IP Library Granted Patent US 10,080,573
Granted Patent B2
US 10,080,573 · App. 14/373,185 · Granted Sep 25, 2018

Ankle replacement system and method

Inventors: Shawn McGinley (Arlington, TN); Braham K. Dhillon (Memphis, TN); Ramon Luna (Arlington, TN)
Assignee: Wright Medical Technology, Inc.
A61B17/1682A61B17/15A61B17/1739A61F2/4202A61F2/4606A61F2/4684A61B17/1775A61F2002/4205A61F2002/4687
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Quick Facts
Patent No.
US 10,080,573
App. No.
14/373,185
Granted
Sep 25, 2018
Kind
B2
Abstract

Various surgical devices and methods are disclosed herein. Also disclosed is multi-component prosthesis, which can be used as an ankle prosthesis. One of the disclosed surgical alignment systems includes a guide arm, a ratchet arm frame configured to be coupled slidably to the guide arm, a ratchet arm configured to be coupled to the ratchet arm frame, and a sagittal sizing guide body configured to be coupled to the ratchet arm. The sagittal sizing guide body includes a first radiopaque object disposed at a first position and a second radiopaque object disposed at a second position that is spaced apart from the first position.

Claims (50)

1. A coronal guide system, comprising:

a drill guide comprising a drill guide body configured to be inserted into an adjustment block that is configured to be coupled to a bone, the drill guide body defining at least a first guide hole and a second guide hole, wherein the first and second guide holes are sized and configured to receive a first surgical tool for forming pilot holes in the bone for one or more resectioning cuts;

a cutting guide comprising a cutting guide body configured to be inserted into the adjustment block, the cutting guide body defining a plurality of slots configured to receive a second surgical tool for forming the one or more resectioning cuts, wherein the first guide hole and the second guide hole of the drill guide correspond to edges of the slot defined by cutting guide; and

a patient-specific adapter comprising a plurality of pin guide holes, the pin guide holes configured to align one or more pins to the bone, wherein the one or more pins are configured to interface with one or more holes formed in the drill guide and the cutting guide to couple the drill guide or the cutting guide to the bone.

2. The coronal guide system of claim 1 , wherein the slots are sized and configured to connect the pilot holes drilled in the bone through the drill guide.

3. The coronal guide system of claim 2 , wherein the drill guide comprises a sizing pattern coupled to the drill guide body, the sizing pattern configured to show a size and location of one or more resectioning cuts corresponding to the slots of the cutting guide.

4. The coronal guide system of claim 1 , wherein the drill guide body comprises a dovetail extension configured to be coupled to a dovetail joint of the adjustment block.

5. The coronal guide system of claim 4 , wherein the cutting guide body comprises a dovetail extension configured to be coupled to the dovetail joint of the adjustment block.

6. The coronal guide system of claim 1 , wherein the first and second guide holes comprise a radiopaque material.

7. The coronal guide system of claim 1 , wherein the patient-specific adapter further comprises a body having a pin holder extension and a pin coupled to the pin holder extension, wherein the pin extends parallel to a mechanical axis of the bone.

8. A coronal guide system, comprising:

a drill guide defining at least a first guide hole and a second guide hole, wherein the first and second guide holes are sized and configured to receive a first surgical tool for forming pilot holes in a bone for one or more resectioning cuts;

a cutting guide defining a plurality of slots configured to receive a second surgical tool for forming the one or more resectioning cuts, wherein the first guide hole and the second guide hole of the drill guide correspond to edges of the slot defined by cutting guide; and

a patient-specific adapter comprising a plurality of pin guide holes, the pin guide holes configured to align one or more pins to the bone, wherein the one or more pins are configured to interface with one or more holes formed in the drill guide and the cutting guide to couple the drill guide or the cutting guide to the bone.

9. The coronal guide system of claim 8 , wherein the slots are sized and configured to connect the pilot holes drilled in the bone through the drill guide.

10. The coronal guide system of claim 9 , wherein the drill guide comprises a sizing pattern, the sizing pattern configured to show a size and location of one or more resectioning cuts corresponding to the slots of the cutting guide.

11. The coronal guide system of claim 8 , wherein the drill guide body comprises a dovetail extension configured to be coupled to a dovetail joint of an adjustment block.

12. The coronal guide system of claim 11 , wherein the cutting guide comprises a dovetail extension configured to be coupled to the dovetail joint of the adjustment block.

13. The coronal guide system of claim 8 , wherein the first and second guide holes comprise a radiopaque material.

14. The coronal guide system of claim 8 , wherein the patient-specific adapter further comprises a body having a pin holder extension and a pin coupled to the pin holder extension, wherein the pin extends parallel to a mechanical axis of the bone.

