IP Library Granted Patent US 10,206,695
Granted Patent B2
US 10,206,695 · App. 14/798,809 · Granted Feb 19, 2019

Femoral acetabular impingement guide

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Quick Facts
Patent No.
US 10,206,695
App. No.
14/798,809
Granted
Feb 19, 2019
Kind
B2
Abstract

An orthopedic device for correcting a femoral bone abnormality includes a patient-specific three-dimensional shell and a patient-specific guiding feature. The shell has an outer surface and an inner bone engagement surface customized in a pre-operating planning stage by computer imaging to closely mate and conform to and substantially cover a femoral head of a patient in only one position. The guiding feature is pre-operatively planned relative to the shell such that when the shell is fitted over the femoral head, the guiding feature can guide a removal tool for removing an abnormality portion of the proximal femur of the patient.

Claims (27)

1. An orthopedic device for correcting a bone abnormality comprising:

a patient-specific three-dimensional shell having an outer surface and an inner bone engagement surface customized in a pre-operating planning stage by computer imaging to closely mate and conform to a bone of a patient in only one position, wherein the entirety of the inner surface is configured to contact the bone; and

a patient-specific guiding feature configured to receive a removal tool such that the removal tool extends through an aperture defined by the inner surface, wherein the patient-specific guiding feature is pre-operatively planned relative to the shell such that when the shell is fitted over the bone, the guiding feature is configured to guide the removal tool for removing an abnormality portion of the bone of the patient.

2. The orthopedic device of claim 1 , wherein the shell mates and conforms to at least a portion of a junction between a femoral head and a femoral neck.

3. The orthopedic device of claim 1 , wherein the guiding feature includes a guiding window defined by the shell, the guiding window having a patient-specific inner boundary customized during the pre-operative stage to circumscribe an outer perimeter of the abnormality portion when the shell is fitted on the bone of the patient and such that the abnormality portion is accessible through the window by a bone removal tool.

4. The orthopedic device of claim 3 , in combination with a bone removal tool having a shaft with a distal surface and a cutting portion extending from the distal surface, the distal surface defining a depth stop for the removal tool when abutting the outer surface of the shell.

5. The orthopedic device of claim 1 , wherein the guiding feature includes a customized elongated arcuate slot defined by the shell for guiding a bone removal tool.

6. The orthopedic device of claim 5 , in combination with a bone removal tool having a rotatable shaft, a cutting member coupled to the shaft and a connecting member slidably coupled with the arcuate slot to guide the cutting member to remove the abnormality portion.

7. The orthopedic device of claim 6 , wherein the shell includes a patient-specific distal boundary surface that can reach up to a proximal portion of a boundary of the abnormality portion under the arcuate slot.

8. The orthopedic device of claim 1 , wherein the guiding feature includes a customized arcuate bracket extending from the outer surface of the shell and adjacent the abnormality portion when the shell is fitted over the bone.

9. The orthopedic device of claim 8 , in combination with a removal tool having a rotatable shaft, a cutting member coupled to the shaft and a bushing for coupling the shaft to the arcuate bracket to guide the cutting member to remove the abnormality portion.

10. The orthopedic device of claim 9 , wherein the bushing has an extension defining a groove, the groove engaging a ledge of the bracket.

11. The orthopedic device of claim 10 wherein the groove and the ledge have complementary cross-sections.

12. The orthopedic device of claim 11 , wherein the complementary cross-sections are T-shaped.

13. The orthopedic device of claim 11 wherein the groove and the ledge are slidably coupled.

14. The orthopedic device of claim 13 , wherein the cutting member is patient-specific and sized and shaped for removing the abnormality portion without relative sliding between the groove and the ledge.

15. An orthopedic device for correcting a bone abnormality comprising:

a patient-specific three-dimensional shell having an outer surface and an inner bone engagement surface customized in a pre-operating planning stage by computer imaging to closely mate and conform to a bone of a patient in a unique position, wherein the entirety of the inner bone engagement surface is configured to contact the bone;

a patient-specific guiding feature configured to receive a removal tool such that the removal tool extends through an aperture defined by the inner bone engagement surface, and guide the removal tool for removing an abnormality portion of the bone of the patient; and

a plurality of patient-specific engagement pads configured to conform to and engage specific patient anatomy landmarks.

16. The orthopedic device of claim 15 , wherein the shell mates and conforms to at least a portion of a junction between a femoral head and a femoral neck.

17. The orthopedic device of claim 15 , further comprising:

a customized arcuate bracket extending from the outer surface of the shell, the arcuate bracket pre-operatively planned relative to the shell such that when the shell is fitted over the bone, the arcuate bracket is adjacent to an abnormality portion of the bone of the patient and can guide a removal tool for removing the abnormality portion; and

the removal tool having a rotatable shaft, a cutting member coupled to the shaft and a bushing for coupling the shaft to the arcuate bracket to guide the cutting member to remove the abnormality portion.

18. The orthopedic device of claim 17 , wherein the bushing has an extension defining a groove, the groove engaging a ledge of the arcuate bracket.

19. The orthopedic device of claim 18 , wherein the groove and the ledge have complementary cross-sections.

20. The orthopedic device of claim 19 , wherein the complementary cross-sections are T-shaped.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2017
From: MERIDEW, JASON D.; SUSARABA, JOHN M.
To: BIOMET MANUFACTURING, LLC
Reel/Frame 041196/0527 →