) networks with temporally controlled enhancement of mechanical properties

Inflammation / Polymers / Multidisciplinary / Biodegradation / Mice / Compressive Strength / Animals / Male / Temperature / Phase transition / Hardness / Thermal Conductivity / Glass Transition Temperature / Elastic Modulus / Materials Testing / Tensile Strength / Biocompatible Materials / Compressive Strength / Animals / Male / Temperature / Phase transition / Hardness / Thermal Conductivity / Glass Transition Temperature / Elastic Modulus / Materials Testing / Tensile Strength / Biocompatible Materials
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