Integrated couplers reduce energy loss and beam pointing variations while maintaining six degrees of freedom.
An optical scanning device captures tooth model data using segmented overview and individual scans.
A dual-component capsule uses an integrated piston assembly to dispense paste materials through a single plunger mechanism.
Additive manufacturing creates dental retainers with customized geometries and varied thicknesses tailored to patient anatomy.
A syringe cartridge uses a flow-directing mechanism to switch between venting and dispensing positions.
Automated scanner probe head moves along defined axes to capture dental structures without manual wand operation.
A dental adhesive kit uses a composite photopolymerization initiator system to cure bonding materials under LED light irradiation.
Imidazole-based resins buffer acidic components in dental adhesives, preventing amine deactivation and restoring polymerization efficiency.
Embedding photonic crystal particles in dental matrices creates strong opalescence through specific color reflection, solving opacity issues in thin sections.
Covalently bonded coinitiators on particulate carriers prevent leaching and yellowing while improving mechanical strength of cured dental compositions.
A cell-laden hydrogel scaffold with pre-formed vascular channels supports endothelial monolayer formation and angiogenic sprouting.
Polyether dental impression material uses a random copolyether fluidity improver to enable manual mixing with common dispensers.
Metal oxide fillers prevent alkaline glass ceramic reactions, eliminating hydrofluoric acid etching needs for better restoration fit.
Modifying oral scan data with material-specific parameters compensates for expansion and shrinkage during 3D printed tray production.
A biocompatible polymer matrix of hyaluronic acid derivatives and poly-epsilon-caprolactone supports prosthetic meniscus devices.
A custom tooth clamp connects a CNC dental drill to the patient's anatomy using surface data.
Rotating the scanner mouthpiece enables continuous 360-degree access while adaptive illumination resolves contrast issues across diverse oral materials.
A disposable dental crown holder uses curable material to conform to the interior surface of the crown for a secure, slip-resistant grip.
A motion-based dental splint captures precise jaw movement data to generate a customized thin-shell aligner with tailored contact surfaces.
A PEG-modified protein desensitizer forms a nanometer coating inside dentin tubules to promote remineralization.
Passive vectorized tracking markers enable precise three-dimensional location and orientation detection for surgical instruments.
Curved trough holds formable material with voids to eliminate trimming discomfort.
A wearable device incorporates a pliable region that users reshape to match individual facial contours.
Hybrid monomers combine phosphonic acid and dihydrogen phosphate groups to enhance dental material bonding strength.
A denture adhesive composition uses di-basic sodium phosphate as a cohesion builder to enhance internal strength and durability when hydrated.
Soft dental appliance with elastic canine reception zones reduces muscle activity and tooth damage from bruxism.
A copper alloy composition achieves a golden color and strong corrosion resistance without using expensive noble metals.
Segmented capsules with flowable and paste resins prevent leakage in tight interproximal cavities while minimizing polymer shrinkage stress.
A monobloc dental instrument kit integrates tissue spreading and scanner guiding functions into single-body tools.
Automated algorithms process scanned tooth data to generate precise crown models, eliminating multiple patient visits and reducing total treatment time.
A dental observation device displays visible light and three-dimensional images side by side without overlap.
Hybrid organic-inorganic composition resolves slow setting and low fracture toughness by using nanocomposite reinforcement for rapid fabrication.
A digital denture hole guider aligns binding regions using 3D surface information to ensure precise fixture engagement.
Acrylonitrile/methyl methacrylate shell particles expand under ultrasound to soften adhesives, preventing enamel damage and burn risks during removal.
A dental instrument featuring a rotatable working end coupled to the handle via a mechanical joint.
A bite tray featuring a parabolic support structure and integrated bite stop assembly captures maxillary and mandibular impressions in a single clinical step.
Optimized P2O5 and alkali oxide ratios increase solubility, resolving the trade-off between ion release rates and structural stability.
Acylphosphine oxide initiators overcome oxygen inhibition and discoloration to achieve complete curing with high mechanical strength.
A flexible appearance strip simulates the final dental appliance on a patient to visualize tooth placement and gumline positioning before fabrication.
Separate packs isolate oxidizing and reducing agents to prevent premature curing while maintaining storage stability.
A connector with oblique guide faces converts radial pressure into axial detachment force for safe accessory removal.
A free radical radiation curable inkjet ink composition balances flexibility and scratch resistance while maintaining low viscosity.
A piston with a rotatable closure element opens and closes a ventilation channel to manage residual air during cartridge insertion.
Segmented glass ionomer cement kits separate reactive components to resolve the contradiction between high flexural strength and low viscosity mixability.
A monitoring light source emits visible wavelengths that do not induce polymerization while a detector measures reflected intensity changes.
Ball socket joints enable horizontal adjustments of jaw plates, resolving the trade-off between manufacturing precision and ease of operation.
Composite resin layering strengthens temporary prosthesis occlusal surfaces, preventing wear damage from chewing forces.