A conical cap locks onto an abutment post via inclined surfaces to create a secure mechanical joint.
Radially enlarged post region prevents soft tissue coverage, eliminating surgical exposure and reducing treatment time.
Distance pins connect a sintered superstructure to a reference plate, enabling accurate coordinate translation and reducing material wastage during milling.
A form-locked connection between a spacer element and abutment prevents film folding over bone defects, ensuring stable regeneration.
Plasma treatment modifies titanium surfaces to enhance cell adhesion and antibacterial properties, resolving weak initial osseointegration.
A magnetic lifting element creates a controlled space between the periosteum and bone for targeted tissue modification.
Resorbable magnesium fixation nail secures bone augmentation membranes via barbed pin anchoring, eliminating surgical removal.
An oval section dental implant enables insertion into narrow alveolar bone structures.
A dental tool uses a friction-fit retention element to securely grip various implant drivers for precise torque application.
An electromagnetic percussion device accelerates an anchor to impact a floating yoke, transferring energy through sound waves and translational momentum.
Encircling strap anchors dental implant to lower mandible, avoiding bone grafts and reducing infection risk from drilling trauma.
Sequential scanning rod assembly resolves spatial conflicts between adjacent implants to ensure accurate positioning.
An electrically powered orthodontic device uses a motor and lever arms to apply constant tension forces to teeth and bone structures.
A synthetic metal system uses a polymeric matrix to encase a cellular metal frame for structural integrity.
A duplicate denture fabrication method uses adhesive bonding to secure gum portions within a resin mold for stable interim prostheses.
Integrating a snap-lock stop sleeve with a guiding sleeve reduces device complexity while maintaining drilling accuracy in dental implant procedures.
A dental implant drill uses a void section to supply coolant directly to cutting blades.
Internal undercuts in the head portion provide secure appliance attachment points without increasing the external profile height of the orthodontic implant.
Alternating semi-circular ribs on the abutment body increase gingival contact area to stabilize biological width and reduce crestal bone reabsorption.
A maxillary expansion device integrates mini-screws directly into the body for single-session bone anchorage.
Bi-directional internal threads in a dental implant resist clockwise and counterclockwise loosening from chewing forces.
Vacuum plasma treatment apparatus modifies biomaterial surfaces using controlled gas environments and segmented electrode units.
Segmented screw and abutment system aligns temporal digital images without requiring multiple permanent markers.
Keratin hydrolyzate coating prevents atmospheric contamination and eliminates additional processing steps before osseointegration.
A flexible cap shell couples to medical implants, providing a smooth outer surface that minimizes tissue irritation.
A metal ion imprinted polymer process uses water dispersion to replace expensive perfluorocarbons during suspension or emulsion polymerization.
Evacuation groove channels excess cement and air away from the bonding interface, simplifying fitting while maintaining seal reliability.
A virtual bridge connects spaced dental models into group models for simultaneous multi-input Boolean operations.
Helical polymeric filaments within a biopolymeric matrix provide kink and compression resistance, maintaining lumen space for nerve regeneration.
An internal connection dental implant transfers torque through interlocking lobes in a conical chamber, resolving stability issues in small-radius designs.
Vacuum plasma treatment with N2 or Ar gas alters zirconia surface chemistry, improving cell adhesion and reducing inflammatory reactions.
Chemical vapor deposition deposits tantalum onto titanium alloy substrates to form a bioinert surface.
A hybrid dental implant uses a hollow inner channel to deliver bone inducing agents directly into the surrounding bone tissue.
Segmented elastomeric cleaners with distinct hardness and density remove bacteria from tongue recesses, resolving manufacturing complexity.
A sensor module installed in an oral cavity stores biological data alongside patient identification information.
Stepped connecting screw stem accommodates varying gingiva heights, ensuring reliable fixation and reducing implant failure risk.
A drill-less dental implant uses a penetrating element to linearly enter jaw bone tissue without pre-drilling.
Hydrothermal treatment creates a micro-rough oxide layer on titanium implants to resolve bioinert surface limitations and enhance bone fusion.
Rotating polygonal appendix enables controlled abutment removal without impulsive forces while maintaining precise orientation.
Slit gripping member flexes around ball implant to clamp prosthesis, reducing torque while maintaining fixation strength.