Dental Materials, ISSN 0109-5641, 05/2018, Volume 34, Issue 5, p. e83
Objective Dental restoration aesthetics, particularly the translucency of modern dental restorative filling materials depends on the refractive index (RI)...
Polymer matrix composites | Composition | Metals | Teeth | Refractivity | Fluorides | Dentistry | Dental caries | Dental restorative materials | Dental research | Dental health | Fluoride | Dental materials | Restoration | Metal fluorides | Bioglass | Glass ionomer cements | Coordination compounds | Dental care
Polymer matrix composites | Composition | Metals | Teeth | Refractivity | Fluorides | Dentistry | Dental caries | Dental restorative materials | Dental research | Dental health | Fluoride | Dental materials | Restoration | Metal fluorides | Bioglass | Glass ionomer cements | Coordination compounds | Dental care
Journal Article
ISSN 1463-9076, 3/2017, Volume 19, Issue 1, pp. 778 - 785
Chloride is known to volatilize from silicate glass melts and until now, only a limited number of studies on oxychloride silicate glasses have been reported....
Journal Article
Scientific Reports, ISSN 2045-2322, 12/2018, Volume 8, Issue 1, pp. 1316 - 10
Adding fluoride into bioactive glasses leads to fluorapatite formation and a decrease in glass transition temperature. Recently, chloride has been introduced...
SIMULATED BODY-FLUID | NMR | CARIES | MULTIDISCIPLINARY SCIENCES | ALUMINOSILICATE GLASSES | CERAMICS | Bone growth | Temperature | Chloride | Fluoride | Nuclear magnetic resonance--NMR | Chlorides | Polymerization | Apatite | Fluorides
SIMULATED BODY-FLUID | NMR | CARIES | MULTIDISCIPLINARY SCIENCES | ALUMINOSILICATE GLASSES | CERAMICS | Bone growth | Temperature | Chloride | Fluoride | Nuclear magnetic resonance--NMR | Chlorides | Polymerization | Apatite | Fluorides
Journal Article
Dental Materials, ISSN 0109-5641, 12/2019, Volume 35, Issue 12, pp. 1695 - 1705
Journal Article
Dental Materials, ISSN 0109-5641, 10/2018, Volume 34, Issue 10, p. 1566
Objectives To process novel leucite glass-ceramics and test the effects of surface treatment and resin bonding on the biaxial flexural strength (BFS) and shear...
Heat treatment | Resin bonding | Orthophosphate | Surface chemistry | Adhesion tests | Bond strength | Molds | Ball milling | Lithium | Etching | Adhesive bonding | Fabrication | Flexural strength | Chemical bonds | Bonding strength | Resins | Bonding | Potassium aluminum silicates | Sandblasting | Surface roughness | Ceramics | Extrusion molding | Surface treatment | Ceramic bonding | Extrusion ingots | Ingots | Glass ceramics
Heat treatment | Resin bonding | Orthophosphate | Surface chemistry | Adhesion tests | Bond strength | Molds | Ball milling | Lithium | Etching | Adhesive bonding | Fabrication | Flexural strength | Chemical bonds | Bonding strength | Resins | Bonding | Potassium aluminum silicates | Sandblasting | Surface roughness | Ceramics | Extrusion molding | Surface treatment | Ceramic bonding | Extrusion ingots | Ingots | Glass ceramics
Journal Article
Journal of Dentistry, ISSN 0300-5712, 01/2018, Volume 68, pp. 51 - 58
The dissolution of bioactive glass-based toothpastes and their capacity to form apatite-like phases in buffer solutions have been investigated. The commercial...
