Posterior Fixation System
A posterior fixation system includes a saddle member, an anchoring member, an occipital plate, an occipital rod, and a cross-link connector. The anchoring member anchors the saddle member to bone. The saddle member includes a channel that is adapted to receive an orthopedic rod. The saddle member and the anchoring member can be coupled so as to allow multi-axial movement of the members. Connection of individual rods can be accomplished by connecting the rods with the cross-link connector. The occipital plate secures the rods to the occipital bone of the skull. Alternatively, the occipital rod can be secured to the occipital bone.
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The present invention generally relates to orthopedic implants used for correction of spinal injuries or deformities, and more specifically, but not exclusively, concerns apparatuses for fixing a portion of the spine, such as the cervical spine, to allow correction or healing thereof.
In the realm of orthopedic surgery, it is well known to use implants to fix the position of bones. In this way, the healing of a broken bone can be promoted, and malformations or other injuries can be corrected. For example, in the field of spinal surgery, it is well known to place such implants into vertebrae for a number of reasons, including (a) correcting an abnormal curvature of the spine, including a scoliotic curvature, (b) to maintain appropriate spacing and provide support to broken or otherwise injured vertebrae, and (c) perform other therapies on the spinal column.
Typical implant systems include several pieces, which commonly are useful and may be associated with only specific other pieces. Bone screws, hooks, and clamps are well know as fixation devices, which are connected or adjoined to a particular bone as a connection between the remainder of the implant and the bone. Specially formed plates or rods are commonly used as stabilization and support members. Thus, in a common spinal implant system, a spinal plate is implanted along one or more vertebrae by driving a bone screw through the plate and into each of two vertebrae. The vertebrae are thus supported and kept in a particular position by the plate, so as to promote healing. One example of such an instrumentation system is U.S. Pat. No. 5,735,853 to Olerud.
Alternatively, a rod can be used as the support and stabilizing member. In such an implant, a series of two or more screws are inserted into two or more vertebrae to be instrumented. A rod is then placed within or coupled to the heads of the screws, or is placed within a connecting device that links the rod and a screw head, and the connections are tightened. In this way, a rigid supporting structure is fixed to the vertebrae, with the rod providing the support that promotes correction of the vertebral malformation or injury.
Many varieties of bone fixation devices (e.g. screws and hooks) are monoaxial in construction. That is, such devices are connected to the rod or plate such that a longitudinal axis through the rod or plate and a longitudinal axis through the fixation device are capable of only a single position with respect to each other. While useful in certain circumstances, in many therapeutic situations the degree of precision required to use such an inflexible device is impractical, or can lead to a longer duration of surgery, potentially awkward angles for the surgeon and for the patient, with the potential for attendant complications such as pain and/or extended rehabilitation.
More recently, bone fixation devices having multi-axial capability have been introduced. Examples of such constructs are shown in U.S. Pat. Nos. 5,797,911, 5,954,725, and 5,810,818. These devices help to reduce the required precision of placement of the fixation device, since a head portion of the fixation device is multi-axially positionable around the bone-threaded or hook portion. The head can thus be positioned so as to easily receive the rod, limiting or removing much of the positioning difficulty inherent in prior devices.
Most such devices are designed for spinal fixation at the thoracic and lumbar levels. Accordingly, there is a need in the art for a comprehensive multi-axial spinal implant system, and particularly one that is useful in the cervical region of the spine.
SUMMARY OF THE INVENTIONOne form of the present invention is a unique multi-axial bone attachment assembly. Other forms concern a unique spinal implant system, a unique orthopedic fixation plate, a unique cross-link connector, and another unique multi-axial bone attachment assembly.
A further form of the present invention is directed to a unique multi-axial bone attachment assembly that includes a saddle member, a bone anchoring member, and a washer (crown member). The saddle member has a plurality of upright portions that define a channel through the saddle member. The saddle member further has a hole therethrough bounded by an inner wall, and the hole forms a lower opening in the saddle member. The bone-anchoring member extends through the opening. The bone-anchoring member includes a head portion and an anchoring portion. The washer has a recessed portion for accommodating an orthopedic rod and may include a radially extending projection. The washer is fitted within the hole of the saddle member and atop the bone-anchoring member.
