IP Library Granted Patent US 8,029,508
Granted Patent B2
US 8,029,508 · App. 12/102,483 · Granted Oct 4, 2011

Bone cutting apparatus

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Quick Facts
Patent No.
US 8,029,508
App. No.
12/102,483
Granted
Oct 4, 2011
Kind
B2
Abstract

A bone-cutting apparatus and associated method and system. In one embodiment, the apparatus includes a guide removably attachable to a bone, and a rotatable mill coupled to the guide. The guide has a box-cut opening and the mill is pivotable within the opening. In one embodiment, the mill is laterally adjustable relative to the opening.

Claims (56)

1. A method for performing a box resection of a bone, the method comprising:

attaching a guide having a box-cut opening and a base to a bone;

moving a rotatable mill coupled to the guide along the base by removing the mill from a first hole of a rod rotatably supported on the base and coupling the mill to a second hole of the rod,

pivoting the mill relative to the base within the box-cut opening of the guide; and

forming a box resection of the bone with the mill.

2. A method for performing a box resection of a bone, the method comprising:

attaching a guide to the bone;

pivoting a rotatable mill that is coupled to the guide; and

forming the box resection with the mill;

selectively shifting the mill to a lateral location in a box-cut opening of the guide by shifting a rod rotatably supported on the guide and coupled with the mill;

constraining the mill laterally relative to the box-cut opening prior to pivoting by pivoting the mill toward the bone to engage a pin attached to the guide into a groove of the rod

pivoting the mill;

unconstraining the mill after pivoting the mill:

repeating shifting and pivoting until the box resection is completed; and

inserting an intercondylar box of a femoral component into the box resection formed in the bone.

3. The method of claim 2 , wherein unconstraining the mill includes pivoting the mill away from the bone until the pin is disengaged from the groove.

4. The method of claim 2 , wherein selectively shifting includes shifting with an indexing mechanism.

5. The method of claim 2 , further comprising:

preventing movement of the mill between the first and second guiding sides while pivoting the mill from the base toward the bone-attachment flange.

6. The method of claim 2 , further comprising:

pivoting the mill to the base;

moving the mill along the base to a second lateral location;

rotating the mill about the longitudinal axis while pivoting the mill from the base toward the bone-attachment flange along a second lateral plane passing through the second lateral location and substantially perpendicular to the base; and

resecting the bone along the second lateral plane with the mill.

7. A method for performing a box resection of a bone, the method comprising:

attaching a bone-cutting apparatus to a resected bone, the bone cutting apparatus including a guide and a mill movably coupled to the guide, the mill having a longitudinal axis, the mill rotatable about the longitudinal axis;

framing a portion of the bone to be removed by a box-cut opening of the guide of the bone-cutting apparatus, the box-cut opening defined by a base, a bone-attachment flange opposite the base and first and second guiding sides between the base and the bone-attachment flange;

moving the mill along the base and along a lateral axis to a first lateral location adjacent the second guiding side by sliding the mill along the base and along the lateral axis, wherein the lateral axis is substantially perpendicular to the first and second guiding sides, and wherein sliding the mill includes sliding a rod along the lateral axis, the rod rotatably supported on the guide and coupled with the mill:

rotating the mill about the longitudinal axis while pivoting the mill from the base toward the bone-attachment flange along a first lateral plane passing through the first lateral location and substantially perpendicular to the base;

engaging a pin attached to the guide into a groove of the rod while pivoting the mill from the base toward the bone-attachment flange; and

constraining movement of the mill between the first and second guiding sides while pivoting the mill; and

resecting the bone along the first lateral plane with the mill.

8. A method for performing a box resection of a bone, the method comprising:

attaching a bone-cutting apparatus to a resected bone, the bone cutting apparatus including a guide and a mill movably coupled to the guide, the mill having a longitudinal axis, the mill rotatable about the longitudinal axis;

framing a portion of the bone to be removed by a box-cut opening of the guide of the bone-cutting apparatus, the box-cut opening defined by a base, a bone-attachment flange opposite the base and first and second guiding sides between the base and the bone-attachment flange;

moving the mill along the base and along a lateral axis to a first lateral location adjacent the second guiding side by removing the mill from a first hole of a rod, the rod rotatably supported on the guide and oriented along the lateral axis and coupling the mill to a second hole of the rod, wherein the lateral axis is substantially perpendicular to the first and second guiding sides,

rotating the mill about the longitudinal axis while pivoting the mill from the base toward the bone-attachment flange along a first lateral plane passing through the first lateral location and substantially perpendicular to the base; and

resecting the bone along the first lateral plane with the mill.