apatite | fluorapatite | bioactive glass | fluoride toothpaste | sodium monofluorophosphate | Sensodyne Repair and Protect | REMINERALIZATION | EFFICACY | CALCIUM SILICATE | CARIES | PLAQUE | FLUORIDE | DENTISTRY, ORAL SURGERY & MEDICINE | MAS-NMR | Toothpastes - chemistry | Magnetic Resonance Spectroscopy | Solubility | Nitrates - pharmacology | Materials Testing | Biocompatible Materials - pharmacology | Glass - chemistry | Spectroscopy, Fourier Transform Infrared | Fluorides - pharmacology | Saliva, Artificial | Fluorides - analysis | Apatites - chemical synthesis | Toothpastes - pharmacology | X-Ray Diffraction | Phosphates - pharmacology | Drug Combinations | Tromethamine | Toothpaste | Fourier transforms | Nuclear magnetic resonance--NMR | Enamel | Hydroxyapatite | Dentifrices | Fluorides | Biological activity | Studies | Fluoride | Sodium | Mineralization | Spectrum analysis | Apatite
apatite | fluorapatite | bioactive glass | fluoride toothpaste | sodium monofluorophosphate | Sensodyne Repair and Protect | REMINERALIZATION | EFFICACY | CALCIUM SILICATE | CARIES | PLAQUE | FLUORIDE | DENTISTRY, ORAL SURGERY & MEDICINE | MAS-NMR | Toothpastes - chemistry | Magnetic Resonance Spectroscopy | Solubility | Nitrates - pharmacology | Materials Testing | Biocompatible Materials - pharmacology | Glass - chemistry | Spectroscopy, Fourier Transform Infrared | Fluorides - pharmacology | Saliva, Artificial | Fluorides - analysis | Apatites - chemical synthesis | Toothpastes - pharmacology | X-Ray Diffraction | Phosphates - pharmacology | Drug Combinations | Tromethamine | Toothpaste | Fourier transforms | Nuclear magnetic resonance--NMR | Enamel | Hydroxyapatite | Dentifrices | Fluorides | Biological activity | Studies | Fluoride | Sodium | Mineralization | Spectrum analysis | Apatite
Journal Article
International Journal of Applied Glass Science, ISSN 2041-1286, 09/2014, Volume 5, Issue 3, pp. 207 - 216
Apatite glass‐ceramics are attractive for medical and dental applications, and fluorapatite glass‐ceramics based on aluminosilicate glasses have been...
CAO-MGO-SIO2 SYSTEM | NEEDLE-LIKE | SPECTROSCOPY | MAS-NMR | CRYSTALLIZATION BEHAVIOR | STRUCTURAL-ANALYSIS | NUCLEATION | FLUORINE-CONTAINING GLASSES | MATERIALS SCIENCE, CERAMICS | SILICATE | APATITE CRYSTALS | Phosphate minerals | Apatite | Ceramics | Ceramic materials | Phosphate rock | Glass | Halogens | Chlorides | Crystallization | Bones | Medical | Glass ceramics
CAO-MGO-SIO2 SYSTEM | NEEDLE-LIKE | SPECTROSCOPY | MAS-NMR | CRYSTALLIZATION BEHAVIOR | STRUCTURAL-ANALYSIS | NUCLEATION | FLUORINE-CONTAINING GLASSES | MATERIALS SCIENCE, CERAMICS | SILICATE | APATITE CRYSTALS | Phosphate minerals | Apatite | Ceramics | Ceramic materials | Phosphate rock | Glass | Halogens | Chlorides | Crystallization | Bones | Medical | Glass ceramics
Journal Article
Dental Materials, ISSN 0109-5641, 01/2018, Volume 34, Issue 1, pp. e1 - e7
Biodentine™ is a novel tricalcium silicate based material used both as a coronal dentine replacement and in pulp therapy. Its multiple use in sealing...
Biodentine | Caries | Fluoride | Dental cement | Apatite | Bioactivity | Fluoroapatite | Tricalcium silicate | Cariesa | SUBSTITUTION | ION RELEASE | MATERIALS SCIENCE, BIOMATERIALS | CARIES | MINERAL TRIOXIDE AGGREGATE | CALCIUM HYDROXIDE | DENTIN | DENTISTRY, ORAL SURGERY & MEDICINE | GLASS-IONOMER CEMENTS | APATITE FORMATION | PULP CELLS | DEGRADATION | Magnetic Resonance Spectroscopy | Biocompatible Materials - chemistry | Dental Cements - chemistry | Materials Testing | Silicates - chemistry | Spectroscopy, Fourier Transform Infrared | Strontium - chemistry | Compressive Strength | Ceramics - chemistry | Fluorides - analysis | Apatites - chemistry | X-Ray Diffraction | Calcium Compounds - chemistry | Strontium | Phosphate minerals | Silicates | Fluorides | Phosphate rock
Biodentine | Caries | Fluoride | Dental cement | Apatite | Bioactivity | Fluoroapatite | Tricalcium silicate | Cariesa | SUBSTITUTION | ION RELEASE | MATERIALS SCIENCE, BIOMATERIALS | CARIES | MINERAL TRIOXIDE AGGREGATE | CALCIUM HYDROXIDE | DENTIN | DENTISTRY, ORAL SURGERY & MEDICINE | GLASS-IONOMER CEMENTS | APATITE FORMATION | PULP CELLS | DEGRADATION | Magnetic Resonance Spectroscopy | Biocompatible Materials - chemistry | Dental Cements - chemistry | Materials Testing | Silicates - chemistry | Spectroscopy, Fourier Transform Infrared | Strontium - chemistry | Compressive Strength | Ceramics - chemistry | Fluorides - analysis | Apatites - chemistry | X-Ray Diffraction | Calcium Compounds - chemistry | Strontium | Phosphate minerals | Silicates | Fluorides | Phosphate rock
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 2010, Volume 356, Issue 44, pp. 2546 - 2551
The influence of substituting strontium for calcium in the following glass series 49.46 SiO –1.07 P O –(23.08-X) CaO–X SrO–26.38 Na O was studied on the...
