Tibial support of artificial knee joint
Abstract
A tibial support of an artificial knee joint, comprising a main tibial support body and a tibial support platform, wherein the main tibial support body is wing-shaped, a central axis thereof being vertical to the tibial support platform. A plurality of hollow screw holes is provided at the upper part of the main body. The tibial support platform is located above the main tibial support body. The surface of the tibial support platform is an organic polymer material layer matching a tibial liner. The hollow screw holes in the tibial support are sealed by the polymer material layer. Because a tibial support of an artificial knee joint adopts a high-biocompatibility organic polymer material, physical machining is allowed in an operation, and meanwhile, the surface corrosion of the tibial support is reduced. Hollow screw holes are sealed by means of a polymer material layer, thereby inhibiting joint liquid from entering the holes, and reducing the transportation of particles. Recesses are provided at positions, corresponding to the screw holes, on the polymer surface, thereby aiding in drilling holes and mounting screws in an operation.
Claims
exact text as granted — not AI-modified1 . A tibial support of an artificial knee joint, characterized in that, comprising a tibial support body and a tibial support platform, wherein:
the tibial support body is wing-shaped, wherein a central axis thereof is perpendicular to the tibial support platform, a plurality of hollow screw holes are provided at an upper part of the tibial support body; the tibial support platform is located above the tibial support body, a surface of the tibial support platform is an organic polymer material layer that is cooperated with a tibial liner in shape, and the hollow screw holes in the tibial support are sealed by the polymer material layer.
2 . The tibial support of the artificial knee joint as claimed in claim 1 , characterized in that, positions on an upper surface of the polymer material layer that correspond to the hollow screw holes have recesses.
3 . The tibial support of the artificial knee joint as claimed in claim 1 , characterized in that, the polymer material is polyether-ether-ketone or derivatives thereof.
4 . The tibial support of the artificial knee joint as claimed in claim 1 , characterized in that, the tibial support body is made of a metal material.
5 . The tibial support of the artificial knee joint as claimed in claim 4 , characterized in that, the metallic material is selected from one of titanium, titanium alloy or CoCrMo.
6 . The tibial support of the artificial knee joint as claimed in claim 1 , characterized in that, the tibial support body is made of a polymer organic material.
7 . The tibial support of the artificial knee joint as claimed in claim 6 , characterized in that, the polymer organic material is polyether-ether-ketone or derivatives thereof.
8 . The tibial support of the artificial knee joint as claimed in claim 7 , characterized in that, a microporous biocompatible metal layer is provided between the tibial support body and the tibial support platform.
9 . The tibial support of the artificial knee joint as claimed in claim 8 , characterized in that, the microporous biocompatible metal layer is made of titanium or titanium alloy.
10 . The tibial support of the artificial knee joint as claimed in claim 1 , characterized in that, the number of the hollow screw holes is greater than that of screws installed at the time of actual use.
11 . The tibial support of the artificial knee joint as claimed in claim 2 , characterized in that, the number of the hollow screw holes is greater than that of screws installed at the time of actual use.
12 . The tibial support of the artificial knee joint as claimed in claim 3 , characterized in that, the number of the hollow screw holes is greater than that of screws installed at the time of actual use.
13 . The tibial support of the artificial knee joint as claimed in claim 4 , characterized in that, the number of the hollow screw holes is greater than that of screws installed at the time of actual use.
14 . The tibial support of the artificial knee joint as claimed in claim 5 , characterized in that, the number of the hollow screw holes is greater than that of screws installed at the time of actual use.
15 . The tibial support of the artificial knee joint as claimed in claim 6 , characterized in that, the number of the hollow screw holes is greater than that of screws installed at the time of actual use.
16 . The tibial support of the artificial knee joint as claimed in claim 7 , characterized in that, the number of the hollow screw holes is greater than that of screws installed at the time of actual use.
17 . The tibial support of the artificial knee joint as claimed in claim 8 , characterized in that, the number of the hollow screw holes is greater than that of screws installed at the time of actual use.
18 . The tibial support of the artificial knee joint as claimed in claim 9 , characterized in that, the number of the hollow screw holes is greater than that of screws installed at the time of actual use.Join the waitlist — get patent alerts
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