9. A method for performing a box resection of a bone, the method comprising:

attaching a bone-cutting apparatus to a resected bone, the bone cutting apparatus including a guide and a mill movably coupled to the guide, the mill having a longitudinal axis, the mill rotatable about the longitudinal axis;

framing a portion of the bone to be removed by a box-cut opening of the guide of the bone-cutting apparatus, the box-cut opening defined by a base, a bone-attachment flange opposite the base and first and second guiding sides between the base and the bone-attachment flange;

moving the mill along the base and along a rod to a first lateral location adjacent the second guiding side, the rod substantially perpendicular to the first and second guiding sides;

rotating the mill about the longitudinal axis while pivoting the mill from the base toward the bone-attachment flange along a first lateral plane passing through the first lateral location and substantially perpendicular to the base;

engaging a pin attached to the guide into a groove of the rod while pivoting the mill;

constraining movement of the mill between the first and second guiding sides while pivoting the mill from the base toward the bone-attachment flange; and

resecting the bone along the first lateral plane with the mill.

10. The method of claim 9 , further comprising:

pivoting the mill from the bone-attachment flange to the base;

unconstraining movement of the mill between the first and second guiding sides while pivoting the mill from the bone-attachment flange to the base;

moving the mill along the rod to a second lateral location;

rotating the mill about the longitudinal axis while pivoting the mill from the base toward the bone-attachment flange along a second lateral plane passing through the first lateral location and substantially perpendicular to the base; and

resecting the bone along the second lateral plane with the mill.

11. The method of claim 10 , further comprising selecting the first and second lateral locations by using an indexing mechanism coupled to the rod.

12. The method of claim 10 , further comprising selecting the first and second lateral locations by engaging a ball plunger to corresponding first and second detents on the rod, the ball plunger coupled to the base.

13. The method of claim 1 , further comprising engaging a pin attached to the guide into a groove of the rod while pivoting the mill and preventing lateral movement of the mill.

14. The method of claim 13 , further comprising rotating the mill about a longitudinal axis of the mill while pivoting the mill.

Assignments (3)
RELEASE OF SECURITY INTEREST IN PATENTS RECORDED AT REEL 023505/ FRAME 0241 Recorded Nov 23, 2015
From: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
To: LVB ACQUISITION, INC.; BIOMET, INC.; BIOMET 3I, LLC; BIOMET BIOLOGICS, LLC.; BIOMET EUROPE LTD.; BIOMET FAIR LAWN LLC; BIOMET HOLDINGS LTD.; BIOMET INTERNATIONAL LTD.; BIOMET LEASING, INC.; BIOMET MANUFACTURING CORPORATION; BIOMET MICROFIXATION, LLC; BIOMET ORTHOPEDICS, LLC; BIOMET SPORTS MEDICINE, LLC; BIOMET TRAVEL, INC.; BIOLECTRON, INC.; CROSS MEDICAL PRODUCTS, LLC; ELECTR-OBIOLOGY, LLC; EBI HOLDINGS, LLC; EBI, LLC; EBI MEDICAL SYSTEMS, LLC; BIOMET FLORIDA SERVICES, LLC; INTERPORE CROSS INTERNATIONAL, LLC; INTERPORE SPINE, LTD.; KIRSCHNER MEDICAL CORPORATION; IMPLANT INNOVATIONS HOLDINGS, LLC
Reel/Frame 037155/0082 →
CHANGE OF NAME Recorded Jun 21, 2013
From: BIOMET MANUFACTURING CORPORATION
To: BIOMET MANUFACTURING, LLC
Reel/Frame 030656/0702 →
SECURITY AGREEMENT Recorded Nov 12, 2009
From: LVB ACQUISITION, INC.; BIOMET, INC.; BIOMET 3I, LLC; BIOMET BIOLOGICS, LLC; BIOMET EUROPE LTD.; BIOMET FAIR LAWN LLC; BIOMET HOLDINGS LTD.; BIOMET INTERNATIONAL LTD.; BIOMET LEASING, INC.; BIOMET MANUFACTURING CORPORATION; BIOMET MICROFIXATION, LLC; BIOMET ORTHOPEDICS, LLC; BIOMET SPORTS MEDICINE, LLC; BIOMET TRAVEL, INC.; BIOLECTRON, INC.; CROSS MEDICAL PRODUCTS, LLC; ELECTRO-BIOLOGY, LLC; EBI HOLDINGS, LLC; EBI, LLC; EBI MEDICAL SYSTEMS, LLC; BIOMET FLORIDA SERVICES, LLC; INTERPORE CROSS INTERNATIONAL, LLC; INTERPORE SPINE, LTD.; KIRSCHNER MEDICAL CORPORATION; IMPLANT INNOVATIONS HOLDINGS, LLC
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT FOR THE SECURED PARTIES
Reel/Frame 023505/0241 →