Replacing mercury amalgam with bio-based polyurethane oligomers grafted with acrylic monomers eliminates toxicity while maintaining mechanical strength.
Segmenting denture models enables recess and protrusion coupling that prevents undercuts during anatomy modification.
Tertiary polymer blends form nano-scale dispersed structural morphology to increase ductility and strength in biodegradable films.
Separating calcium and fluoride sources prevents precipitation, enabling effective remineralization while maintaining adhesion.
Plastic green compact ceramic shells adapt to carriers before low-temperature firing, reducing processing time and fracture risk.
Organically surface-modified nanosize fillers in photopolymerizable resin maintain low viscosity while achieving high bending strength for dental prostheses.
Crosslinking agents create a thermally stable network in the masterbatch, preventing dripping during combustion while maintaining mechanical properties.
An integrated applicator merges mixing and dispensing functions to resolve application difficulty in small cavities while maintaining mechanical strength.
A custom gum tissue guide arrangement uses electronic dentition models to define precise incision paths for gingival surgery.
Sodium polystyrene sulfonate accelerates Portland cement setting to resolve slow manipulation trade-offs and provides antibacterial protection.
A digital dental system integrates sensors into a cutting handpiece to record tooth surface data in real-time.
An intraoral scanner uses infrared light sheet triangulation to capture surface contour data along a curved track.
A digital orthodontic aligner model thins material at super contact regions to reduce jaw interference.
A foldable dental scope transforms into an intraoral adapter to capture high-quality images using a mobile device.
A self-etching dental composite resin achieves direct adhesion to dentin and enamel using phosphorus-containing acidic groups.
Hydroxyapatite-coated glass fibers increase Vickers hardness and push-out bond strength to reduce micro leakage and secondary caries risk.
Crosslinking monomers with acid groups improve hardening depth and adhesion, resolving the trade-off between rapid infiltration and mechanical stability.
Digital photography and optical scanning generate a 3D anatomical prototype of target teeth, reducing patient session time and manual labor.
Encapsulated basic core materials within inorganic metal oxide shells provide delayed pH increase for tooth remineralization while maintaining stable viscosity.
A calibration tool with a predetermined recess or hole enables accurate digital 3D surface models from CT scanning data.
Targeting plasma Hsp90α phosphorylation prevents cancer cell invasion, resolving low sensitivity issues in conventional tumor biomarkers.
Digital workflow compares current dental setup to preset configurations, avoiding new manufacturing time and cost.
A dental aligner integrates a metal wire into a plastic tray to maintain consistent force on teeth, reducing wear time and improving treatment compliance.
Optimize evaporation rates of low vapor pressure compounds to create high density non fouling surfaces.
Single polarizing element filters internal tooth refraction to improve surface contour measurement accuracy while reducing optical path complexity.
Rhomboid porcelain inlay core with anatomical post extension prevents microleakage into gutta percha while preserving tooth structure.
Trichloroacetic acid dehydrates dental pulp to accelerate sodium hypochlorite dissolution and improve root canal access.
A bottom-up stereolithography method cures dental resin layer-by-layer through a light-permeable container base to fabricate artificial teeth.
A custom imaging tray with markers aligns tomography and surface scan data, resolving inaccuracies from image scattering to enable precise implant placement.
Moisture-triggered latent curing mechanism prevents exothermic tissue damage while eliminating toxic solvent residues from the formulation.
Template body captures six cranial reference points to fix jaw models, preventing misalignment that causes craniomandibular dysfunction.
Nanoscale filler dispersion in the resin matrix maintains crown flexibility while delivering high mechanical strength without brittleness.
A polymerizable monomer featuring an allyl group bonded to a nitrogen atom enables radical copolymerization within dental formulations.
Paraffin and alkyl-substituted polydimethylsiloxanes prevent hydrocarbon exudation in storage-stable dental putty, preserving adhesion.
A rigid plastic tray holds thermoplastic material that molds to incisors and canines for a precise custom fit.
Anti-DCLK1 antibodies target DCLK1 isoforms to eliminate tumor stem cells, overcoming drug resistance and recurrence in renal cell carcinoma.
Dual-phase lithium disilicate and cristobalite crystals increase biaxial flexural strength to 600 MPa while maintaining light transmittance.
A portal application links digital assistants to enterprise apps via single sign-on sessions.
Amide-linked pendant groups provide hydrolytic stability and reduced shrinkage stress, improving flexural strength in glass ionomer cements.
Interchangeable 3D markers enable precise determination of pure rotational axis and individual values, eliminating costly laboratory scanners.
A deformable endodontic point lowers viscosity under ultrasonic waves to flow into voids.
A photo-sensitive resin composition incorporates a butadiene-modified epoxy resin to enhance mechanical strength and heat resistance.
Segmented handheld optical scanner with a Total Internal Reflection prism reduces weight while maintaining scanning accuracy.
Angled air jets from paired cannulas remove saliva and bubbles to maintain a distortion-free scanning area.
Calcium silicate and aluminate phases resolve inflammation and acid vulnerability in bone fixation.
Asymmetric cone features prevent tilting and rotation during insertion, ensuring accurate positioning of the tooth stump within the dental arch model.
Ultrasonic dental probe replaces X-ray scanners with mechanical vibrations to eliminate radiation exposure while maintaining precise bone imaging resolution.
A dental imaging system registers optical surface scans with X-ray volume data to generate complete three-dimensional models.