IP Library › Granted Patent US 8,435,246
Granted Patent B2
US 8,435,246 · App. 12/616,747 · Granted May 7, 2013

Knee arthroplasty apparatus and method

Inventors: Michael G. Fisher (Folsom, CA); Anthony K. Hedley (Paradise Valley, CA); Russell T. Nevins (Las Vegas, NV); Kevin M. Cordes (Rancho Cordova, CA)
Assignee: Synvasive Technology, Inc.
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Quick Facts
Patent No.
US 8,435,246
App. No.
12/616,747
Granted
May 7, 2013
Kind
B2
Abstract

A method for positioning a bone cutting guide on a tibia may involve coupling a cutting guide positioning apparatus with a tibia, adjusting the positioning apparatus in a varus/valgus orientation, adjusting the positioning apparatus in an anterior/posterior orientation, adjusting the positioning apparatus up or down to select a tibial bone resection level, and contacting a cutting guide with the tibia, using the adjusted positioning apparatus.

Claims (38)

1. A device for positioning a bone cut on a tibia, the device comprising:

a tibial attachment member;

a coupler moveably attached to the tibial attachment member;

a rotationally moveable arm rotationally attached to the coupler;

a swing arm coupled with the rotationally moveable arm via an axle such that a free end of the swing arm is configured to swing from an anterior position, in which the free end faces an anterior surface of the tibia, to a side position, in which the free end faces a side of the tibia;

a light emitting member coupled with the swing arm at or near the free end for emitting light along the tibia, the light emitting member emitting light in a linear or planar configuration;

a varus/valgus adjustment member for adjusting the rotationally moveable arm to direct the emitted light approximately along a midline of the anterior surface of the tibia;

an anterior/posterior adjustment member for adjusting the coupler in an anterior/posterior orientation relative to the tibial attachment member to direct the emitted light approximately along a midline of the side of the tibia; and

a tibial bone resection level adjustment member for selecting a level for resecting the tibia.

2. A device as in claim 1 , wherein the tibial attachment member comprises:

at least one foot pad for contacting an articular surface of an uncut tibia; and

at least one hole for passing the attachment member over a reference pin attached to the tibia.

3. A device as in claim 2 , wherein tibial attachment member comprises:

a medial articular surface footpad having a first hole; and

a lateral articular surface footpad having a second hole.

4. A device as in claim 1 , wherein the side of the tibia is the medial side, and wherein the swing arm is configured to rotate between a first position in which the light shines along the anterior surface of the tibia and a second position in which the light shines along the medial side of the tibia.

5. A device as in claim 1 , further comprising a tibial cutting guide holder, wherein adjustments of the adjustment members adjust a position of the cutting guide holder.

6. A device as in claim 1 , further comprising a stylus coupled with the tibial attachment member and configured to extend from an upper surface of the tibia to a location anterior to and below the upper surface, wherein the tibial bone resection level adjustment member is adjustable to contact the tibial cutting guide with the stylus at the location.

7. A device as in claim 1 , wherein the light emitting member emits light in a linear or planar configuration selected from a group of configurations including:

a beam;

a plane; and

a fan.

8. A system for positioning a tibial cutting guide on a tibia, the system comprising:

a tibial cutting guide; and

a cutting guide positioning device comprising: a tibial attachment member;

a coupler moveably attached to the tibial attachment member;

a rotationally moveable arm rotationally attached to the coupler;

a swing arm coupled with the rotationally moveable arm via an axle such that a free end of the swing arm is configured to swing from an anterior position, in which the free end faces an anterior surface of the tibia, to a side position, in which the free end faces a side of the tibia;

a light emitting member coupled with the swing arm at or near the free end for emitting light along the tibia, the light emitting member emitting light in a linear or planar configuration;

a varus/valgus adjustment member for adjusting the rotationally moveable arm to direct the emitted light approximately along a midline of the anterior surface of the tibia;

an anterior/posterior adjustment member for adjusting the coupler in an anterior/posterior orientation relative to the tibial attachment member to direct the emitted light approximately along a midline of the side of the tibia; and

a tibial bone resection level adjustment member for selecting a level for resecting the tibia; and

a tibial cutting guide holder, wherein adjustments of the adjustment members adjust a position of the cutting guide holder.

9. A system as in claim 8 , wherein the tibial cutting guide holder is moveable relative to the rotationally moveable arm to move the tibial cutting guide into contact with the tibia.

10. A system as in claim 8 , further comprising at least one reference pin for removably attaching the tibial attachment member of the guide positioning device to the tibia.

11. A system as in claim 8 , further comprising at least one cutting guide fastener for attaching the tibial cutting guide to the tibia.

12. A system as in claim 8 , wherein the side of the tibia is the medial side, and wherein the swing arm is configured to rotate between a first position in which the light shines along the anterior surface of the tibia and a second position in which the light shines along the medial side of the tibia.

13. A system as in claim 8 , further comprising a stylus coupled with the tibial attachment member and configured to extend from an upper surface of the tibia to a location anterior to and below the upper surface, wherein the tibial bone resection level adjustment member is adjustable to contact the tibial cutting guide with the stylus at the location.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2012
From: CORDES, KEVIN M.
To: SYNVASIVE TECHNOLOGY, INC.
Reel/Frame 027792/0752 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 11, 2009
From: FISHER, MICHAEL G.; HEDLEY, ANTHONY K.; NEVINS, RUSSELL T.
To: SYNVASIVE TECHNOLOGY, INC.
Reel/Frame 023504/0475 →
Continuity (2)
Continuation PCTUS2009063015 · Nov 2, 2009
Related Publication 20110106091A1 · May 5, 2011