Aligning virtual tooth libraries with intraoral scans generates initial restoration designs for chairside manufacturing.
Scanning impressions creates accurate 3D models for CAD/CAM manufacturing, resolving irregular root canal geometry issues.
Calibrated rods align dental arch models to the Camper plane, reducing manual mounting time and improving virtual prosthesis accuracy.
Water-immiscible carrier liquids stabilize reactive mineral pastes, eliminating complex mixing and extending shelf life.
Radically curable polysiloxane compositions enhance curing precision in additive manufacturing processes.
Elastic tabs secure reflective markers to a U-shaped intra-oral support for mandibular kinematics recording.
Segmented trays with flexible flat legs replicate condyle angles while the membrane allows simple model extraction.
Acrylic-modified chitosan strengthens the hybrid layer between tooth tissue and restorative material, extending restoration lifespan.
Refractive index matching of highly disperse silica resolves the trade-off between composite transparency and handling properties.
Zirconia ceramic bodies incorporate terbium and chromium ions to produce consistent color uniformity in sintered structures.
A radiation curable ink composition integrates photochromic materials to enable reversible color changes upon UV exposure.
Amino alcohol chain transfer agents stabilize nanogels during thermal polymerization.
Replacing bis-GMA with epoxide macromers eliminates health risks while maintaining viscosity and strength.
Replacing paraffin with vegetable oils avoids throat irritation while porous silica filler maintains adhesion strength above 40 Newtons.
Dental glass ionomer cement composition uses crosslinked polyalkenoic acid to enhance mechanical properties.
Gelatinizable syringes deliver bone growth material to defects, preventing spillage and ensuring precise placement.
A dental curable composition incorporates a sugar compound with an acid anion group to release metal ions for tooth remineralization.
A two-paste self-adhesive resin cement combines phosphonic acid and carboxyl monomers to bond directly to dental hard tissues.
Intraoral scanner captures surface geometry alongside temperature and chemical composition data to generate enriched diagnostic information.
A sensor-equipped oral care device measures mouth opening values during daily hygiene routines.
Non-perpendicular orientation of dental impressions reduces reconstruction artifacts from high radiodensity materials, improving digital model accuracy.
Silicone elastomer composition combines alkenyl organopolysiloxanes to deliver high transparency and suitable flowability for dental impressions.
Calcium phosphate sintered particles use a fusion preventive agent to maintain dispersibility and spherical shape during high-temperature processing.
Incorporating aromatic active-hydrogen compounds into polymer polyols reduces scorching risks while maintaining low viscosity for better mechanical strength.
A mouldable appliance hardens to conform to anatomical surfaces while a fiducial body provides a stable scanning reference for spatial mapping.
Automated CAD/CAM milling of patient-specific crowns replaces manual carving, resolving the trade-off between manufacturing precision and production time.
Trehalose addition prevents time-dependent viscosity loss in alginic acid compositions, maintaining storage stability and handleability.
A frangible dental device transfers pigment to mark raised tooth regions and tests resistance to verify occlusal reduction.
A synchronized video and three-dimensional model interface enables interactive dental margin marking through combined visual representations.
A pasty dental alginate composition uses specific polysaccharides to regulate fluidity and extend working time through chemical retarders.
Cellulose ester coating reduces moisture vapor transmission on compostable substrates, resolving the trade-off between biodegradability and humidity resistance.
Three-axis motion detection disables image sensors and projection modules during idle periods, preventing temperature rise and power waste.
A zirconia mill blank uses a controlled stabilizer concentration gradient to produce natural tooth-like translucency and color gradation.
Fluoropolymer filler particles replace reflective additives in a cationic dental composition, improving scannability while preserving color brightness.
Potassium ion replacement increases flexural strength beyond 800 MPa while maintaining heat expansion coefficient stability.
A urethane methacrylic monomer with alicyclic rings reduces polymerization shrinkage in dental composites.
A paste/paste glass ionomer cement kit resolves manual mixing challenges by enabling easy mixing at high shear rates.
A tooth mineralization solution uses non-collagenous protein analogues to stabilize calcium ions and drive rapid hydroxyapatite formation.
Replacing starch with indigestible polymers prevents microorganism growth while enabling eight-hour drug release.
A hydrophilic coating formulation cures into a crosslinked polymer network using Norrish Type I and II photoinitiators to maintain surface lubricity.
A dental tool uses an adjusting shaft to hold the tongue tip while recording occlusal position between lips.
Jet-milled fine uniform copolymer powders resolve phase separation and adhesion strength issues in denture adhesives.
A digital working model incorporates an auxiliary structure to guide manual separation of deep-drawn thermoplastic dental aids.
Substituted cyclic thiourea compounds resolve storage stability and adhesive property contradictions in dental curable compositions.
Digital modeling replaces physical impressions to reduce clinical appointments while 3D printing creates customized prototypes.