Spinal correction system with multi-stage locking mechanism
In a rod fixation system of the type used to treat various spinal conditions, the same fastener is used to lock both a polyaxial screw and a rod in position. A spinal correction device according to the invention, adapted for use with a rod and a polyaxial screw having a ball-shaped head and a threaded end, comprises a head-body and a cap. The head-body includes a lower internal cavity to receive the ball-shaped head of the screw, an upper bore to receive a fixation rod therethrough, and an upper end configured to receive the cap. The head-body and the cap are configured such that a first rotation of the cap locks the polyaxial screw in position, and a second rotation of the cap locks the rod in position. In the preferred embodiment, the head-body includes one or more gaps to facilitate flexion of the head-body as a rotational torque is placed on the cap. The gap or gaps may be horizontal, vertical or other angles relative to the axis of the entrapped rod.
This application claims priority from U.S. Provisional Patent Application Ser. No. 60/691,708, filed Jun. 17, 2005, the entire content of which is incorporated herein by reference.
FIELD OF THE INVENTIONThis invention relates generally to spinal correction and, in particular, to a system incorporating a multi-stage locking mechanism.
BACKGROUND OF THE INVENTIONThere are many spine-related conditions, such as scoliosis, which require multi-level correction/fixation. Numerous plate and rod systems are available for this purpose, many of which have received patent protection. One of the deficiencies with existing systems, however, is that the mechanism used to lock the polyaxial screw is different from the mechanism used to lock the rod, thereby requiring additional parts and less manageable installation steps.
SUMMARY OF THE INVENTIONBroadly, this invention resides in a rod fixation system to treat various spinal conditions, wherein the same fastener is used to lock both a polyaxial screw and a rod in position. A spinal correction device according to the invention, adapted for use with a rod and a polyaxial screw having a ball-shaped head and a threaded end, comprises a head-body and a cap. The head-body includes a lower internal cavity to receive the ball-shaped head of the screw, an upper bore to receive a fixation rod therethrough, and an upper end configured to receive the cap. The head-body and the cap are configured such that a first rotation of the cap locks the polyaxial screw in position, and a second rotation of the cap locks the rod in position.
In the preferred embodiment, the head-body includes one or more gaps to facilitate flexion of the head-body as a rotational torque is placed on the cap. The gap or gaps may be horizontal, vertical or other angles relative to the axis of the entrapped rod. With appropriate selection of materials and cross-section, sufficient “flexion” may be established without the need for gaps.
Tapered threads may be used on the head-body and/or cap to achieve subsequent tightening of the polyaxial screw and rod to a continuous rotational movement. An optional compression-enhancing bushing may be disposed between the rod and the ball-shaped head of the screw. Although the invention is described in conjunction with rod fixation, extensions to rod and plate or plate-only configurations are possible.
BRIEF DESCRIPTION OF THE DRAWINGS
FIGURE SC is a side cross sectional view of caps 112, 312.
DETAILED DESCRIPTION OF THE INVENTIONBroadly, this invention resides in a rod fixation system to treat various spinal conditions, wherein the same fastener is used to lock both a polyaxial screw and a rod in position. Although the invention is described in conjunction with rod fixation, extensions to rod and plate or plate-only configurations are possible.
Reference is now made to
Above the hemispherical portion 106 of the polyaxial screw 104, is a partially cylindrical passage to receive a rod 114. Note the gap 116 formed within the head-body 102 internally to the head-body, and around the upper portion of the spherical head 106 of screw 104.
Broadly according to the invention, when cap 112 is placed onto the head-body 102, a first rotation of the cap 112 locks the polyaxial screw in position, while allowing the rod a slight degree of movement. However, with further rotational force applied to the cap 112, the rod is then locked in position, forming a rigid, unified structure. The polyaxial screw is screwed into position using a hex driver 107 with the screw 104 aligned the head-body 102, after which time the hex driver is removed, allowing the head-body to swivel and the rod 114 to be placed through the head-body.
The head-body 302 includes an upper portion 310 adapted to receive cap 312 as discussed previously. The operation of the alternative embodiment of
Those of skill in the art will appreciate that as an alternative to a geometric relationship of the type just described, tapered threads may be used on the head-body and/or cap to achieve subsequent tightening of the polyaxial screw and rod to a continuous rotational movement. Additionally, although gaps are shown in the head-body as being horizontal and vertical, mixtures of these and angles other than horizontal and vertical may be used and, indeed, with appropriate selection of materials and cross-section, sufficient “flexion” may be established without the need for gaps. In terms of materials, the assemblies described may be formed from any bio-compatible sufficiently strong materials, such as chrome, cobalt or other alloys, ceramics or combinations thereof.
Claims
1. A spinal correction device adapted for use with a rod and a polyaxial screw having a ball-shaped head and a threaded end, the device comprising:
- a head-body and a cap, the head-body having a lower internal cavity to receive the ball-shaped head of the screw, an upper bore to receive a fixation rod therethrough, and an upper end configured to receive the cap; and
- wherein the head-body and the cap are configured such that: a first rotation of the cap locks the polyaxial screw in position, and a second rotation of the cap locks the rod in position.
2. The device of claim 1, wherein the head-body includes one or more gaps to facilitate flexion of the head-body as a rotational torque is placed on the cap.
3. The device of claim 1, further including a compression-enhancing bushing disposed between the rod and the ball-shaped head of the screw.
4. A spinal correction device adapted for use with a fixation rod, comprising:
- a polyaxial screw having a ball-shaped head and a threaded end;
- a head-body and a cap, the head-body having a lower internal cavity to receive the ball-shaped head of the screw, an upper bore to receive the fixation rod therethrough, and an upper end configured to receive the cap; and
- wherein the head-body and the cap are configured such that: a first rotation of the cap locks the polyaxial screw in position, and a second rotation of the cap locks the rod in position.
5. The device of claim 4, wherein the head-body includes one or more gaps to facilitate flexion of the head-body as a rotational torque is placed on the cap.
6. The device of claim 4, further including a compression-enhancing bushing disposed between the rod and the ball-shaped head of the screw.
7. A spinal correction device, comprising:
- a fixation rod;
- a polyaxial screw having a ball-shaped head and a threaded end;
- a head-body and a cap, the head-body having a lower internal cavity to receive the ball-shaped head of the screw, an upper bore to receive the fixation rod therethrough, and an upper end configured to receive the cap; and
- wherein the head-body and the cap are configured such that: a first rotation of the cap locks the polyaxial screw in position, and a second rotation of the cap locks the rod in position.
8. The device of claim 7, wherein the head-body includes one or more gaps to facilitate flexion of the head-body as a rotational torque is placed on the cap.
9. The device of claim 7, further including a compression-enhancing bushing disposed between the rod and the ball-shaped head of the screw.
Type: Application
Filed: Jun 19, 2006
Publication Date: Feb 22, 2007
Inventors: Trace Cawley (Boca Raton, FL), John Pepper (Cheshire, CT), Doris Blake (Delray Beach, FL)
Application Number: 11/455,419
International Classification: A61F 2/30 (20060101);