A pre-contoured buttress plate mimics hip socket curvature to stabilize posterior wall fractures without intra-operative bending.
Recessed screw housings expand the exit section to increase angular divarication range and prevent screw breakage during epiphysiodesis.
Adjustable implant alters long bone morphology via selective compression, avoiding invasive osteotomy cutting.
Segmented titanium mesh minimizes gap distances between comminuted fracture fragments, reducing the need for secondary surgeries.
A bone manipulator system enables precise alignment of fractured bones using a fastener-arm and foot-arm mechanism.
Directional apertures and tapered extensions reduce stress concentrations, resolving the rigidity-healing time trade-off in fractured bone repair.
Contoured tabs on a volar distal radius plate provide subchondral support for ulnar fragments while minimizing soft tissue irritation.
Frustoconical annuli enable adjustable screw orientation during insertion, then lock securely to stabilize fractures.
Segmented locking mechanism prevents vertical and lateral movement of bone fixation elements, resolving gaps between heads and plates.
An elongate slippery hole guides a locking slider to adjust screw pressure distance, resolving fixed mounting limitations.
Depressions overlapping variable-angle through holes distribute bending loads evenly, reducing stress peaks and preventing breakage in recess regions.
A removable adjustment piece slides within a triangular recess to enable precise transverse positioning of an osteosynthesis plate.
Oblique hole axis with right-angle surface countersinks screws without pilot holes.
Directional apertures and tapered extensions distribute physiological loads across the implant, reducing stress shielding and accelerating bone healing.
A biphasic bone plate features a straight slot with an undercut feature to limit opening during longitudinal bending.
A bone plate features a contoured triangular head and elongated shaft holes for variable angle screw insertion.
Integrated fixation tabs on a PEEK cranial implant eliminate pre-plating steps, reducing surgery time and avoiding imaging artifacts.