IP Library Granted Patent US 9,848,891
Granted Patent B2
US 9,848,891 · App. 14/661,942 · Granted Dec 26, 2017

Tool and method for generating an undercut in a bone

Inventor: Sascha Berberich (Tuttlingen, DE)
Assignee: Karl Storz SE & Co. KG
A61B17/1633A61B17/1615A61B17/1617A61B17/1637
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Quick Facts
Patent No.
US 9,848,891
App. No.
14/661,942
Granted
Dec 26, 2017
Kind
B2
Abstract

A tool according to the invention for generating an undercut in a bone including a core with a shaft and a stamp mounted on a distal end of the shaft, wherein the stamp, in a transition area to the shaft, has a run-on bevel ascending in the distal direction, and a cutting sleeve which is arranged to be longitudinally movable on the shaft and of which the distal end is formed by at least one segment that can be spread open when pushed onto the run-on bevel, wherein the at least one segment has at least one laterally arranged cutting edge. The invention also relates to a method for generating an undercut in a bone.

Claims (31)

1. A tool for generating an undercut in a bone, the tool comprising:

a core with a shaft;

a stamp mounted on a distal end of the shaft, wherein the stamp, in a transition area to the shaft, has a run-on bevel ascending in a distal direction; and

a cutting sleeve which is arranged to be longitudinally movable on the shaft and of which the distal end is formed by at least one segment that can be spread open when pushed onto the run-on bevel, wherein the at least one segment has at least one laterally arranged cutting edge, and wherein the at least one segment has a leading edge and a trailing edge in relation to a predefined rotational direction of the cutting sleeve, wherein the leading edge at least partially defines the at least one laterally arranged cutting edge;

wherein the trailing edge is arranged radially deeper than the leading edge.

2. The tool according to claim 1 , wherein the distal end of the cutting sleeve is formed by a plurality of segments which each have at least one laterally arranged cutting edge and which are separated from each other by slits extending into the distal end of the cutting sleeve in a direction toward a proximal end of the cutting sleeve.

3. The tool according to claim 1 , wherein the one or more cutting edges are arranged obliquely with respect to a longitudinal axis of the cutting sleeve.

4. The tool according to claim 1 , wherein the one or more cutting edges are curved and/or toothed.

5. The tool according to claim 1 , wherein a transition area between the at least one segment and a shaft of the cutting sleeve is weakened.

6. The tool according to claim 1 , wherein the cutting sleeve is made of an elastic material, at least in a transition area between the at least one segment and a shaft of the cutting sleeve.

7. The tool according to claim 1 , wherein a distal inner edge of the at least one segment has a rounding or a chamfer.

8. The tool according to claim 1 , wherein the run-on bevel defines a substantially conical or bell-shaped run-on surface.

9. The tool according to claim 1 , wherein the shaft of the core or a transition area between the stamp and the shaft of the core has, in an axial direction, an abutment which cooperates with an abutment of the cutting sleeve in order to limit an axial travel of the cutting sleeve relative to the core.

10. The tool according to claim 1 , wherein an axially continuous gap is arranged between the shaft of the core and the cutting sleeve.

11. A tool for generating an undercut in a bone, the tool comprising:

a core with a shaft;

a stamp mounted on a distal end of the shaft, wherein the stamp, in a transition area to the shaft, has a run-on bevel ascending in a distal direction; and

a cutting sleeve which is arranged to be longitudinally movable on the shaft and of which the distal end is formed by at least one segment that can be spread open when pushed onto the run-on bevel, wherein the at least one segment has at least one laterally arranged cutting edge;

wherein the stamp and the shaft of the core have an inner hollow space continuing into a proximal end area of the shaft, and the stamp has at least one lateral aperture.

12. A method for generating an undercut in a bone, comprising:

providing a core with an elongate shaft and with a stamp which is mounted on a distal end of the shaft and which, in a transition area to the shaft, has a run-on bevel ascending in a distal direction, and a cutting sleeve, which is longitudinally movable on the shaft and of which a distal end is formed by at least one segment that can be spread open when pushed onto the run-on bevel and has at least one laterally arranged cutting edge, wherein the at least one segment has a leading edge and a trailing edge in relation to a predefined rotational direction of the cutting sleeve, wherein the leading edge at least partially defines the at least one laterally arranged cutting edge, wherein the trailing edge is arranged radially deeper than the leading edge;

inserting a distal portion of the core and a distal portion of the cutting sleeve into a bore that has been introduced into the bone; and

rotating the cutting sleeve and moving the cutting sleeve in the distal direction relative to the core in such a way that the at least one segment is spread open over the run-on bevel and the cutting edge of the at least one segment removes bone tissue from a wall of the bore.

13. The method according to claim 12 , wherein the core is not moved in rotation.

14. The method according to claim 12 , wherein the core is moved in rotation together with the cutting sleeve.

15. A method for generating an undercut in a bone, comprising:

providing a core with an elongate shaft and with a stamp which is mounted on a distal end of the shaft and which, in a transition area to the shaft, has a run-on bevel ascending in a distal direction, and a cutting sleeve, which is longitudinally movable on the shaft and of which a distal end is formed by at least one segment that can be spread open when pushed onto the run-on bevel and has at least one laterally arranged cutting edge, wherein the at least one segment has a leading edge and a trailing edge in relation to a predefined rotational direction of the cutting sleeve, wherein the leading edge at least partially defines the at least one laterally arranged cutting edge, and wherein the stamp and the shaft of the core have an inner hollow space continuing into a proximal end area of the shaft, and the stamp has at least one lateral aperture;

inserting a distal portion of the core and a distal portion of the cutting sleeve into a bore that has been introduced into the bone; and

rotating the cutting sleeve and moving the cutting sleeve in the distal direction relative to the core in such a way that the at least one segment is spread open over the run-on bevel and the cutting edge of the at least one segment removes bone tissue from a wall of the bore.

16. The method according to claim 15 , wherein the core is not moved in rotation.

17. The method according to claim 15 , wherein the core is moved in rotation together with the cutting sleeve.

Assignments (2)
CHANGE OF NAME Recorded Nov 3, 2017
From: KARL STORZ GMBH & CO. KG
To: KARL STORZ SE & CO. KG
Reel/Frame 044026/0436 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2015
From: BERBERICH, SASCHA
To: KARL STORZ GMBH & CO. KG
Reel/Frame 035937/0679 →
Priority Claims (2)
DE 10 2014 003 721 · Mar 18, 2014 · national
EP 15000497 · Feb 20, 2015 · regional
Continuity (1)
Related Publication 20150265287A1 · Sep 24, 2015