Thermal properties | Structure | Bioactive glasses | Biomaterials | DENSITY | RANELATE | MATERIALS SCIENCE, MULTIDISCIPLINARY | BONE QUALITY | SILICATE-GLASSES | MATERIALS SCIENCE, CERAMICS | Strontium | Thermal expansion | Networks | Glass | Charge | Physical properties | Glass transition temperature | Density | Silicon dioxide
Thermal properties | Structure | Bioactive glasses | Biomaterials | DENSITY | RANELATE | MATERIALS SCIENCE, MULTIDISCIPLINARY | BONE QUALITY | SILICATE-GLASSES | MATERIALS SCIENCE, CERAMICS | Strontium | Thermal expansion | Networks | Glass | Charge | Physical properties | Glass transition temperature | Density | Silicon dioxide
Journal Article
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Full Text
THE BASIS OF THE POLITICALLY CORRECT MODERN POLITICAL DISCOURSE IN THE FRENCH LANGUAGE
Bulletin of Kemerovo State University, ISSN 2078-8975, 01/2017, Issue 3, pp. 180 - 186
The object of the investigation is modern political discourse. The research is focused on the sociological, cultural, epistemological and linguistic bases of...
linguistics | political correctness | epistemology | cultural studies | sociology | linguistic sign | discourse
linguistics | political correctness | epistemology | cultural studies | sociology | linguistic sign | discourse
Journal Article
Journal of Biomedical Materials Research - Part B Applied Biomaterials, ISSN 1552-4973, 01/2018, Volume 106, Issue 1, pp. 21 - 30
The commercial calcium phosphate cement, HydroSet, was investigated in vitro, studying phase formation, compressive strength and setting time, followed by an...
hydroxyapatite | in vivo | octacalcium phosphate | calcium phosphate cement | HydroSet | in vitro | BONE CEMENTS | MATERIALS SCIENCE, BIOMATERIALS | ENGINEERING, BIOMEDICAL | RECONSTRUCTION | BEHAVIOR | HydroSet (TM) | BIOMATERIAL | IMPLANTED OCTACALCIUM PHOSPHATE | OSTEOPOROTIC VERTEBRAL COMPRESSION | HYDROXYAPATITE CEMENT | Animals | Bone Cements - pharmacology | Durapatite - pharmacology | Calcium Phosphates - chemistry | Durapatite - chemistry | Sheep | Bone Cements - chemistry | Calcium Phosphates - pharmacology | Bone grafts | Phosphates | Scanning electron microscopy | Osseointegration | Surgical implants | Nuclear magnetic resonance--NMR | Calcium | X-ray diffraction | Hydroxyapatite | Octacalcium phosphate | Compressive strength | Contact angle | Electron microscopy | Calcium phosphates | Apposition | Biomedical materials | Phosphate | Cement | Apatite | Cements | In vivo methods and tests | Bone | NMR spectroscopy
hydroxyapatite | in vivo | octacalcium phosphate | calcium phosphate cement | HydroSet | in vitro | BONE CEMENTS | MATERIALS SCIENCE, BIOMATERIALS | ENGINEERING, BIOMEDICAL | RECONSTRUCTION | BEHAVIOR | HydroSet (TM) | BIOMATERIAL | IMPLANTED OCTACALCIUM PHOSPHATE | OSTEOPOROTIC VERTEBRAL COMPRESSION | HYDROXYAPATITE CEMENT | Animals | Bone Cements - pharmacology | Durapatite - pharmacology | Calcium Phosphates - chemistry | Durapatite - chemistry | Sheep | Bone Cements - chemistry | Calcium Phosphates - pharmacology | Bone grafts | Phosphates | Scanning electron microscopy | Osseointegration | Surgical implants | Nuclear magnetic resonance--NMR | Calcium | X-ray diffraction | Hydroxyapatite | Octacalcium phosphate | Compressive strength | Contact angle | Electron microscopy | Calcium phosphates | Apposition | Biomedical materials | Phosphate | Cement | Apatite | Cements | In vivo methods and tests | Bone | NMR spectroscopy
Journal Article
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Influence of dissolution medium pH on ion release and apatite formation of Bioglass® 45S5
Materials Letters, ISSN 0167-577X, 03/2015, Volume 143, pp. 279 - 282
Bioactive glasses, particularly Bioglass 45S5, have been used to clinically regenerate human bone since the mid-1980׳s, owing to their ability to degrade in...
