A digital denture duplication method using 3D scanning to create a precise model for accurate manufacturing.
A dental infiltrant composition uses crosslinking monomers to penetrate carious enamel lesions.
Integrated fan directs warm air to probe optics, preventing fogging without external connections.
Pre-positioned notches on a customizable device body hold floss to eliminate manual threading difficulty while maintaining precise tooth spacing alignment.
A porous metal implant accepts a calcium sulfate paste that crystallizes into a dihydrate coating within the pores.
A localized ion exchange process generates surface compressive stress in dental glass ceramics to boost flexural strength without compromising translucency.
A dual-curing dental composition uses molecular weight regulators to control polymerization kinetics.
Camera provides visual feedback to correct tooth model positioning, resolving shadowing issues during scanning.
Identical refractive indices eliminate light scattering at particle interfaces, resolving the trade-off between high filler load and translucency.
A dental device uses image recognition to detect restoration parts and automatically select operating programs for simplified operation.
Silica fillers coated with crosslinked acrylic resin prevent catalytic degradation, extending storage stability of light-cured dental impression materials.
Segmented antechambers and radial premixing reduce energy consumption and pressure losses when mixing viscous fluids.
An electric motor drives a rack and pinion mechanism to push the plunger, resolving inconsistent manual dispensing rates and preventing material dripping.
Physical vapor deposition creates a silver-ceramic film with nano-textures that inhibit bacterial growth while promoting tissue integration.
Bridging elements in the sulfonium initiator reduce viscosity for easier mixing while maintaining curing reliability.
Aligning the panoramic slice with each implant axis resolves distortion issues while maintaining a complete overview of the jaw structure.
A scanner base central transmission component connects a PC and scanner for direct data intercommunication, resolving single-function support limitations.
Dispersing pre-reacted mineral trioxide aggregate in a hydrogel matrix eliminates time-consuming clinical mixing while maintaining bioactivity.
Twisted biphenyl diamine accelerators modulate polymerization kinetics to reduce shrinkage stress and prevent discoloration in dental resins.
Offset adapter clamping zone secures mobile phone lens for dental imaging.
A 3D scanner uses a reference unit to detect varifocal conditions for accurate shape measurement.
Digital workflow eliminates temporary prostheses to ensure accurate fit and reduce infection risk.
Titanium dioxide pigment scatters light to mask heat-induced discoloration in molded articles while maintaining mechanical strength.
Integrated oral detector releases indicator agent upon bacterial contact, eliminating external processing equipment and simplifying hygiene routines.
Replacing unstable methacrylates with vinylene carbonate derivatives resolves storage stability issues while preserving flexural strength.
Malleable condylar and anterior guide tables record unique patient jaw paths to resolve accuracy versus complexity trade-offs.
A digital mesh processing method automatically detects and removes orthodontic brackets and wires to reconstruct accurate tooth surfaces.
A dental composition with rigid backbone and flexible spacer units reduces polymerization shrinkage stress.
Patient support apparatus uses multi-sensor fusion to enhance measurement precision through secondary sensor feedback.
Oligomeric cumene hydroperoxide derivatives eliminate volatile odors and improve thermal stability during redox curing.
A haptic interface device guides camera movement to optimal positions for accurate three-dimensional scanning.
Nitrogen-doped titanium dioxide nanoparticles enable visible-light photocatalysis, eliminating UV irradiation needs and reducing biofilm accumulation.
Real-time feedback from a 3D numerical model validates finish line geometry, preventing re-scanning caused by deficient dental site preparations.
Digital modeling and 3D printing create patient-specific oral stents that minimize radiation exposure to the oral mucosa, reducing mucositis.
Hinged segments with removable stiffeners allow stress-free model extraction, preventing breakage during rigid tray separation.
Labile crosslinks cleave and reform during polymerization to reduce volumetric shrinkage in cured materials.
Snap-fit striking sectors on the upper tray enable centric relation positioning in one visit, reducing inventory needs.
Optical scanning creates digital dental models with selective resolution to eliminate plaster casts while maintaining fitting accuracy.
Fatty acid separation material prevents impression adhesion to teeth, resolving accuracy issues from resin bonding.
A denture adhesive cream base combines unsaturated vegetable oils with fully hydrogenated fats to maintain structural integrity.