Combining betamethasone, gentamicin, and glass ionomer cement resolves solubility issues while enhancing dentin bridge formation.
Removable tapered pins in dental model bases guide precise tooth alignment, resolving triple tray mold positioning errors.
A dental adhesive composition containing a polymerizable monomer with a hydrogenphosphate diester group and Group IV metal ions.
A shell-like orthodontic appliance with a lingual sagittal adjustment portion stabilizes maxillomandibular occlusion.
Additive manufacturing of segmented dental models using connecting bridges and gap-like recesses to maintain dimensional stability.
A dental adhesive composition uses a specific valency ratio between phosphoric acid monomers and multivalent metal ions to form ionic crosslinks.
Nanoscale radiopaque particles enhance X-ray detectability in PEEK polymer blocks without compromising mechanical strength or aesthetic translucency.
A confocal imaging apparatus removes the field lens and uses a translation mechanism to adjust lens positions.
An asymmetric acrylamide-methacrylic acid ester compound enhances monomer compatibility and tooth structure penetration.
Magnetic calcium phosphate nanoparticles enhance bone cement radio-opacity and mechanical strength through composite material integration.
Segmented thermal paths and a positioning member ensure reliable abutment despite joining backlash, inhibiting condensation on the optical surface.
Composite polymer system resists mastication stresses while preventing mucosal irritation.
A scanner processor transmits an authentication signal to a connected cable and receives a feedback response to verify genuineness.
Multi-functional carboxylic acids enable efficient electron beam or UV curing of polyester coatings without complex composition structures.
Deforming the gingiva model via crown control points resolves fit inaccuracies in shell-shaped tooth repositioners caused by static initial-state models.
A computer-assisted surgery apparatus uses an optical monitoring system to detect tissue marks and adjust a robotic intervention member.
Segmented two-component resin system extends working time and improves manipulative cohesiveness by delaying polymerization until mixing.
A low-sensitization optically polymerizable ink formulation combines specific initiators and accelerators to manage viscosity.
A universal dental adhesive combines silane, phosphoric ester, and sulfur monomers to bond diverse restorative materials.
Multi-modal scanning detects intraoral food traps using 2D, 3D, and near-infrared sensors to resolve precision-complexity trade-offs.
Applying a rare earth ion solution to pre-sintered zirconia improves aesthetic realism by balancing color uniformity with natural tooth transmittance.
Scanner sleeves integrate optical identifiers to authenticate usage status, preventing cross-contamination from reused protective barriers.
Digital mandible modeling replaces mechanical articulators, resolving precision errors in dental prosthetics verification.
A radiographic template with predetermined markers establishes a precise coordinate system within the oral cavity.
Replacing hydrolyzable methacrylates with vinylbenzyl ether resins eliminates bisphenol A leaching and enzymatic degradation in dental restorations.
Recombinant yeast cells present viral antigens as natural adjuvants, resolving the subunit vaccine trade-off between safety and weak immunogenicity.
Zirconia stabilizers in the amorphous phase resolve contradictions between machinability, translucency, and durability for dental restorations.