IP Library Granted Patent US 9,028,555
Granted Patent B2
US 9,028,555 · App. 13/992,861 · Granted May 12, 2015

Artificial knee joint

Inventor: Masahiko Hashida (Osaka, JP)
Assignee: Kyocera Medical Corporation
A61F2/3836A61F2/3868A61F2/3886
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Quick Facts
Patent No.
US 9,028,555
App. No.
13/992,861
Granted
May 12, 2015
Kind
B2
Abstract

An artificial knee joint comprising a femoral component and a tibial plate is provided. The femoral component includes a medial condyle, a lateral condyle, a first sliding surface for coupling the medial and lateral condyles, while leaving an opening therebetween, and a second sliding surface above the first sliding surface. The tibial plate includes a medial fossa, a lateral fossa, a post insertable into the opening, a third sliding surface which the first sliding surface contacts at a posterior surface of the post, and a fourth sliding surface which the second sliding surface contacts behind the post. The artificial knee joint is configured to move in a first sliding state in which the first sliding surface is in contact with the third sliding surface, or a second sliding state in which the second sliding surface is in contact with the fourth sliding surface, according to a flexion angle.

Claims (32)

1. An artificial knee joint, comprising:

a femoral component configured to be fixed to a distal part of a femur;

a tibial tray configured to be fixed to a proximal part of a tibia; and

a tibial plate engaged on the tibial tray in such a manner that the femoral component is movable relative to the tibial plate so as to change a flexion angle between the femoral component and the tibial plate,

the femoral component comprising:

a medial condyle;

a lateral condyle;

a first sliding surface coupling a posterior end of the medial condyle and a posterior end of the lateral condyle while leaving an opening between the medial condyle and the lateral condyle; and

a second sliding surface extending superiorly from the first sliding surface in such a manner that the second sliding surface is positioned directly above the first sliding surface when the flexion angle is 0°, and

the tibial plate comprising:

a medial fossa configured to accept the medial condyle;

a lateral fossa configured to accept the lateral condyle;

a post protruding superiorly from between the media fossa and the lateral fossa, and configured to be inserted into the opening;

a third sliding surface formed at a posterior surface of the post, the first sliding surface being configured to rotatably and slidably contact the third sliding surface; and

a fourth sliding surface formed posterior to the post, the second sliding surface being configured to rotatably and slidably contact the fourth sliding surface,

the first sliding surface and the fourth sliding surface being convex curved surfaces,

the fourth sliding surface being positioned posterior to the third sliding surface,

wherein, according to the flexion angle, the femoral component and the tibial plate are configured to move in a first sliding state in which the first sliding surface and the third sliding surface are in contact with each other, or a second sliding state in which the second sliding surface and the fourth sliding surface are in contact with each other.

2. The artificial knee joint according to claim 1 , wherein the femoral component and the tibial plate are configured such that the flexion angle at which the femoral component and the tibial plate transition from the first sliding state to the second sliding state is in a range of 75° to 155°.

3. The artificial knee joint according to claim 1 , wherein the second sliding surface is a concave curved surface.

4. The artificial knee joint according to claim 1 , wherein the second sliding surface is a spherical concave curved surface, and

wherein the fourth sliding surface is a spherical convex curved surface.

5. The artificial knee joint according to claim 1 , wherein the third sliding surface is a concave curved surface.

6. The artificial knee joint according to claim 1 , wherein the tibial plate is rotatably engaged on the tibial tray.

7. The artificial knee joint according to claim 1 , wherein the flexion angle is between 45° and 150° in the first sliding state, and the flexion angle is between 150° and 180° in the second sliding state.

8. The artificial knee joint according to claim 1 , wherein the medial condyle is not in contact with the medial fossa and the lateral condyle is not in contact with the lateral fossa in the second sliding state.

9. The artificial knee joint according to claim 1 , wherein the flexion angle at which an inferior end of the first sliding surface is positioned under a superior end of the post is 30°.

10. The artificial knee joint according to claim 1 , wherein the flexion angle at which an inferior end of the first convex curved surface is positioned under a superior end of the post is 0°.

11. The artificial knee joint according to claim 1 , wherein the fourth sliding surface is disposed between the medial fossa and the lateral fossa.

12. The artificial knee joint according to claim 1 , wherein the second sliding surface is continuous with the first sliding surface.

13. The artificial knee joint according to claim 1 , wherein the first sliding surface and the second sliding surface are positioned directly above the opening.

14. The artificial knee joint according to claim 1 , wherein a superior end of the second sliding surface is positioned superiorly beyond a superior end of the medial condyle and a superior end of the lateral condyle.

Assignments (4)
NUNC PRO TUNC ASSIGNMENT Recorded Jun 15, 2026
From: KYOCERA CORPORATION
To: KYOCERA MEDICAL CORPORATION
Reel/Frame 074947/0956 →
CHANGE OF ADDRESS Recorded Jun 15, 2026
From: KYOCERA CORPORATION
To: KYOCERA CORPORATION
Reel/Frame 075981/0882 →
MERGER Recorded Dec 29, 2017
From: KYOCERA MEDICAL CORPORATION
To: KYOCERA CORPORATION
Reel/Frame 044504/0082 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2013
From: HASHIDA, MASAHIKO
To: KYOCERA MEDICAL CORPORATION
Reel/Frame 030579/0803 →
Priority Claims (1)
JP 2010-275553 · Dec 10, 2010 · national
Continuity (1)
Related Publication 20140200673A1 · Jul 17, 2014