SYSTEM WITH INTEGRAL LOCKING MECHANISM
A stratum to be affixed to bone is disclosed. The stratum has a first surface, a second surface, and at least one hole extending between the first surface and the second surface, wherein the second surface is configured to engage at least a portion of the bone, and wherein the stratum further has a slot in the stratum that extends from the at least one hole to another location on the stratum, and the stratum is further configured to deflect, allowing a fastener to pass at least partially through the hole.
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The present invention is directed to systems for affixing a stratum to bone.
BACKGROUNDThe present disclosure is related to commonly owned and copending U.S. applications ______ (having Attorney Docket No. P35832.00) and ______ (having Attorney Docket No. P35833.00), each of which has a filing date that is the same as the present disclosure, and both of which are hereby incorporated herein by reference in their entireties.
The present disclosure relates to locking mechanisms, and more particularly, systems for affixing a stratum to bone.
SUMMARY OF THE INVENTIONA stratum to be affixed to bone is disclosed. The stratum has a first surface, a second surface, and at least one hole extending between the first surface and the second surface, wherein the second surface is configured to engage at least a portion of the bone, and wherein the stratum further has a slot in the stratum that extends from the at least one hole to another location on the stratum, and the stratum is further configured to deflect, allowing a fastener to pass at least partially through the hole.
Additional aspects and features of the present disclosure will be apparent from the detailed description and claims as set forth below.
For the purposes of promoting an understanding of the principles of the invention, reference will now be made to the embodiments, or examples, 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. Any alterations and further modifications in the described embodiments, and any further applications of the principles of the invention as described herein are contemplated as would normally occur to one skilled in the art to which the invention relates.
In the system 100 of
In the context of spinal plates, the fastener 10 may be, for example, a screw. In fact, a screw is shown as the fastener 10 in
In the embodiment of
Further, the distal portion 15 of the fastener 10 has a lip 16L that allows passage of the proximal end 16 through the at least one hole 30 in the stratum 20, and prevents inadvertent backing out of the fastener 10, i.e., moving back out of the at least one hole 30 in a direction away from the bone 50. As shown in
In system 200 of
In the context of spinal plates, the fastener 110 may be, for example, a screw. In fact, a screw is shown as the fastener 110 in
In the embodiment of
Further, the distal portion 115 of the fastener 110 has a lip 116L that allows passage of the proximal end 116 through the at least one hole 130 in the stratum 120, and prevents inadvertent backing out of the fastener 110, i.e., moving back out of the at least one hole 130 in a direction away from the bone 150. As shown in
In the context of spinal plates, plates may be used to fuse adjacent vertebrae together in a relatively fixed relationship. In particular, stratum 520 has a first hole 530 and a second hole 530a. For example, each hole may be positioned over different, yet adjacent, vertebral bodies. Stratum 520 further has a slot 522 in the stratum 520 that extends from the at least one hole 530 to another location on the stratum 520. Specifically, slot 522 extends from the first hole 530 to the second hole 530a. The slot 522 facilitates deflection of the stratum 520 that allows the fastener to pass at least partially through the first hole 530, as well as another fastener to pass through the second hole 530a. On stratum 520, the first hole 530 and the second hole 530a further have recesses 524 and 524a, respectively, and the slot 522 intersects the respective recesses 524 and 524a. Stratum 520 further has secondary slots 526a and 526b. As shown on stratum 520, the secondary slots 526a and 526b may be curved or have the shape of an arc. Slots 526a and 526b further facilitate deflection of the stratum 520 that allows the fastener to pass at least partially through the first hole 530, as well as another fastener to pass through the second hole 530a.