Yet another form concerns a unique spinal implant system. A saddle member has a plurality of upright portions that define a channel through the saddle member. The saddle member further has a transverse hole defined through the upright portions that is transverse with respect to the channel. A bone-anchoring member is coupled to the saddle member for anchoring the saddle member to bone. An offset member is adapted to couple to an orthopedic rod, and the offset member has a coupling member and a body adapted to couple to the rod. The coupling member extends from the body and through the transverse hole of the upright members.
Another form is directed to a unique cross-shaped orthopedic plate. The plate includes a cross-shaped member. The cross-shaped member has a longitudinal axis connecting first and second longitudinal ends and a transverse axis connecting first and second transverse ends. The cross-shaped member has a plurality of apertures therethrough. At least one saddle member is attached to the cross-shaped member, and the saddle member has a plurality of upright portions that define a channel through the saddle member.
A further form concerns a unique cross-link connector. The connector includes a plurality of coupling ends each adapted to couple to an orthopedic rod. A cylindrical member is integrally connected to the coupling ends. The cylindrical member has a cylindrical shape for permitting multi-axial bending of the cylindrical member.
Still yet another form is directed to a unique multi-axial bone attachment assembly. A saddle member has a plurality of upright portions that define a channel through the saddle member. The saddle member further has a hole therethrough bounded by an inner wall, and the hole forms a lower opening in the saddle member. A bone-anchoring member extends through the opening. The bone-anchoring member includes a coupling portion provided in the hole for permitting multi-axial movement of the anchoring member and an anchoring portion. An expansion member is coupled to the anchoring member for expanding the coupling portion in order to lock the anchoring member into position.
The present invention provides a modular fixation system that allows a surgeon multiple treatment options for patients, allowing the surgeon to adapt the treatment to specific patient anatomy. The concepts surrounding the present invention are specifically designed for cervical vertebral fixation, but could be extended to include thoracic, lumbar and sacral fixation. Other advantages and objects of the present invention will be evident in view of the following specification and drawings.
For the purpose of promoting an understanding of the principles of the invention, reference will now be made to the embodiments illustrated in the drawings and specific language will be used to describe the same. It will nevertheless be understood that no limitation of the scope of the invention is thereby intended, such alterations and further modifications in the illustrated device, and such further applications of the principles of the invention as illustrated therein, being contemplated as would normally occur to one skilled in the art to which the invention relates.
In
As shown in
In a particular embodiment of saddle member 22, illustrated in
The illustrated embodiment of saddle member 22 further includes an inner groove 48 that extends around hole 38. Groove 48 is configured to accommodate snap ring 28 in a compressed condition, i.e., the outer diameter of groove 48 is at least slightly smaller than the normal uncompressed outer diameter of snap ring 28. The illustrated embodiment of saddle assembly 22 further includes a trough 50 extending longitudinally within each of upright portions 32. Trough 50 accommodates placement of washer 26, as further described below, and may have a rounded (e.g. cylindrical), squared, or other appropriate shape to accommodate washer 26. Upright portions 32 further include an internally threaded portion 52, as shown in
As shown in
Head portion 58 of bone anchor member 24 includes a lower head portion 68 and an upper head portion 70. Lower head portion 68 is generally convex, and in one embodiment forms part of a sphere. In the illustrated embodiment, the lower head portion 68 extends from a shank portion 72 in a direction away from threaded portion 56, and stops at/or before a tangent to lower head portion 68 would be parallel to a longitudinal axis L of bone anchor member 24. Upper head portion 70 is also generally convex, and forms a part of a sphere in the illustrated embodiment. Upper head portion 70 is diametrally smaller than lower head portion 68 and head portions 68 and 70 are connected by a lip 74. A tool-engaging recess 76 is formed in upper head portion 70, and may extend into lower head portion 68. In another embodiment shown in
Referring now to
Referring now to
In one embodiment, shown in
Multi-axial bone anchor assembly 20 can further include a set screw 30. As illustrated in
Set screw 30, in the embodiment illustrated in
In certain embodiments, multi-axial bone anchor assembly 20 includes snap ring 28 in order to secure washer 20 against anchoring member 24. One embodiment of such a snap ring 28 is shown in
Another embodiment of snap ring 28′ is illustrated in
An embodiment of an orthopedic fixation plate 130 according to the present invention is illustrated in
Orthopedic plate 130, in one embodiment, includes a set of apertures 142. Bone anchors 24b (
In one particular embodiment, cross member 132 is curved along the longitudinal axis between longitudinal arms 134 and 136, and is also slightly curved along the transverse axis. This curvature of cross member 132 allows orthopedic plate 130 to better match the contour of the occipital bone of the skull. It should be understood that cross member 132 can also be curved along only one of the axes or substantially flat along both axes or can be otherwise contoured prior to or during surgery in order to match specific patient anatomy.