15. A method, comprising:

coupling a patient-specific adapter to a tibia, wherein the patient specific adapter defines a plurality of guide pin holes;

inserting a plurality of guide pins through the plurality of guide pin holes;

coupling the plurality of guide pins to the tibia, wherein the plurality of guide pins are configured to interface with one or more holes formed in a coronal sizing and drill guide and a coronal cutting guide to couple the coronal sizing and drill guide or the coronal cutting guide to the tibia; and

removing the patient-specific adapter from the tibia;

inserting a dovetail extension of the coronal sizing and drill guide into a cavity of a dovetail joint of an adjustment block that is coupled to the tibia, the coronal sizing and drill guide defining at least a first guide hole and a second guide hole, wherein the first and second guide holes are sized and configured to receive a first surgical tool for forming pilot holes in the tibia for one or more resectioning cuts;

securing the dovetail extension within the cavity;

using fluoroscopy to check a size of a radiopaque element of the coronal sizing and drill guide relative to at least the tibia, wherein the radiopaque element has a size and shape that corresponds to a profile of a prosthesis component of a first type having a first size when viewed in an anterior-posterior direction; and

uncoupling the coronal sizing and drill guide from the adjustment block;

inserting a dovetail extension of a coronal cutting guide into the cavity of the dovetail joint of the adjustment block, wherein the coronal cutting guide defines a plurality of slots configured to receive a second surgical tool for forming the one or more resectioning cuts, wherein the first guide hole and the second guide hole of the coronal sizing and drill guide correspond to edges of the slot defined by the coronal cutting guide; and

securing the dovetail extension of the coronal cutting guide within the cavity.

16. The method of claim 15 , wherein the coronal sizing and drill guide is a first coronal sizing and drill guide, the method further comprising:

uncoupling the first coronal sizing and drill guide from the adjustment block;

inserting a dovetail extension of a second coronal sizing and drill guide into the cavity of the dovetail joint of the adjustment block;

securing the dovetail extension of the second coronal sizing and drill guide within the cavity; and

using fluoroscopy to check a size of a radiopaque element of the second coronal sizing and drill guide relative to at least the tibia,

wherein the radiopaque element has a size and shape that corresponds to a profile of the prosthesis component of the first type having a second size when viewed in the anterior-posterior direction.

17. The method of claim 15 , further comprising:

inserting pins into holes defined by the coronal sizing and drill guide to secure the coronal sizing and drill guide to at least the tibia; and

drilling holes in the tibia by inserting a drill into a first drill hole and a second drill hole defined by the coronal sizing and drill guide,

wherein the first and second drill holes are positioned such that they intersect the radiopaque element at two different locations.

18. The method of claim 15 , further comprising:

inserting a mating extension of a guide arm into a slot defined by the coronal sizing and drill guide to couple the guide arm to the coronal sizing and drill guide;

inserting an end of the guide arm into an opening defined by a ratchet arm frame, the ratchet arm frame coupled to a ratchet arm that extends in a first longitudinal direction that is different from a direction in which the guide arm extends along its length; and

inserting the ratchet arm into a channel defined by a sagittal sizing guide body to couple the sagittal sizing guide body to the ratchet arm,

wherein the sagittal sizing guide body includes a first radiopaque object disposed at a first position and a second radiopaque object disposed at a second position that is spaced apart from the first position.

19. The method of claim 18 , wherein the first radiopaque object includes a pin disposed in a first hole defined by the sagittal sizing guide body, the pin having a length that corresponds to a length of the prosthesis component of the first type, and wherein the second radiopaque object has a profile that corresponds to a profile of a prosthesis component of a second type.

20. The method of claim 15 , further comprising:

inserting pins into holes defined by the coronal cutting guide to secure the coronal cutting guide to at least the tibia; and

cutting the resectioning section in the tibia by inserting a bone saw into the slots defined by the coronal cutting guide.

Assignments (2)
RELEASE OF SECURITY INTEREST Recorded Nov 19, 2020
From: MIDCAP FUNDING IV TRUST
To: WRIGHT MEDICAL GROUP N.V.; WRIGHT MEDICAL GROUP, INC.; BIOMIMETIC THERAPEUTICS CANADA, INC.; BIOMIMETIC THERAPEUTICS, LLC; BIOMIMETIC THERAPEUTICS USA, INC.; INBONE TECHNOLOGIES, INC.; ORTHOHELIX SURGICAL DESIGNS, INC.; ORTHOPRO, L.L.C.; SOLANA SURGICAL, LLC; TORNIER US HOLDINGS, INC.; TORNIER, INC.; TROOPER HOLDINGS INC.; WHITE BOX ORTHOPEDICS, LLC; WRIGHT MEDICAL CAPITAL, INC.; WRIGHT MEDICAL TECHNOLOGY, INC.; WRIGHT MEDICAL GROUP INTELLECTUAL PROPERTY, INC.
Reel/Frame 054480/0001 →
SECURITY INTEREST Recorded Jan 5, 2017
From: WRIGHT MEDICAL TECHNOLOGY, INC.
To: MIDCAP FINANCIAL TRUST, AS AGENT
Reel/Frame 041257/0126 →
Continuity (6)
Continuation PCTUS2014027448 · Mar 14, 2014
Continuation In Part 14100799 · Dec 9, 2013
Provisional Application 61782507 · Mar 14, 2013
Provisional Application 61846831 · Jul 16, 2013
Provisional Application 61746393 · Dec 27, 2012
Related Publication 20150305753A1 · Oct 29, 2015
Cited By (1)
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