Merging separate instruments into one unit eliminates complex alignment procedures while ensuring precise bone level determination.
A surgical drill integrates side and lower bone cutting blades to form implant holes in a single operation.
Segmented freezing and preliminary action create uniform columnar pores in tissue scaffolds, resolving density variation and improving mechanical strength.
A compressible dental attachment retention member secures appliances via frictional ball engagement.
Varying thread core diameters increases interface friction, allowing uniform torque application while reducing tensile stress on thinner male components.
A casting jig with wells and sockets shapes anatomical healing caps.
A computer-implemented method digitally shortens dental bridge caps by calculating intersection points to define precise cutting surfaces.
A ceramic dental implant uses a separate internally threaded insert to provide secure screw retention without machining threads directly into the brittle ceramic body.
Axial slits in the hollow shaft enable radial expansion to reduce fitting tolerances, eliminating rescanning needs.
Segmented arch bars with movable transverse arms distribute tension across multiple teeth, reducing installation time and clinician puncture risks.
Reference markers on a denture bridge external shape data and CT scans to resolve image matching difficulties in edentulous patients.
Adjustable lifter and gripper-shaped support accommodate varying implant dimensions while preventing contamination during sterile retrieval.
A dual-sleeve guiding device with slits and cooling channels stabilizes the drilling tool during immediate dental implantation.
A biocompatible pellet with a polymer coating provides a scaffold for new bone formation in extraction sites.
Irradiates dental form bodies with 2.7-4.7 μm infrared light to soften the surface layer, repairing machining cracks without deforming the core structure.
Merges separate bone reduction and implant surgical guides into a single integrated structure, reducing surgical time and procedural complexity.
An orthopedic implant integrates internal reservoirs and channels to deliver therapeutic agents directly to the treatment site.
Angled dental interface redirects screw path through sloping shaft geometry, preventing protrusion through aesthetic prosthetic areas.
Dynamic ball-and-swivel assembly corrects implant misalignments to achieve passive fit, reducing mechanical stress and inventory complexity.
A peracid and bis(hydroperoxide) composition stimulates osteoblast growth on implant surfaces to promote rapid bone calcification.
A modular drill guide assembly integrates electromagnetic sensors to track real-time drill orientation during dental implant procedures.
A dental implant anchoring assembly uses cylindrical members and a fastening element to secure the device within a periodontal bone socket.
A custom drill guide uses the final prosthetic to position small-diameter implants precisely.
Pivotable arms with toothed sectors self-center on bone landmarks, eliminating complex CT templates for precise implant placement.
Segmented cap uses elastic fingers to snap onto abutments for stable positioning.
An integrated resilient retaining element deforms elastically to pass through a restriction, securing the screw and eliminating separate support rings.
Chemical bonding extensions on thermoformed aligners enable stable TAD anchorage and simultaneous sectional brace wear.
A dual fixation dental implant system uses clip retention to secure prostheses without screws.
A nickel-free magnet assembly uses a denitrided peripheral seal portion to maintain high magnetic attraction in dental attachments.
A magnetic implant system creates a bacteriostatic environment to prevent bacterial interference while accelerating bone fusion for faster healing.
Intersecting male threads on the screw engage internal implant and external abutment threads to prevent rotation and loosening.
A dental abutment uses leading and trailing indexing elements to guide engagement and provide rotational locking.
A maxillary expander uses segmented palatal bodies to distribute expansion forces without engaging teeth.
Implanted transducer assembly bypasses visible external devices by transmitting processed sound vibrations directly through bone structures.
A dental light curing unit positions setting switches behind a transparent door to prevent material adhesion on key tops.