In
Additionally, saddle member 162 includes a transverse hole 166 defined in both upright portions 32b. Transverse hole 166 is oriented transverse with respect to channel 34b, and transverse hole 166 is adapted to receive a rod (such as rod 36 in
Saddle member 162, in one embodiment, further includes a hook member 168 for engaging bones in a generally known manner. Hook member 168 has a curved portion 170 extending from upright portions 32 and a substantially straight portion 172 extending from curved portion 170. Straight portion 174 has a beveled bottom surface 174, which reduces trauma when hook member 168 is attached. It should be appreciated that hook member 168 could be replaced with another anchoring member, such as anchoring members 24 or 24a (
Referring now generally to
Referring now to
An offset connector 188 along with a set screw 189 according to still yet another embodiment of the present invention are shown in
A cross-link connector 204 according to one embodiment, which is illustrated in
One embodiment of a set screw 216 that is adapted to be threaded into threaded bore 210 is illustrated in
In
In use, coupling portion 232 is inserted into hole 38 through the bottom of saddle member 22. When saddle member 22 is coupled to hook member 168a, the spherical shape formed between semispherical members 234 allows saddle member 22 to rotate about multiple axes. Expansion member 238, once secured in hole 236 causes coupling members 234 to splay into contact with saddle member 22, thereby fixing the relative position between saddle member 22 and hook member 168.
An embodiment of an occipital-cervical rod 246, which can be attached to the above-described assemblies, is illustrated in
In
As shown in
The particular illustrated embodiment of saddle member 22d further includes an inner groove 48d. As illustrated, groove 48d extends around hole 38d, and in this particular embodiment, groove 48d is uniform between a top portion of groove 48d and the bottom portion thereof. Groove 48d is configured to accommodate snap ring 28 in a compressed condition. Groove 48d has a thickness 264 that is, in one form, thicker than snap ring 28. Further, the illustrated embodiment of saddle assembly 22d in
Referring now to
Washer 26d has a hole 84d provided through both upper portion 80d and lower portion 82d. Hole 84d includes a lower concave surface 96d and a cylindrical surface 98d. Lower concave surface 96d is adapted to accommodate head portion 58a of anchor member 24a. In the particular embodiment illustrated in
While the invention has been illustrated and described in detail in the drawings and foregoing description, the same is to be considered as illustrative and not restrictive in character. It should be understood that only the preferred embodiments have been shown and described and that all changes and modifications that come within the spirit of the invention are desired to be protected.
Claims
1. A multi-axial bone attachment assembly, comprising:
- a saddle member having a plurality of upright portions that define a channel through said saddle member, said saddle member further having a hole therethrough bounded by an inner wall, said hole forming a lower opening in said saddle member;
- a bone anchoring member extending through said opening, said bone anchoring member including a head portion and an anchoring portion; and
- a washer having a recessed portion for accommodating an orthopedic rod and a radially extending projection, said washer being fitted within said hole of said saddle member and atop said bone anchoring member.
2. The assembly of claim 1, wherein said inner wall includes a groove, and said assembly further comprises a snap-ring fitted in said groove and over said washer to hold said washer in said hole of said saddle member.
3. The assembly of claim 2, wherein said upright portions include threaded portions, and said assembly further comprises a threaded member for engagement with said threaded portions.
4. The assembly of claim 3, wherein said upright portions are internally threaded, and said threaded member is an externally threaded set screw.
