IP Library › Granted Patent US 7,744,636
Granted Patent B2
US 7,744,636 · App. 11/015,214 · Granted Jun 29, 2010

Locking mechanism

Assignee: Aesculap II, Inc.
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Quick Facts
Patent No.
US 7,744,636
App. No.
11/015,214
Granted
Jun 29, 2010
Kind
B2
Abstract

A locking mechanism including a non-threaded, self-adjusting locking device for locking a rod in place within a screw and rod assembly. A non-threaded, self-adjusting locking device for locking a rod in place within a screw and rod assembly. A spring for locking a rod in a screw and rod fixation assembly. A assembly including an implant body including a rod seat for seating a rod therein, a biasing device seat for seating a biasing device therein, and a biasing device seated in the biasing device seat for biasing a rod against a rod seat. A method of biasing a rod against a rod seat in a screw and rod fixation assembly.

Claims (22)

1. A spinal fixation assembly comprising:

a fixing mechanism defining a seat for receiving a spinal fixation rod; and

a locking mechanism comprising a locking means adapted to be moved axially along a plane perpendicular to the seat until the locking mechanism is non-threadably fixed in position relative to the fixing mechanism while being self-adjusting relative thereto for locking a rod in place within the fixing mechanism.

2. The spinal fixation assembly according to claim 1 , wherein said locking means is deformable.

3. The spinal fixation assembly according to claim 2 , wherein said deformable locking means is a spring.

4. The spinal fixation assembly according to claim 3 , wherein said spring is selected from the group consisting essentially of a washer, a flexible disc, and other flexible devices.

5. The spinal fixation assembly according to claim 4 , wherein a bottom surface of said spring is concave.

6. The spinal fixation assembly according to claim 4 , wherein a bottom surface of said spring is convex.

7. The spinal fixation assembly according to claim 1 , wherein said locking means further includes spring retaining means for retaining said locking means in the assembly.

8. The spinal fixation assembly according to claim 7 , wherein said spring retaining means is a groove in the assembly.

9. The spinal fixation assembly according to claim 7 , wherein said spring retaining means is a cap insertable into the assembly.

10. The spinal fixation assembly according to claim 8 , wherein said cap includes a threaded outer surface.

11. The spinal fixation assembly according to claim 9 , further including fixing means on an upper surface of said locking means for fixing said locking means within a groove in the locking cap.

12. The spinal fixation assembly according to claim 9 , further including fixing means on a bottom surface of said the locking cap for fixing said locking means within a groove in the locking cap and a recess for matingly engaging said fixing means.

13. The spinal fixation assembly according to claim 11 , wherein said fixing means is a stem.

14. The spinal fixation assembly according to claim 13 , wherein said stem is a rigid rod centrally affixed to the upper surface of said locking means.

15. The spinal fixation assembly according to claim 14 , wherein said stem includes a central slot on an upper surface opposite an end affixing said stem to said locking means.

16. A spinal fixation assembly comprising:

an implant body defining a seat for receiving a spinal fixation rod, the implant body further defining a circumferential groove; and

a locking mechanism including a spring biased portion and an edge portion, the edge portion snap-fittingly engages the groove such that the locking mechanism is retained relative to the implant body with the spring biased portion facing the seat.

17. The spinal fixation assembly according to claim 16 wherein the locking mechanism is a spring including the edge portion and the spring biased portion.

18. The spinal fixation assembly according to claim 16 wherein the locking mechanism includes a cap including the edge portion and a spring retained within the cap and defining the spring biased portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2005
From: RICHELSOPH, MARC E.
To: AESCULAP II, INC.
Reel/Frame 016437/0506 →
Continuity (1)
Related Publication 20060149233A1 · Jul 6, 2006