An asymmetrical healing element shapes gum tissue to eliminate traumatic impression procedures.
Segmenting the stem and abutment resolves infection risks from skin seals while maintaining reliable osseointegration through bone ingrowth.
A laboratory analog system uses a resilient spring section and securing element to lock radial movement of an insert post.
Segmentation creates a break zone and auxiliary drive to prevent implant damage while allowing continued manipulation without replacing the instrument.
A dental implant abutment uses planar relief surfaces on its apical base to provide anti-rotation security without complex groove machining.
A dental bone foundation guide uses a bur instrument attachment to align cutting tools along a horizontal plane for precise surgical operations.
Molybdenum-infused zirconia ceramics provide sustained antimicrobial activity through capillary infiltration and high-temperature sintering.
A dental jaw implant outer cone tapers to distribute forces across the bone interface.
A preform with long unidirectional fibers embedded in a cross-linked polymer matrix enables CAD/CAM machining of fiber-reinforced composite dental components.
A dental implant drill-guide uses orthodontic screw-seats to anchor against bone-fixed reference points for precise cavity preparation.
Segmented information sheets adapt to specific surgical protocols, reducing visual clutter and confusion during instrument selection.
Nested shells restore worn dental retention elements by adding external geometry, reducing treatment time and avoiding complex traditional repair procedures.
A single-piece dental implant merges the fixture and customized emergence collar to shape gum tissue and align the crown.
A transfer device links an attachment member to an abutment holder via a connecting member to align angled dental components.
An auxiliary part couples to a tubular dental implant interface to define a precise cutting plane for variable pillar height adjustment.
An intraoral scanner uses internal 3D imaging to calculate real-time alignment, eliminating bulky external trackers while maintaining high precision.
Intermediary guide mechanism allows precise multi-hole boring in minute spaces, resolving difficulty of operating drills in tight areas.
Alkaline surface treatment creates a hydrophilic implant finish to resolve poor osteointegration caused by hydrophobic metallic surfaces.
A porous tantalum dental implant core accelerates bone integration through osteoconduction and high friction.
Embedding radiopaque markers inside the attachment member body protects them from wear while enabling accurate CT scans.
Elongated aperture enables longitudinal adjustment of the ferromagnetic baseplate to maintain retention stability as gum levels change over time.
A dental implant surgical guide uses a three-dimensional indicator to locate the missing tooth platform and guide drilling.
A digital holder abutment mounting guide aligns dental fixtures with precise orientation using 3D planning data.
Pink anodizing on the distal section matches gum tissue color, preventing unsightly exposure if gingival recession occurs.
A dental tool with a resilient collar frictionally retains small abutments for precise positioning during implant procedures.
A one-piece implant extension with a predetermined breaking point prevents apical contamination while allowing easy separation from packaging.
Processing extracted patient teeth into sterile alveolar bone grafts prevents immune rejection and eliminates the need for additional surgical harvest sites.
Customized dental implant tooling addresses standardized drill limitations by generating virtual models to optimize bone space utilization and osseointegration.
Segmented subperiosteal tunnels allow specialized instruments to reach remote surgical sites, reducing tissue trauma while maintaining maneuverability.
Merging the drill guide and anchor plate eliminates separate positioning steps, reducing treatment time while maintaining precise screw orientation.
Powder spray coating with titanium particles improves adhesion and bioactivity on porous metal surfaces.
Hot pressing bonds thermoplastic material to an abutment collar, resolving adhesive loosening under high chewing forces.