5. The assembly of claim 4, wherein said set screw includes an upper surface that is convexly rounded.
6. The assembly of claim 3, wherein said threaded portions have reverse angle threads.
7. The assembly of claim 1, wherein said washer includes an upper portion and a lower portion, said recessed portion being a part of said upper portion and said projection being a part of said lower portion.
8. The assembly of claim 7, wherein said inner wall includes a groove, and said assembly further comprises a snap-ring fitted in said groove and over said lower portion of said washer to hold said washer in said hole of said saddle member.
9. The assembly of claim 7, wherein said upper portion of said washer includes a plurality of recessed portions.
10. The assembly of claim 7, wherein said lower portion of said washer includes a plurality of projections.
11. The assembly of claim 1, wherein said upright portions include threaded portions, and said assembly further comprises a threaded member for engagement with said threaded portions.
12. The assembly of claim 1, wherein said anchoring member is a bone screw.
13. The assembly of claim 12, wherein said bone screw includes a head portion having a convex underside.
14. The assembly of claim 13, wherein said convex underside is spherical.
15. The assembly of claim 14, wherein said bone screw includes a portion having a thread with a load flank and a root surface, and the angle between said load flank and said root surface is acute.
16. The assembly of claim 15, wherein said angle is about 86 degrees.
17. The assembly of claim 1, wherein said anchoring member is a hook member.
18. The assembly of claim 17, wherein said anchoring portion includes a curved portion connected to said head portion and a straight portion connected to said curved portion, said head portion including a plurality of spherical portions for coupling said anchoring member to said saddle member.
19. The assembly of claim 1, wherein said upright portions each have a trough defined therein, said washer including a plurality of projections with each provided in one of said troughs.
20. The assembly of claim 1, wherein said lower opening includes a concave wall portion and a conical wall portion for allowing angular movement of said bone anchoring member.
21. A spinal implant system, comprising:
- a saddle member having a plurality of upright portions that define a channel through said saddle member, said saddle member further having a transverse hole defined through said upright portions that is transverse with respect to said channel;
- a bone anchoring member coupled to said saddle member for anchoring said saddle member to bone; and
- an offset member adapted to couple to an orthopedic rod, said offset member having a body adapted to couple to said rod and a coupling member extending from said body through said transverse hole in said upright portions.
22. The system of claim 21, wherein said upright portions include threaded portions, and said system further comprises a threaded member for engagement with said threaded portions.
23. The system of claim 22, wherein said upright portions are internally threaded, and said threaded member includes an externally threaded set screw.
24. The system of claim 22, wherein said threaded portions have reverse angle threads.
25. The system of claim 21, wherein said anchoring member includes a hook member.
26. The system of claim 21, wherein said offset member includes a rod receiving channel defined in said body for receiving said rod.
27. The system of claim 26, wherein said offset member includes a threaded bore intersecting said rod receiving channel and a threaded set screw provided in said threaded bore.
28. The system of claim 26, further comprising a slot defined in said rod receiving channel.
29. The system of claim 21, wherein said body includes a pair of body members that define a channel in said body for receiving said rod.
30. The system of claim 29, wherein said offset member has a longitudinal axis extending along said coupling member, and said body members extend parallel to said longitudinal axis.
31. The system of claim 29, wherein said offset member has a longitudinal axis extending along said coupling member, and said body members extend perpendicular to said longitudinal axis.
32. The system of claim 29, wherein one of said body members has a threaded bore defined therein and a threaded set screw provided in said threaded bore.
33. The system of claim 21, further comprising a washer having a recessed portion adapted to accommodate said orthopedic rod and a radially extending projection, said washer being fitted within said saddle member.
34. The system of claim 33, further comprising a snap ring provided in said saddle for securing said washer in said saddle member.
35. The system of claim 21, further comprising said orthopedic rod coupled to said offset member.
36. The system of claim 35, wherein said orthopedic rod includes an occipital rod.
37. The system of claim 35, further comprising an occipital plate coupled to said rod, said plate including:
- a cross-shaped member having a longitudinal axis connecting first and second longitudinal ends and a transverse axis connecting first and second transverse ends, said cross-shaped member having a plurality of apertures therethrough; and
- a plate saddle member coupled to said cross-shaped member, said plate saddle member having a plurality of upright portions that define a channel through said plate saddle member, wherein said rod is coupled in said channel.
