IP Library Granted Patent US 9,492,179
Granted Patent B2
US 9,492,179 · App. 13/669,340 · Granted Nov 15, 2016

Systems and methods for guiding cuts to a femur and tibia during a knee arthroplasty

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Quick Facts
Patent No.
US 9,492,179
App. No.
13/669,340
Granted
Nov 15, 2016
Kind
B2
Abstract

An assembly for guiding resection of a femur and tibia of a knee joint in preparation for installing a femoral and tibial knee components. For example, the assembly can include tibial and femoral IM rods to which are connected through a tensioning bolt that allows controlled adjustment of the distraction of the tibia and femur during cut positioning in a range of flexion angles. Also, the assembly is usable with relatively small, noninvasive approaches to the knee joint by way of relatively narrow, low profile components that attach to tibial and femoral IM rods. Further, the assembly includes several quick-release components to allow fast assembly and disassembly in a surgical setting. Each of these aspects, along with the ability of the assembly to accurately guide initial reference cuts to the tibia and femur, promotes an improved outcome for the patient.

Claims (36)

1. An assembly for guiding resection of at least one of a femur and a tibia of a knee joint, the assembly comprising:

a femoral member configured to removably couple with and extend at least partially into the femur, the femoral member defining an aperture that extends into the femoral member;

a tibial member configured to be removably fixed to the tibia, wherein the tibial member comprises a proximal portion and a distal portion, and wherein a recess is defined at the proximal portion of the tibial member; and

a tensioning assembly configured to extend between the femoral member and the tibial member such that a first portion of the tensioning assembly extends into the aperture, such that a second portion of the tensioning assembly is received in the recess, and such that the tensioning assembly is configured to be tightened and loosened to adjust relative positioning of the femoral member and the tibial member with respect to each other.

2. The assembly of claim 1 , wherein the tensioning assembly comprises a flexion kit comprising:

a threaded barrel comprising a process that is configured to extend into the aperture to rotatably couple the threaded barrel to the femoral member; and

a flexion bolt that is configured to be threadingly engaged with the threaded barrel such that the flexion bolt is interposed between the femoral member and the tibial member and such that rotation of the flexion bolt within the threaded barrel adjusts the relative positioning of the femoral member and the tibial member with respect to each other.

3. The assembly of claim 1 , wherein the tensioning assembly comprises an extension bolt comprising a first portion that is configured to be threadingly received in the aperture, and wherein the bolt further comprises a rounded end that is configured to couple with the tibial member such that the extension bolt is interposed between the femoral member and the tibial member so that rotation of the extension bolt within the aperture adjusts the relative positioning of the femoral member and the tibial member with respect to each other, and such that the rounded end allows for axial rotation between the femoral member and the tibial member.

4. The assembly of claim 1 , wherein the tensioning assembly comprises a ratcheting device.

5. An assembly for guiding resection of at least one of a femur and a tibia of a knee joint, the assembly comprising:

a femoral member configured to be at least partially inserted into the femur, the femoral member defining a first aperture;

a tibial member structured for fixation to the tibia; and

a tensioning assembly comprising at least one of:

a flexion kit comprising:

a threaded barrel comprising a process that is configured to extend into the first aperture; and

a flexion bolt that is configured to be threadingly engaged with the threaded barrel such that the flexion bolt is interposed between the femoral member and the tibial member and such that rotation of the flexion bolt within the threaded barrel adjusts a relative positioning of the femoral member and the tibial member with respect to each other; and

an extension bolt comprising a first portion that is configured to be threadingly received in the first aperture, wherein the bolt further comprises a rounded end that is configured to couple with the tibial member such that the extension bolt is interposed between the femoral member and the tibial member, such that rotation of the extension bolt within the first aperture adjusts the relative positioning of the femoral member and the tibial member with respect to each other, and such that the rounded end allows for axial rotation between the femoral member and the tibial member.

6. The assembly of claim 5 , wherein the flexion kit further comprises a bushing having a first part that is configured to couple with the tibial member and a second part is configured to receive a tip of the flexion bolt such that the flexion bolt is able to rotate with respect to the tibial member as the relative positioning is adjusted.