In particular, the slots 522, 526a and 526b of system 500 are provided to allow the stratum 520 surrounding holes 530 and 530a to deflect in the radial direction. That is, the slots 522, 526a and 526b provide a geometrical design that allows the holes 530 and 530a to enlarge, increasing their respective radii, when the portions of the stratum 520 adjacent to the holes 530 and 530a move in a direction away from the holes, but remain substantially in the plane of the stratum 520. In doing so, the portions of slot 522 adjacent to the holes 530 and 530a widen as the fastener passes through the holes 530 and 530a. After a fastener is in its intended implanted position, the corresponding slots move back to their original positions, as shown in
In the context of spinal plates, plates may be used to fuse adjacent vertebrae together in a relatively fixed relationship. In particular, stratum 620 has a first hole 630 and a second hole 630a. For example, the first hole 630 and the second hole 630a may be positioned over different, yet adjacent, vertebral bodies. Stratum 620 further has a third hole 640, which may be positioned over a spacer or other intra-discal device located between adjacent vertebrae. Stratum 620 further has a first slot 622a in the stratum 620 that extends from the at least one hole 630 to another location on the stratum 620. Specifically, slot 622a extends from the first hole 630 to the third hole 640. Stratum 620 further has a second slot 622b in the stratum 620 that extends from the second hole 630a to another location on the stratum 620. Specifically, slot 630b extends from the second hole 630a to the third hole 640. The first slot 622a facilitates deflection of the stratum 620 that allows the fastener to pass at least partially through the first hole 630. Similarly, the second slot 622b facilitates deflection of the stratum 620 that allows another fastener to pass through the second hole 630a. On stratum 620, the first hole 630 and the second hole 630a further have recesses 624 and 624a, respectively, which the respective slots 622a and 622b intersect. Further, the slots 622 and 622a each intersect a recess 644 of the third hole 644. Note that the mechanism of deflection of system 600 is similar to that of system 500, i.e., slots 622a and 622b are provided to allow the stratum 620 surrounding holes 630 and 630a to deflect in the radial direction.
In the context of spinal plates, plates may be used to fuse adjacent vertebrae together in a relatively fixed relationship. In particular, stratum 720 has a first hole 730 and a second hole 730a. For example, the first hole 730 and the second hole 730a may be positioned over different, yet adjacent, vertebral bodies. Stratum 720 further has a third hole 740, which may be positioned over a spacer or other intra-discal device located between adjacent vertebrae. Stratum 720 further has a first slot 722a in the stratum 720 that extends from the at least one hole 730 to another location on the stratum 720. Stratum 720 further has a second slot 722b in the stratum 720 that extends from the second hole 730a to another location on the stratum 720, a location that is a different location than the location where the first slot 722a terminates. The first slot 722a facilitates deflection of the stratum 720 that allows the fastener to pass at least partially through the first hole 730. Similarly, the second slot 722b facilitates deflection of the stratum 720 that allows another fastener to pass through the second hole 730a. On stratum 720, the first hole 730 and the second hole 730a further have recesses 724 and 724a, respectively, which the respective slots 722a and 722b intersect. Note that the mechanism of deflection of system 700 is similar to that of systems 500 and 600, i.e., slots 722a and 722b are provided to allow the stratum 720 surrounding holes 730 and 730a to deflect in the radial direction.
Note that any of the slots described above may have different shapes than those shown and described. For example, any of the slots may be linear, curved, or take on a variety of other shapes.
Note that all of the previous systems provide a monolithic stratum having the capability for self locking. That is, in the exemplary context of spinal plates, the systems 100, 200, 500, 600 and 800 provide monolithic plates (or stratums) with integral locking mechanisms that do not require an additional locking element, i.e., something in addition to the stratum, to prevent inadvertent backing out of a fastener.
All adjustments and alternatives described above are intended to be included within the scope of the invention, as defined exclusively in the following claims. Those skilled in the art also should realize that such modifications and equivalent constructions or methods do not depart from the spirit and scope of the present disclosure, and that they may make various changes, substitutions, and alterations herein without departing from the spirit and scope of the present disclosure. Furthermore, as used herein, the terms components and modules may be interchanged. It is understood that all spatial references, such as “superior,” “inferior,” “anterior,” “posterior,” “outer,” “inner,” and “perimeter” are for illustrative purposes only and can be varied within the scope of the disclosure.
Claims
1. A stratum to be affixed to bone, the stratum comprising:
- a first surface, a second surface, and at least one hole extending between the first surface and the second surface, wherein the second surface is configured to engage at least a portion of the bone, and wherein the stratum further has a slot in the stratum that extends from the at least one hole to another location on the stratum, and the stratum is further configured to deflect, allowing a fastener to pass at least partially through the hole.
