A dental implant packaging system uses a sterile barrier film to enclose components and enable safe presentation without direct contact.
Batch processing merges individual tooth guidance into unified operations, reducing procedure time and complexity for multiple teeth.
A tooth moving device uses a sliding part and elastic component to apply distalizing force.
An occlusal side groove in a dental crown body holds photosensitive resin that buffers occlusal force, reducing periodontal trauma and installation time.
Lock bushing and retaining ring align torque limiter components, eliminating gear friction to ensure accurate orthopedic implant assembly.
An indexing element on a dental abutment coronal section specifies apical orientation for digital scanning.
Segmented pillar portions enable rotational adjustment of the custom body, resolving positioning errors caused by fixed anti-rotational means.
A plastic dental implant stabilizes the protruding stump using a rigid inorganic attachment part, preventing rotation and deformation.
A unified dental abutment merges a base and curved coping to simplify manufacturing.
A milling cutter with integrated radius-forming elements shapes abutment tube sections to precise dimensions.
A ceramic body receives calcium phosphate mineral agglomerates via projection.
A non-aqueous hydraulic cement composition uses controlled particle sizes to enable precise injectability and handling.
Atmospheric plasma treatment modifies zirconia surfaces to increase chemical activity, reducing bacterial adhesion and improving biocompatibility.
A palatal implant uses a self-tapping sharpening portion to enable direct insertion without pre-drilling.
Segmented implant components preserve alveolar bone volume by preventing disuse atrophy while enabling easy removal of abutments without surgical intervention.
Deformable gaskets seal microgaps at dental implant interfaces, while silver alloy components suppress bacterial growth.
Electropolished screw grooves increase frictional force to prevent looseness and fracture in dental implant assemblies.
Longitudinal fins convert axial screw motion into radial retention, reducing material removal and preserving mechanical strength.
Twisted titanium alloy bristles and EDTA composition remove contaminants without damaging tissue structure.
A layered dental appliance method separates outer and inner layer creation to achieve distinct optical properties.
Merges abutment and inner crown into one body via sintering, eliminating casting errors and shrinkage.
Gallium oxide coatings prevent biofilm formation and reduce infection risk in dental implants.
An internal cavity in the abutment secures the coping vertically, resolving space constraints and improving implantation flexibility.
A one-piece surgical holder integrates holding and fastening sections for secure container attachment.
A prosthetic element uses a structurally continuous trabecular part to anchor bone tissue.
Twin screw extrusion blends PEEK and Combeite glass using shear stress, resolving reaction issues that inhibit standard processing equipment.
Virtual models determine precise dental implant spatial disposition, resolving traditional impression inaccuracies in physical model manufacturing.
A dynamic dental crown employs a ball-and-socket pivot and sealing membrane to distribute mastication pressure, reducing gum soreness during chewing.
Vibration liquefies thermoplastic material in a dental implant cavity, pressing it into bone tissue to eliminate waiting time for regrowth.
Reference posts on a support bar interface with an oversize cutout in the denture base to resolve CAD/CAM positioning precision trade-offs.
A dental implant upper surface features a scannable code that provides precise angular orientation and size data to intra-oral scanners.
A hybrid tracking guidance arrangement uses a fiducial marker and detector to determine spatial relations for surgical instrument positioning.
A movable imaging unit tracks surgical tools by maintaining constant contact with patient-mounted markers, resolving intraoral visibility constraints.
Segmented vials and caps maintain sterility while a wedge displaces retention members for easy screw access.
A segmented alveolar membrane uses triangular fixing digits inserted into osseous tissue to resolve fixation stability issues during bone augmentation.
Segmented stopper design enables adjustable depth control on standard dental drills, eliminating the need for multiple specialized tools.
A modular dental implant cleaning system combines electrical contacts with fluid distribution elements for targeted in situ treatment.
Radial shoulders on the abutment stem engage implant stops to block reverse movement, eliminating adhesive displacement during precise positioning.
A dental retention matrix uses conical clamping arms to secure a removable prosthesis.
An osteoclast inhibitor coating on a dental implant suppresses early bone resorption to maintain initial stability and enable early loading.