Digital CBCT and oral-scan planning creates a 3D-printed guide plate that aligns denture insertion with implant direction to reduce lateral bone stress.
A custom support base and abutment through-holes align a full dental arch to implants for precise bonding and immediate loading.
A jaw guide with main body and stabilizer transfers articulator dimensions accurately, maintaining restorative alignment despite surgical changes.
A tapered shaft and multi-ledge flange improve abutment-to-prosthetic alignment, contain adhesive overflow, and reduce adjustment steps.
A tapered abutment opening and threaded locking element keep the fixing screw stable, reducing loosening and restoration damage.
An ANN converts 3D scan data into crown and abutment designs within minutes, cutting manual dental restoration planning delays.
Combining sub-350 nm UV exposure and heating in one chamber enables safer, automated dental object coloring with consistent shade control.
A sensored probe tip with a stent or virtual stent ablates tooth buds early to prevent later wisdom tooth extraction, pain, and complications.
A porous root-analog implant enables direct placement in an unmodified alveolar socket, reducing drilling, tissue damage, and healing time.
A dual-holding screw tool uses S-shaped engagement channels to prevent detachment and keep small fasteners stable in confined procedures.
An absorbable polydioxanone membrane uses submicron fibers and controlled resorption to support bone and soft tissue regeneration while limiting exposure risks.
A negative-slope roughened interface and V-shaped recess improve soft-tissue sealing, limiting leakage, bacterial ingress, and crestal bone loss.
Controlled peak curvature and peak density on a ceramic implant surface speed osteointegration and improve primary stability.
Integrated scannable temporary abutments capture implant positions without fiducial markers, improving scan accuracy while reducing chair time and soft tissue damage.
Laterally extending supracrestal fibers on a dental implant abutment scaffold papilla regrowth and help avoid black triangles.
Indicator rods on a 3D-printed implant guide plate provide real-time axial and depth checks, helping detect placement deviation during surgery.
A slit tubular engager grips the fractured screw from the side, improving torque transfer for secure removal from dental implants.
Integrated sealing cylinders convert removable dental prostheses to fixed ones with precise alignment, fewer loose parts, and safer chairside handling.
A nested three-piece scanning body adjusts height for shallow or deep implants, improving scan accuracy and insertion in limited mouth opening.
Structured abutment surface zones guide epithelial and connective tissue attachment to form a biological seal and limit bacterial intrusion.
Automatic ROI setting in dental implant scan data identifies the abutment region from jig and adhesive features for faster, more accurate selection.
A single ScanPost combines digital implant position capture with multi-unit abutment driving to improve alignment and reduce tool changes.
A rotating drill inside a fitted bushing improves splint-guided implant placement precision while preserving multi-axis surgical movement.
Molten wax infiltrates porous 3D printed dental objects before sintering, enabling easier pre-polishing and lower final surface roughness.
Sputtered nanocrystalline TiO2 is heat treated to raise anatase content, improving UV activation, hydrophilicity, and osseointegration.
A telescopic dental bar locks implant coping positions in the mouth, enabling accurate bridge impressions and fewer dental visits.
Molten support material infiltrates porous 3D-printed dental objects, enabling pre-sinter polishing, smoother surfaces, and easier handling.
A hyaluronic acid injection approach rebuilds lost interdental papilla with less pain, lower procedure complexity, and faster black triangle improvement.
Build a temporary crown directly on the gingiva former with a breakable locking member that reduces implant load and soft tissue injury.
A viscosity-controlled hyaluronic acid injection rebuilds lost interdental papilla, reduces treatment pain, and helps eliminate black triangles.
A single intraoral scan aligns gingival and scan rod 3D data, reducing software handoffs and improving implant modeling accuracy.
Purified EMD proteins enable injectable gingival soft tissue repair, reducing surgical trauma and infection risk while improving regeneration.
A titanium-fluorine-oxygen surface layer preserves antibacterial activity while reducing fluorine elution from implants in varying pH environments.
Combining extraoral healing-cap, intraoral, and 3D cone beam scans helps preserve gingival emergence profile and improve dental prosthesis fit.
Laser-etched trabecular-like implant surfaces with nanoscale features boost osteoinductivity and reduce reliance on bone grafts.
Geometric guides and a jawbone fixation base enable accurate multi-tooth prosthesis installation in one session with less procedural complexity.
Magnetic attraction keeps dental implant screws engaged with the driver in tight mouth spaces, reducing drops during insertion and removal.
Patient-specific cutting guides align fibular grafts, reduce soft tissue irritation, and enable concurrent dental implant placement.
A tapered, threaded implant analog with shaft projections fits both gypsum and 3D-printed dental models for faster, precise prosthesis workflows.
Acid etching followed by electro-polishing balances glare reduction and low friction on dental drill flutes for clearer depth markings.
A jawbone-mounted fixation base and modular guides cut multi-tooth prosthesis installation to one session while preserving geometric accuracy.
Opposite-threaded bolts and a central connector enable stable alveolar ridge distraction, reduce nerve risk, and avoid appliance removal surgery.
Porous hydroxyapatite inserts fill implant openings to promote bone ingrowth, improving osseointegration and fixation under stress.