2. A system for affixing the stratum of claim 1 to the bone, wherein the fastener comprises:
- a length and a width, the length being greater than the width, and a central longitudinal axis;
- a head portion;
- an intermediate portion; and
- a distal portion, wherein the distal portion has a proximal end that is proximate the intermediate portion, and the proximal end has a width substantially perpendicular to the central longitudinal axis so that the proximal end causes the stratum to deflect as the proximal end of the fastener moves across the at least one hole in the stratum in the direction towards the second surface of the stratum.
3. The system of claim 2, wherein the distal portion of the fastener has a lip that allows passage of the proximal end through the at least one hole in the stratum, and prevents inadvertent backing out of the fastener.
4. The stratum of claim 1, wherein the fastener is configured to pass at least partially through the at least one hole and engage at least a portion of the bone.
5. The stratum of claim 4, wherein the fastener is a screw that is substantially circular in cross section, and the width is a diameter.
6. The stratum of claim 1, wherein the bone is spine, and wherein the stratum is a spinal plate.
7. The stratum of claim 1, wherein the stratum comprises polyetheretherketone.
8. The stratum of claim 1, wherein the stratum consists essentially of polyetheretherketone.
9. The system of claim 3, wherein the width of the proximate end of the distal portion is a first width and the intermediate portion has a second width, wherein the second width is smaller than the first width.
10. A system for affixing a stratum to bone, the system comprising:
- a stratum having a first surface, a second surface, and at least one hole extending between the first surface and the second surface, wherein the second surface is configured to engage at least a portion of the bone and wherein the stratum further has a slot in the stratum that extends from the at least one hole to another location on the stratum; and
- a fastener configured to pass at least partially through the at least one hole and engage at least a portion of the bone, wherein the fastener has a length and a width, the length being greater than the width, and a central longitudinal axis, the fastener further comprising: a head portion; an intermediate portion; and a distal portion, wherein the distal portion has a proximal end that is proximate the intermediate portion, and the proximal end has a width substantially perpendicular to the central longitudinal axis, wherein the proximal end causes the stratum to deflect as the proximal end of the fastener moves across the at least one hole in the stratum in the direction towards the second surface of the stratum.
11. The system of claim 10, wherein the distal portion of the fastener has a lip that allows passage of the proximal end through the at least one hole in the stratum, and prevents inadvertent backing out of the fastener.
12. The system of claim 10, wherein the fastener is a screw.
13. The system of claim 12, wherein the screw is substantially circular in cross section, and the width is a diameter.
14. The system of claim 10, wherein the bone is spine, and wherein the stratum is a spinal plate.
15. The system of claim 10, wherein the stratum comprises polyetheretherketone.
16. The system of claim 10, wherein the stratum consists essentially of polyetheretherketone.
17. The system of claim 12, wherein the width of the proximate end of the distal portion is a first width and the intermediate portion has a second width, wherein the second width is smaller than the first width.
18. A system for affixing a stratum to bone, the system comprising:
- a stratum having a first surface, a second surface, and at least a first hole and a second hole, each hole extending between the first surface and the second surface, wherein the second surface is configured to engage at least a portion of the bone and wherein the stratum further has a slot in the stratum that extends from the first hole to another location on the stratum;
- a first fastener configured to pass at least partially through the first hole and engage at least a portion of the bone, wherein the stratum is further configured to deflect, allowing the first fastener to pass at least partially through the hole;
- a second fastener configured to pass at least partially through the second hole and engage at least a portion of the bone, wherein the stratum is further configured to deflect, allowing the second fastener to pass at least partially through the hole.
19. The system of claim 18, wherein the slot extends from the first hole to the second hole.
20. The system of claim 18, wherein the slot is a first slot, and the stratum further has a second slot in the stratum that extends from the second hole to another location on the stratum.
Type: Application
Filed: Aug 31, 2009
Publication Date: Mar 3, 2011
Applicant: WARSAW ORTHOPEDIC, INC. (Warsaw, IN)
Inventors: Foley Kevin (Germantown, TN), Newt Metcalf (Memphis, TN), Greg Marik (Collierville, TN)
Application Number: 12/551,182
International Classification: A61B 17/86 (20060101); A61B 17/80 (20060101);