7. The assembly of claim 6 , wherein the tibial member defines a second aperture that is configured to receive and rotatably couple with the first part of the bushing.

8. The assembly of claim 5 , wherein the threaded barrel is configured to rotate axially with respect to the femoral member when the flexion bolt is interposed between the femoral member and the tibial member.

9. The assembly of claim 5 , wherein the tibial member further comprises a resection block guide that is configured to extend anteriorly from the knee joint when the tibial member is fixed to the tibia.

10. The assembly of claim 9 , wherein the resection block guide further comprises multiple notches that provide reference points for a resection block configured to attach to the guide.

11. The assembly of claim 5 , wherein the rounded end of the extension bolt comprises a convex articulation surface.

12. The assembly of claim 5 , wherein the tibial member comprises a spacer that is configured to create a gap between a proximal surface of the tibial member and a flange extending around a portion of the rounded end of the extension bolt.

13. The assembly of claim 5 , wherein the tensioning assembly comprises the extension bolt.

14. The assembly of claim 13 , wherein the rounded end comprises a substantially hemispherically shaped surface that is configured to be received by a recess in the tibial member, and wherein the tibial member further comprises a resection block guide that is configured to extend anteriorly from the knee joint when the tibial member is fixed to the tibia.

15. The assembly of claim 5 , wherein the tensioning assembly comprises the flexion kit.

16. The assembly of claim 15 , wherein the flexion kit further comprises a bushing having a first part that is configured to couple with the tibial member and a second part is configured to receive a tip of the flexion bolt such that the flexion bolt is able to rotate with respect to the tibial member as the relative positioning is adjusted, wherein the threaded barrel is configured to rotate axially with respect to the femoral member when the flexion bolt is interposed between the femoral member and the tibial member, and wherein the tibial member further comprises a resection block guide that is configured to extend anteriorly from the knee joint when the tibial member is fixed to the tibia.

17. The assembly of claim 5 , wherein the tensioning assembly comprises both the flexion kit and the extension bolt.

18. An assembly for guiding resection of at least one of a femur and a tibia of a knee joint, the assembly comprising:

a femoral member configured to be at least partially inserted into the femur;

a tibial member structured for fixation to the tibia:

a threaded barrel configured to couple to the femoral member such that the threaded barrel is configured to be disposed without the femur when the femoral member is inserted into the femur as well as to be rotatable with respect to the femoral member; and

a flexion bolt that is configured to be threadingly engaged with the threaded barrel such that the flexion bolt is interposed between the femoral member and the tibial member and such that rotation of the flexion bolt within the threaded barrel adjusts a relative positioning of the femoral member and the tibial member with respect to each other.

19. The assembly of claim 18 , wherein the femoral member comprises a femoral intramedullary rod.

20. The assembly of claim 18 , further comprises a bushing having a first part that is configured to couple with the tibial member and a second part is configured to receive a tip of the flexion bolt such that the flexion bolt is able to rotate with respect to the tibial member as the relative positioning is adjusted, wherein the threaded barrel is configured to rotate axially with respect to the femoral member when the flexion bolt is interposed between the femoral member and the tibial member, and wherein the tibial member further comprises a resection block guide that is configured to extend anteriorly from the knee joint when the tibial member is fixed to the tibia.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 29, 2020
From: RASMUSSEN, G. LYNN
To: RASMUSSEN INSTRUMENTS, LLC
Reel/Frame 053920/0052 →
RELEASE OF SECURITY INTEREST Recorded Nov 8, 2017
From: OTSUKA MEDICAL DEVICES CO., LTD.
To: MICROPORT ORTHOPEDICS HOLDINGS INC.
Reel/Frame 044772/0708 →
PATENT SECURITY AGREEMENT SUPPLEMENT Recorded Jan 10, 2014
From: MICROPORT ORTHOPEDICS HOLDINGS INC.
To: OTSUKA MEDICAL DEVICES CO., LTD.
Reel/Frame 031968/0377 →