IP Library Granted Patent US 12,096,948
Granted Patent B2
US 12,096,948 · App. 17/398,182 · Granted Sep 24, 2024

Ankle replacement system and method

Inventors: Paul Stemniski (Arlington, TN); David Reynolds (Fairport, NY); Shawn McGinley (Arlington, TN); Ramon Luna (Arlington, TN)
Assignee: WRIGHT MEDICAL TECHNOLOGY, INC.
A61B17/1775A61B17/15A61B17/1682A61B17/1703A61B17/1739A61B17/846A61B17/88A61B90/39A61F2/4202A61F2/4606A61F2/4637A61F2/4684A61B2017/564A61B17/90A61B2090/3966A61F2002/30387A61F2002/30878A61F2002/4205
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Quick Facts
Patent No.
US 12,096,948
App. No.
17/398,182
Granted
Sep 24, 2024
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 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 (21)

1. A surgical instrument system comprising:

a coronal sizing and drill guide comprising a dovetail extension; and

a surgical instrument assembly including an elongate body extending between a distal end and a proximal end, a first rail and a second rail extending from the distal end of the elongate body to form a cavity sized and configured to receive the dovetail extension wherein the first rail and the second rail each have angled inner faces such that the cavity narrows along its length;

a recess defined within the distal end of the elongate body and a through hole communicating between a first side to a second side of the distal end of the elongate body;

a locking wedge located at least partially within the recess so as to have at least one spring in contact with the locking wedge, the at least one spring biasing the locking wedge toward the proximal end of the elongate body; and

a locking bolt disposed in the through hole such that rotation of the locking bolt in a first direction urges the locking wedge and dovetail extension in a distal direction.

2. The surgical instrument system of claim 1 , wherein the locking bolt includes a pair of spaced apart shoulders along its length and the locking wedge includes a pair of angled surfaces, and wherein each of the pair of spaced apart shoulders is configured to contact one of the pair of angled surfaces such that rotation of the locking bolt urges the locking wedge toward the distal end.

3. The surgical instrument system of claim 1 , wherein a pin extends across the recess so as to be disposed in a slot of the locking wedge thus retaining the locking wedge within the recess.

4. A surgical instrument assembly comprising:

a body extending between a distal end and a proximal end with a recess located in the distal end and a passageway communicating between a first side and a second side of the distal end;

a biased wedge, a portion of which being disposed within the recess;

a spring located within a channel formed in the wedge for biasing the wedge toward the proximal end of the body; and

a bolt disposed in the through hole such that rotation of the bolt in the through hole urges the wedge in a distal direction.

5. The surgical instrument assembly of claim 4 , further comprising a pin projecting into the recess, so as to be in contact with a first end of the spring with a second end of the spring being in contact with the wedge.

6. The surgical instrument assembly of claim 5 , wherein the pin projects across the recess so as to be disposed in a vertical slot of the wedge such that the wedge is retained within the recess.

7. The surgical instrument assembly of claim 4 , wherein the bolt includes a pair of spaced apart shoulders and the wedge includes a pair of angled surfaces, and wherein each of the pair of spaced apart shoulders is configured to contact one of the pair of angled surfaces such that rotation of the bolt urges the wedge toward the distal end.

8. The surgical instrument assembly of claim 4 , further comprising a first oblong section arranged transverse to a longitudinal axis of the body, the first oblong section defining a plurality of interconnected holes.

9. A surgical instrument comprising:

an body extending from a proximal end to a distal end including a first transverse oblong section including a plurality of interconnected holes, a second transverse oblong section spaced from the first oblong section and including a plurality of interconnected holes, and a passageway communicating between a first side and a second side of the distal end, sized to receive a bolt, with a pin hole transverse to and intersecting the passageway, the pin hole configured to receive a pin so as to secure the bolt in position; and

a first rail and a second rail projecting from the distal end of the body, such that the first rail, the second rail, and the distal end of the body form a cavity arranged so as to receive a dovetail extension of a coronal sizing and drill guide.

10. The conversion instrument of claim 9 , wherein the first rail and the second rail each have angled inner faces that are angled such that the cavity narrows along the body.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2022
From: STEMNISKI, PAUL; REYNOLDS, DAVID; MCGINLEY, SHAWN; LUNA, RAMON
To: WRIGHT MEDICAL TECHNOLOGY, INC.
Reel/Frame 058606/0723 →