Bioactive glass | Apatite | Glass structure | Bioactivity | Dissolution | PHYSICS, APPLIED | IN-VITRO DISSOLUTION | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | OSSEOUS REGENERATION | CELL-CULTURE MEDIUM | TRIS BUFFER | SIMULATED BODY-FLUID | PARTICLE-SIZE | BONE | CONTAINING BIOACTIVE GLASSES
Bioactive glass | Apatite | Glass structure | Bioactivity | Dissolution | PHYSICS, APPLIED | IN-VITRO DISSOLUTION | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | OSSEOUS REGENERATION | CELL-CULTURE MEDIUM | TRIS BUFFER | SIMULATED BODY-FLUID | PARTICLE-SIZE | BONE | CONTAINING BIOACTIVE GLASSES
Journal Article
Materials Letters, ISSN 0167-577X, 03/2015, Volume 143, p. 279
Bioactive glasses, particularly Bioglass.sup.[R] 45S5, have been used to clinically regenerate human bone since the mid-1980's, owing to their ability to...
Phosphate minerals | Bacterial infections | Halides | Phosphate rock | Physiological aspects | Hydrogen-ion concentration
Phosphate minerals | Bacterial infections | Halides | Phosphate rock | Physiological aspects | Hydrogen-ion concentration
Journal Article
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Molecular Dynamics Investigation of Halide-Containing Phospho-Silicate Bioactive Glasses
The Journal of Physical Chemistry B, ISSN 1520-6106, 03/2018, Volume 122, Issue 11, pp. 2940 - 2948
Oxyhalide-containing silicate glasses have been receiving increasing attention in recent years due to their extensive medical and dental applications. This...
STRUCTURAL ROLE | NEUTRON | DESIGN | ALKALI-HALIDES | CHEMISTRY, PHYSICAL | DIFFRACTION | SIMULATIONS | POTENTIALS | STRONTIUM SUBSTITUTION | CERAMICS | FLUORIDE
STRUCTURAL ROLE | NEUTRON | DESIGN | ALKALI-HALIDES | CHEMISTRY, PHYSICAL | DIFFRACTION | SIMULATIONS | POTENTIALS | STRONTIUM SUBSTITUTION | CERAMICS | FLUORIDE
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15.
Influence of dissolution medium pH on ion release and apatite formation of Bioglass registered 45S5
Materials Letters, ISSN 0167-577X, 03/2015, Volume 143, pp. 279 - 282
Bioactive glasses, particularly Bioglass registered 45S5, have been used to clinically regenerate human bone since the mid-1980 super(3)s, owing to their...
Ion exchangers | Glass | Bacteria | Biocompatibility | Bones | Apatite | Formations | Dissolution
Ion exchangers | Glass | Bacteria | Biocompatibility | Bones | Apatite | Formations | Dissolution
Journal Article
Materials, ISSN 1996-1944, 2014, Volume 7, Issue 8, pp. 5470 - 5487
The bioactivity of a series of fluoride-containing sodium-free calcium and strontium phosphosilicate glasses has been tested in vitro. Glasses with high...
Fluoride | Sodium-/alkali-free bioactive glass | Bioactive glass-ceramics | Fluorapatite | ION RELEASE | MATERIALS SCIENCE, MULTIDISCIPLINARY | fluorapatite | fluoride | HEAT-TREATMENT | sodium-/alkali-free bioactive glass | DEGRADABILITY | STRONTIUM | NMR | bioactive glass-ceramics | APATITE FORMATION | SIMULATED BODY-FLUID | DEGRADATION | BIOGLASS | PHOSPHO-SILICATE GLASSES | Degradation | Crystallization | Glass | Apatite | Formations | Biochemistry | Immersion | Fluorides
Fluoride | Sodium-/alkali-free bioactive glass | Bioactive glass-ceramics | Fluorapatite | ION RELEASE | MATERIALS SCIENCE, MULTIDISCIPLINARY | fluorapatite | fluoride | HEAT-TREATMENT | sodium-/alkali-free bioactive glass | DEGRADABILITY | STRONTIUM | NMR | bioactive glass-ceramics | APATITE FORMATION | SIMULATED BODY-FLUID | DEGRADATION | BIOGLASS | PHOSPHO-SILICATE GLASSES | Degradation | Crystallization | Glass | Apatite | Formations | Biochemistry | Immersion | Fluorides
Journal Article
Acta Biomaterialia, ISSN 1742-7061, 08/2010, Volume 6, Issue 8, pp. 3275 - 3282
Bioactive glasses are able to bond to bone through formation of carbonated hydroxyapatite in body fluids, and fluoride-releasing bioactive glasses are of...
