IP Library › Granted Patent US 10,758,251
Granted Patent B2
US 10,758,251 · App. 15/838,565 · Granted Sep 1, 2020

Adjustable device for identifying a target location for a tibial tunnel and related method thereof

Inventor: Mark D. Miller (Crozet, VA)
Assignee: University of Virginia Patent Foundation
A61B17/1714A61B17/1764A61B17/0401A61B17/320016A61B2017/00407
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Quick Facts
Patent No.
US 10,758,251
App. No.
15/838,565
Granted
Sep 1, 2020
Kind
B2
Abstract

An adjustable device for identifying the target location for, and placement of, a bone tunnel wherein the device is capable of measuring a total distance across a region of an anatomic structure. The device may be further configured to engage the anatomic structure at a target distance across the anatomic structure to identify the location for bone tunnel placement. A method for identifying the target location for, and placement of, a bone tunnel such that the method is capable of measuring a total distance across a region of an anatomic structure and capable of engaging the anatomic structure at a target distance across the anatomic structure.

Claims (33)

1. An adjustable device for identifying a target location for a bone tunnel of a subject, said device comprising:

a first arm comprising an anterior portion and a posterior portion opposite said anterior portion, wherein said posterior portion is configured to engage a reference structure;

a targeting arm movably disposed on said first arm; wherein said targeting arm is configured to extend toward and engage across a region of an anatomic structure;

a second arm comprising a superior portion and an inferior portion opposite said superior portion, wherein said superior portion of said second arm is in communication with said anterior portion of said first arm; and

a measurement member slidably disposed on said second arm, wherein said measurement member and said second arm are configured to move relative to each other, and wherein said measurement member is configured to extend toward and engage a surface of the anatomic structure.

2. The device in claim 1 , further comprising a targeting arm adjustment means disposed on said device, wherein said targeting arm adjustment means is configured to move said targeting arm relative to said first arm.

3. The device in claim 1 , wherein said targeting arm is further configured to slide along said first arm.

4. The device in claim 1 , wherein said targeting arm is configured to pivot about a fixed point on said first arm.

5. The device in claim 1 , wherein said targeting arm is further configured to withdraw and lay flush against a surface of said first arm.

6. The device in claim 1 , further comprising a guiding device disposed on said inferior portion of said second arm, wherein said guiding device is configured to receive a guide pin.

7. The device in claim 6 , wherein said guiding device further comprises a guiding device adjustment means disposed on said guiding device, wherein said guiding device adjustment means is configured to adjust the angle of said guiding device relative to said second arm.

8. The device in claim 7 , wherein said guiding device is further configured to rotate about a fixed point on said inferior portion of said second arm.

9. The device in claim 6 , wherein said guide pin has a diameter of 3/32 of an inch.

10. The device in claim 1 , wherein said second arm is convexly curved.

11. The device in claim 1 , wherein said inferior portion of said second arm is further configured to engage a surface of the anatomic structure.

12. The device in claim 1 , wherein the bone tunnel is a tibial bone tunnel.

13. The device in claim 1 , wherein said first arm further comprises a plurality of graduated markings indicating units of length.

14. The device in claim 1 , wherein said measurement member further comprises a plurality of graduated markings indicating units of length.

15. The device in claim 1 , wherein said posterior portion of said first arm terminates in a curved hook, wherein said curved hook is configured to engage said reference structure.

16. The device in claim 1 , wherein the reference structure is a posterior cruciate ligament.

17. The device in claim 1 , wherein the reference structure is a posterior end of a tibial plateau.

18. The device in claim 1 , wherein the region of the anatomic structure is a tibial plateau.

19. The device in claim 1 , wherein said targeting arm is further configured to engage the anatomic structure at a target distance across the anatomic structure, said target distance corresponding to a predetermined percentage across the total distance across the anatomic structure, wherein said target distance is calculated in reference to said predetermined percentage and said total distance across the anatomic structure.

20. The device in claim 1 , wherein said second arm further comprises an outer portion of said second arm, an inner portion of said second arm in communication with at least one surface of said outer portion, and a second arm adjusting means disposed on said second arm, wherein said second arm adjusting means is configured to alter a length of said second arm by slidably moving said inner portion of said second arm and said outer portion of said second arm relative to each other.

21. The device in claim 20 , further comprising a means to separate said outer portion of said second arm and said inner portion of said second arm, wherein said outer portion of said second arm is offset from said inner portion of said second arm, and wherein said means to separate said outer portion of said second arm and said inner portion of said second arm is configured to allow said outer portion of said second arm and said inner portion of said second arm to move relative to each other.

22. The device in claim 20 , wherein said outer portion of said second arm completely envelops said inner portion of said second arm.

23. The device in claim 20 , wherein said outer portion of said second arm is disposed superiorly to said inner portion of said second arm.

24. The device in claim 20 , wherein said outer portion of said second arm is disposed inferiorly to said inner portion of said second arm.

25. The device in claim 1 , wherein said second arm further comprises a slot, wherein said slot is configured to accommodate said measurement member.

26. The device in claim 25 , wherein said measurement member is further configured to slidably move within said slot.

27. The device in claim 25 , wherein said second arm further comprises a measurement member adjustment means disposed on said second arm, wherein said measurement member adjustment means is configured to slidably adjust said measurement member within said slot.

28. The device in claim 25 , wherein said measurement member further comprises a measurement member adjustment means disposed on said measurement member, wherein said measurement member adjustment means is configured to slidably adjust said measurement member within said slot.

29. The device in claim 1 , wherein said adjustable device is composed of a material selected from the group consisting of surgical-grade stainless steel, titanium, aluminum, or plastic.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2020
From: MILLER, MARK D.
To: UNIVERSITY OF VIRGINIA
Reel/Frame 052387/0282 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2020
From: UNIVERSITY OF VIRGINIA
To: UNIVERSITY OF VIRGINIA PATENT FOUNDATION
Reel/Frame 052387/0302 →
Continuity (2)
Provisional Application 62437092 · Dec 21, 2016
Related Publication 20180168665A1 · Jun 21, 2018
Cited By (8)
US 12,274,454 US 12,285,181 US 12,364,487 US 12,433,583 US 12,533,160 US 12,582,423 US 12,594,097 US 12,740,810