Calcium aluminate cement and polyacid superplasticizer accelerate setting time while maintaining high pH antibacterial effects.
Multi-directional light emitters and imaging cameras capture jaw position and orientation data for dental appliance design.
High pressure homogenization creates a bimodal particle distribution that reduces setting time while maintaining biocompatibility in dental applications.
Merges swept laser OCT depth imaging with RGB surface scanning into one unit, eliminating multiple passes to resolve speed and accuracy trade-offs.
Segmented irregular and ultrafine inorganic particles resolve the contradiction between mechanical strength and paste flowability in dental composite resins.
Composite alpha-TCP, silicate, and phosphorylated amino acid formulation delivers high shear strength to resolve soft tissue adhesion reliability issues.
A self-curing endodontic composition polymerizes at room temperature to seal root canals without thermal heating.
A channeled tray holds a moldable thermoplastic impression part that resists displacement relative to the human jaw during image guidance.
Multi-part dental cement separates acid and base components into distinct pastes, preventing premature solidification while preserving adhesiveness.
A dental impression tray features a detachable handle to facilitate precise three-dimensional data collection.
Curable thermal protectant composition applied to teeth inhibits thermal destruction of dental amalgam fillings during cremation.
Segmenting the rigid mouthpiece from the disposable insert resolves stability and complexity contradictions for accurate impressions.
A dental porcelain paste composition using hydrophobized silica and controlled organic solvents to maintain stable application properties.
Moving grids create temporal Moiré fluctuations that enable bandpass filtering, resolving weak signal issues on translucent dental surfaces.
Alkoxylated polymers adsorb onto pigments to maintain low viscosity while preserving high opacity in fast printing.
Spectrometer measures tooth color independently of shape capture using optical sensors.
Tertiary amine core-bearing acrylamide monomers replace ester groups in dental adhesive formulations to enhance mechanical strength and reduce cytotoxicity.
Fatty mono(meth)acrylates phase separate into microscopic domains, reducing tack and stringing during instrument manipulation.
Optimized particle size distribution balances viscosity and solid content, resolving the trade-off between printability and mechanical durability.
A shape memory alloy injection tip bends to adapt to root canal anatomy.
Angled camera holder spaces imaging device from patient teeth, resolving poor lighting and odd angles in buccal image capture.
Silane-modified cellulose nanocrystals reinforce methacrylate resins to bridge hydrophilic dentin and hydrophobic fillings, preventing cracking.
Processor analyzes 2D target images to correct non-central camera distortion and model illumination uniformity for accurate 3D reconstruction.
A liquid crystalline epoxy nanocomposite material polymerizes to form a low shrinkage structure with high microhardness and wear resistance.
A root canal device overlays visible light and cross-sectional images to guide the cutting tool tip accurately.
A double telecentric optical system captures 3-D surface contour data from pixel contrast variations.
An optimization algorithm calculates weighted distance values between 3D dental arch models to determine accurate bite positions.
Stabilizers prevent premature polymerization in vinyl ether coatings, ensuring complete recess filling in lithography.
An ultrasound dental tray captures subsurface features instantly, eliminating messy physical impressions and reducing treatment time.
Mineral bone cement retains residual hydraulic activity through controlled partial setting and water removal.
Silane-treated inorganic fillers stabilize pigments within the resin matrix, preventing separation while maintaining precise dimensional accuracy.
Nanostructured alkaline earth fluoride particles integrate into crosslinkable resin matrices to deliver bioactive ion exchange.
3D printed removable oral device reduces oral volume to limit food intake and support weight management.
A movable beam deflector replaces large mirrors to reduce device height while maintaining a large scan area for dental applications.
Chemical etching creates micro-pits on the substrate, accelerating calcium phosphate deposition and reducing fixation time.
Printable resin composition with polymerizable components forms a gelled article via photopolymerization.
A dental composite material uses ceramic fibers with controlled dimensions to enhance mechanical strength and handling properties.
Synthetic pro-fibrotic coatings replace animal-derived materials to eliminate batch variations and contaminants while ensuring consistent clot stability.
An elastically deformable bite fork stabilizer uses an adhesive layer to secure the instrument during dental procedures.
A radiation-curable coating composition cures rapidly on composite substrates using actinic radiation and photoinitiators.
Optical tracking system replaces passive guides to resolve registration errors from patient movement during dental implant surgery.
A computer system projects three-dimensional tooth data into a two-dimensional height map to automatically detect cusps and ridges.
Infiltrates coloring liquids into dental temporary calcined bodies to resolve interface peeling and enable complex three-dimensional color reproduction.
A dental preparation cuff uses a radially tapered wedge edge to displace gum tissue during tooth preparation.