Stabilizers prevent organoborane dissociation to ensure storage stability and adhesion.
Segmenting acid and silane components prevents premature degradation, extending shelf life while preserving adhesive strength.
Articulated sidewalls compress mouldable material against teeth to achieve accurate fit without professional impressions.
Physical articulator mounts dental casts to evaluate functional occlusion, resolving digital workflow inaccuracies that compromise treatment precision.
A smart toothbrush integrates a camera and sensors to capture oral cavity images and chemical data for user terminals.
A digital 3D tooth model system uses a reference mark to align scan data with anatomical coordinates.
Combines whole-shape and partial scan data via voxel conversion to resolve coverage precision trade-offs in dental prosthetics.
A single camera captures intra-oral scenes using structured illumination patterns to calculate three-dimensional positions via triangulation.
A dental cement composition uses a polyol spacer group between methacrylate moieties to ensure easy removal of temporary restorations.
Multi-planar intraoral RF coil positions elements in parallel planes within the occlusal space to detect magnetic resonance signals from dental tissues.
Segmented vertical gauges reduce patient discomfort while maintaining bite registration accuracy.
A three-part dental bonding system applies a gel etchant directly to the tooth surface without rinsing or drying steps.
A calibration cradle seats a three-dimensional scanner and automatically rotates its internal pattern plate to align the optical axis.
Cyclic imide monomers fragment and add to the polymeric network, reducing polymerization shrinkage stress.
Orthodontic aligners use machine learning to optimize local contact surfaces for enhanced retention and activation forces.
Sol-gel derived coating releases antimicrobials via diffusion to prevent post-operative infections without systemic toxicity.
Fitting a parametric Hermite spline to tooth center points models displacement paths, preventing collisions that extend treatment duration.
A root canal treatment material uses specific methacrylamide compounds to ensure sufficient polymerization and adhesiveness.
Peptide compositions enable targeted remineralization through controlled self-assembly mechanisms.
Scanning mirrors project structured light onto teeth, allowing computational removal of subsurface scattering artifacts without physical coatings.
Photosensitizing compounds enable rapid curing under strong light while ambient light stability prevents premature polymerization.
Anti-MDGI antibodies detect brain tumor markers and deliver therapeutic agents to cancer cells.
A polymerizable dental composite material uses a narrow particle size distribution of 0.7 to 3.0 micrometers for inorganic fillers.
Dendritic compounds increase flexural strength and reduce viscosity under shear stress.
A denture scanning method uses impression material on the gum-facing surface to capture accurate 3D geometrical data of the opposing jaw.
Hydroperoxide-thiourea redox initiator system cures dental composites without amine-induced discoloration or bitter taste.
A control unit extracts feature points from a side face image to establish a reference line for aligning scanned teeth data.
Refractive index matching between monomer and filler enables deep curing while reducing polymerization contraction in posterior teeth.
An amphiphilic primer bridges hydrophobic resin and hydrophilic dentin, resolving adhesion reliability issues caused by water permeability.
Segmentation and dynamics principles enable a movable tray section that improves impression accuracy while maintaining structural simplicity.
Laser treatment glazes composite dental veneers, reducing tooth removal and lab work.
Segmented molecules shift absorption to 400-500 nm, enabling deep cure with single initiators while preventing polymer coloration.
A processing device compares current intraoral images with previous scans to determine field of view overlap and outputs positioning warnings.
A dental modeling system uses a removable pin mounting plate to support impressionless model creation.
Ring-opening metathesis polymerization cures dental milling blocks, reducing shrinkage stress and discoloration from metal initiators.
A dental impression tray system featuring adjustable troughs and removable tooth portions for precise anatomical capture.
Segmented two-package dental adhesive composition maintains storage stability while delivering strong bonding across diverse dental materials.
A curable polyether dental composition uses a specific fluorinated compound to enhance hydrophilicity and improve wetting behavior.
An oral care device uses image processing to determine absolute mouth opening measurements.
Digital three-dimensional modeling creates precise patient jaw structure replicas for accurate denture base fabrication.
A dental photocurable composition uses an aryl iodonium salt and alpha-diketone photosensitizer to initiate photopolymerization.
Allyl sulfone transfer reagents reduce polymerization shrinkage force during rapid curing, preventing marginal gaps in dental fillings.
A dental measurement kit uses stacked sheets with known thickness to determine vertical dimension differences.
A one-piece mold body creates a customized fit for dental restorations using 3D scan data.
A silver-containing calcium phosphate sintered body encapsulates nanoscale silver particles within a porous matrix to provide sustained antibacterial activity.
Plastic dental impression tray uses elongated through holes to mechanically anchor set material within the structure.
A two-component self-adhesive resin cement system with acidic monomers and basic fillers achieves improved bonding strength.
A polymerizable acidic compound copolymerizes with conventional methacrylates to form a reinforced dental material structure.