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PLoS ONE, ISSN 1932-6203, 03/2017, Volume 12, Issue 3, pp. e0174440 - e0174440
A comparative study of the corrosion resistance of CoCr and NiCr alloys in artificial saliva (AS) containing tryptic soy broth (Solution 1) and Streptococcus... 
BIOCOMPATIBILITY | MICROBIOLOGICALLY INFLUENCED CORROSION | STAINLESS-STEEL | CASTING ALLOYS | BACTERIA | BEHAVIOR | MULTIDISCIPLINARY SCIENCES | BIOFILMS | RESISTANCE | MODEL | TITANIUM | Biofilms - drug effects | Microscopy, Electron, Scanning | Electrochemical Techniques | Nickel - chemistry | Humans | Biofilms - growth & development | Chromium Alloys - standards | Dental Alloys - chemistry | Streptococcus mutans - drug effects | Materials Testing - methods | Streptococcus mutans - ultrastructure | Chromium Alloys - chemistry | Corrosion | Streptococcus mutans - physiology | Time Factors | Dental Alloys - standards | Surface Properties | Bacterial Adhesion - drug effects | Dielectric Spectroscopy | Saliva, Artificial - chemistry | Saliva, Artificial - pharmacology | Cobalt - chemistry | Hydrogen-Ion Concentration | Drug resistance in microorganisms | Analysis | Genetic aspects | Research | Steel | Streptococcus mutans | Polarization | Soybeans | Sucrose | Transplants & implants | Laboratories | Immersion | Titanium alloys | Microorganisms | Microbial corrosion | Biocompatibility | Bacteria | Charge transfer | Biodegradation | Scanning electron microscopy | Spectroscopy | Alloys | Electron microscopy | Orthodontics | Corrosion resistance | Biofilms | Stainless steel | Morphology | Electrochemistry | Impedance | Saliva | Index Medicus
Journal Article
Journal of Dentistry, ISSN 0300-5712, 2013, Volume 42, Issue 2, pp. 175 - 179
Journal Article
Dental Materials, ISSN 0109-5641, 05/2018, Volume 34, Issue 5, pp. 786 - 796
The present study aimed to establish in a completely automated -based artificial mouth model and to investigate secondary caries inhibiting properties of glass... 
Automated artificial mouth model | Secondary caries | Glass ionomer cement | L. casei | Biofilm | S. mutans | Resin-modified glass ionomer cement | STREPTOCOCCUS-MUTANS | ETIOLOGY | MATERIALS SCIENCE, BIOMATERIALS | DENTAL PLAQUE | MODEL | LESIONS | FLUORIDE | IN-VITRO | ENAMEL | METABOLISM | DENTISTRY, ORAL SURGERY & MEDICINE | Bisphenol A-Glycidyl Methacrylate - chemistry | Microscopy, Electron, Scanning | Dental Caries - microbiology | Dental Caries - therapy | Lactobacillus casei | Humans | Cariostatic Agents - chemistry | Polymethacrylic Acids - chemistry | Glass Ionomer Cements - chemistry | Streptococcus mutans | Biofilms | Resins, Synthetic - chemistry | Acid Etching, Dental | In Vitro Techniques | Molar, Third | Saliva, Artificial - chemistry | Microscopy, Fluorescence | Dental Restoration, Permanent - methods | Analysis | Epoxy resins | Fluorescence microscopy | Dentin | Conduction | Demineralization | Microbiology | Lysergic acid diethylamide | Fluorescence | Lysergide | Molars | Fluoride | Restoration | Mouth | Inhibition | Lesions | Remineralization | Demineralizing | Incubation | Distilled water | Teeth | Acid production | Variance analysis | Dental caries | Oral diseases | Dental enamel | Composite materials | Oral hygiene | Glycolysis | Glass ionomer cements | In vitro methods and tests | Saliva | Thermal cycling | Cementum | Dentistry
Journal Article
Materials Science & Engineering C, ISSN 0928-4931, 03/2017, Volume 72, pp. 7 - 17
Journal Article
Dental Materials, ISSN 0109-5641, 2011, Volume 27, Issue 5, pp. 465 - 477
Abstract Objectives This study examined the use of sodium trimetaphosphate (STMP) as a biomimetic analog of matrix phosphoproteins for remineralization of... 
Advanced Basic Science | Dentistry | Degradation | Biomimetic | Artificial carious lesion | Collagen | Remineralization | Sodium trimetaphosphate | CARIOUS DENTIN | MATERIALS SCIENCE, BIOMATERIALS | CONFOCAL RAMAN MICROSPECTROSCOPY | IN-VITRO REMINERALIZATION | LESIONS | CALCIUM-PHOSPHATE | CRYSTAL-GROWTH | DENTISTRY, ORAL SURGERY & MEDICINE | ADHESIVE SYSTEMS | BOND STRENGTH | 2 LAYERS | Cariostatic Agents - therapeutic use | Humans | Composite Resins - chemistry | Dental Cements - chemistry | Methacrylates - chemistry | Calcium - chemistry | X-Ray Microtomography | Tooth Remineralization - methods | Dental Caries - pathology | Collagen - drug effects | Time Factors | Phosphoproteins - therapeutic use | Extracellular Matrix Proteins - therapeutic use | Dentin-Bonding Agents - chemistry | Biomimetic Materials - therapeutic use | Microscopy, Electron, Transmission | Hydroxides - chemistry | Collagen - ultrastructure | Silicon Dioxide - chemistry | Calcium Phosphates - chemistry | Dentin - ultrastructure | Materials Testing | Minerals - analysis | Acrylic Resins - chemistry | Dentin - drug effects | Tooth Demineralization - drug therapy | Dental Caries - drug therapy | Tooth Demineralization - pathology | Saliva, Artificial - chemistry | Polyphosphates - therapeutic use | Phosphates | Dental caries | Usage | Biomimetics | Phosphoproteins | Dentin | Adhesives | Dental materials | Transmission electron microscopy | Sodium | Collagens | Nanostructure | Lesions | remineralization | collagen | sodium trimetaphosphate | degradation | biomimetic | artificial carious lesion
Journal Article
Journal of Prosthetic Dentistry, ISSN 0022-3913, 02/2019, Volume 121, Issue 2, pp. 317 - 321
Journal Article
Journal Article
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