Bioactive glass | Solid-state NMR | Bioactivity | Fluorine | Fluorapatite | MATERIALS SCIENCE, BIOMATERIALS | ENGINEERING, BIOMEDICAL | Fluorides - chemistry | Powders | Apatites - chemistry | Magnetic Resonance Spectroscopy | Body Fluids - chemistry | Solubility | Ions | Glass - chemistry | Spectroscopy, Fourier Transform Infrared | Hydrogen-Ion Concentration | Phosphate minerals | Analysis | Phosphate rock | Nuclear magnetic resonance spectroscopy | Carbonates | Fluorides | Hydrogen-ion concentration
Bioactive glass | Solid-state NMR | Bioactivity | Fluorine | Fluorapatite | MATERIALS SCIENCE, BIOMATERIALS | ENGINEERING, BIOMEDICAL | Fluorides - chemistry | Powders | Apatites - chemistry | Magnetic Resonance Spectroscopy | Body Fluids - chemistry | Solubility | Ions | Glass - chemistry | Spectroscopy, Fourier Transform Infrared | Hydrogen-Ion Concentration | Phosphate minerals | Analysis | Phosphate rock | Nuclear magnetic resonance spectroscopy | Carbonates | Fluorides | Hydrogen-ion concentration
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 01/2019, Volume 503-504, pp. 120 - 130
The objective of this study was to establish the overall remineralizing potential of bioactive glasses which were specifically designed to be incorporated in...
Dental Varnish | Strontium Substitution | Ion Release | Bioactive Glass | Fluoride Ion | Apatite Formation | SUBSTITUTION | REMINERALIZATION | MATERIALS SCIENCE, MULTIDISCIPLINARY | MATERIALS SCIENCE, CERAMICS | COMPOSITE | ENAMEL | CALCIUM-PHOSPHATE SOURCES | DEGRADATION | Strontium | Phosphate minerals | Apatite | Phosphate rock
Dental Varnish | Strontium Substitution | Ion Release | Bioactive Glass | Fluoride Ion | Apatite Formation | SUBSTITUTION | REMINERALIZATION | MATERIALS SCIENCE, MULTIDISCIPLINARY | MATERIALS SCIENCE, CERAMICS | COMPOSITE | ENAMEL | CALCIUM-PHOSPHATE SOURCES | DEGRADATION | Strontium | Phosphate minerals | Apatite | Phosphate rock
Journal Article
Journal of the Royal Society Interface, ISSN 1742-5689, 05/2012, Volume 9, Issue 70, pp. 880 - 889
Bioactive glasses are able to bond to bone through the formation of hydroxy-carbonate apatite in body fluids while strontium (Sr)-releasing bioactive glasses...
Strontium | Bioactive glass | Osteoporosis | Apatite | Ion release | Bone regeneration | RESORPTION | BEHAVIOR | MULTIDISCIPLINARY SCIENCES | strontium | osteoporosis | CARIES | apatite | DENTIFRICE | bioactive glass | BONE-FORMATION | COATINGS | bone regeneration | ion release | DRINKING-WATER | Apatites - chemistry | Magnetic Resonance Spectroscopy | Body Fluids - chemistry | Ions | Bone Regeneration | Glass - chemistry | Calcium - chemistry | Strontium - chemistry | Bone Substitutes - chemistry | Hydrogen-Ion Concentration | 1004
Strontium | Bioactive glass | Osteoporosis | Apatite | Ion release | Bone regeneration | RESORPTION | BEHAVIOR | MULTIDISCIPLINARY SCIENCES | strontium | osteoporosis | CARIES | apatite | DENTIFRICE | bioactive glass | BONE-FORMATION | COATINGS | bone regeneration | ion release | DRINKING-WATER | Apatites - chemistry | Magnetic Resonance Spectroscopy | Body Fluids - chemistry | Ions | Bone Regeneration | Glass - chemistry | Calcium - chemistry | Strontium - chemistry | Bone Substitutes - chemistry | Hydrogen-Ion Concentration | 1004
Journal Article
Physical chemistry chemical physics : PCCP, ISSN 1463-9076, 03/2017, Volume 19, Issue 10, pp. 7078 - 7085
Chloride is known to volatilize from silicate glass melts and until now, only a limited number of studies on oxychloride silicate glasses have been reported....
Journal Article
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