38. The system of claim 37, further comprising a cross-link connector having a pair of coupling ends each adapted to couple to a rod and a cylindrical member provided between said coupling ends, one of said coupling ends being coupled to said rod.
39. An orthopedic fixation plate, comprising:
- a cross-shaped member having a longitudinal axis connecting first and second longitudinal ends and a transverse axis connecting first and second transverse ends, said cross-shaped member having a plurality of apertures therethrough; and
- a saddle member coupled to said cross-shaped member, said saddle member having a plurality of upright portions that define a channel through said saddle member.
40. The plate of claim 39, wherein said plate includes a plurality of saddle members attached to said cross-shaped member, each of said saddle members having a plurality of upright portions that define respective channels through said saddle members.
41. The plate of claim 39, wherein said saddle member is integral with said cross-member.
42. The plate of claim 39, wherein said saddle member is pivotally coupled to said cross-member.
43. The plate of claim 39, wherein said saddle member is located at one of said first and second longitudinal ends.
44. The plate of claim 39, wherein said channel of said saddle member has an axis, and said channel axis is substantially perpendicular to said longitudinal axis of said cross-shaped member.
45. The plate of claim 39, wherein said cross-member has at least one of said apertures at each of said first and second transverse ends of said cross-member.
46. The plate of claim 39, wherein said apertures are bounded by a surface having a conical portion.
47. The plate of claim 46, wherein said surface has an upper conical portion and a lower conical portion.
48. The plate of claim 39, wherein said cross-shaped member is curved.
49. The plate of claim 39, wherein said cross-shaped member is curved so that said longitudinal axis has a curved portion and said transverse axis is substantially straight.
50. A cross-link connector, comprising:
- a plurality of coupling ends each adapted to couple to an orthopedic rod; and
- a cylindrical member integrally connected to said coupling ends, said cylindrical member having a cylindrical shape for permitting multi-axial bending of said cylindrical member.
51. The cross-link connector of claim 50, wherein each of said coupling ends includes a curved member that defines a cavity adapted to receive said rod.
52. The cross-link connector of claim 51, wherein each of said coupling ends includes a threaded bore and a set screw received in said bore for securing said rod.
53. The cross-link connector of claim 50, wherein said cylindrical member is arched between said coupling ends.
54. A multi-axial bone attachment assembly, comprising:
- a saddle member having a plurality of upright portions that define a channel through said saddle member, said saddle member further having a hole therethrough bounded by an inner wall, said hole forming a lower opening in said saddle member;
- a bone anchoring member extending through said opening, said bone anchoring member including a coupling portion provided in said hole for permitting multi-axial movement of said anchoring member and an anchoring portion; and
- an expansion member coupled to said anchoring member for expanding said coupling portion to lock said anchoring member into position.
55. The assembly of claim 54, wherein said anchoring portion includes a hook member.
56. The assembly of claim 54, wherein said coupling portion has a substantially spherical shape.
57. The assembly of claim 54, wherein said coupling portion includes a plurality of part spherical members.
58. The assembly of claim 57, wherein said expansion member is coupled to said anchoring member between said part spherical members.
59. The assembly of claim 54, wherein said expansion member includes a set screw.
60. The assembly of claim 54, wherein said expansion member includes a tool engaging portion, a threaded portion engaged with said coupling member, and a conically shaped expansion portion provided between said tool engaging portion and said threaded portion.
61. The assembly of claim 54, wherein said upright portions include threaded portions, and said assembly further comprises a threaded member for engagement with said threaded portions.
62. The assembly of claim 61, wherein said threaded portions have reverse angle threads.
Type: Application
Filed: Aug 19, 2013
Publication Date: Jul 17, 2014
Applicant: WARSAW ORTHOPEDIC, INC. (Warsaw, IN)
Inventors: Robert A. Farris (Cordova, TN), Kevin T. Foley (Germantown, TN), Stephen M. Papadopoulos (Ann Arbor, MI), Jeffrey W. Poyner (Atoka, TN), Ricardo Sasso (Carmel, IN)
Application Number: 13/970,346
International Classification: A61B 17/70 (20060101);