Laminoplasty plates, systems, and devices, and methods relating to the same
11452549 · 2022-09-27
Assignee
Inventors
- Jon SUH (Ambler, PA, US)
- Sean Suh (Morganville, NJ, US)
- Allen Kim (Philadelphia, PA, US)
- Daniel Spangler (Green Lane, PA, US)
Cpc classification
A61F2/4405
HUMAN NECESSITIES
A61B17/7007
HUMAN NECESSITIES
A61B17/7062
HUMAN NECESSITIES
A61B17/7065
HUMAN NECESSITIES
A61B17/7071
HUMAN NECESSITIES
A61B17/7044
HUMAN NECESSITIES
A61B17/7067
HUMAN NECESSITIES
A61B17/809
HUMAN NECESSITIES
A61B17/7064
HUMAN NECESSITIES
International classification
A61B17/70
HUMAN NECESSITIES
Abstract
Disclosed are laminoplasty devices and systems, kits that include such laminoplasty devices or systems or components thereof; and methods of assembling and using such laminoplasty devices and systems. In particular, articulating laminoplasty devices are provided that allow lamina plates to be adjusted angularly and transitionally with respect to a cage connecting the lamina plates. Also provided are laminoplasty plates that are configured so as to be assembled with a bone graft housing, and which provide an opening configured to facilitate bone graft insertion into the housing. Further provided are expandable laminoplasty fixation systems that include a lateral mass plate, a lamina plate and a set screw that when screwed and unscrewed, allows one to contract and expand the plates with respect to one another.
Claims
1. A laminoplasty plate, comprising: a medial portion having one or more medial screw holes; a lateral portion having one or more lateral screw holes; and a central portion configured to allow the medial portion and the lateral portion to be moved relative to one another to a desired offset position, wherein the central portion includes a locking element configured to prevent movement of the medial and lateral portions relative to one another when the locking element is locked, wherein the central portion includes a pair of pivoting bars pivotably coupled to two protruding arms extending from the medial portion at a first end and to two protruding arms extending from the lateral portion at a second end, and wherein the locking element includes: two plates extending transverse to the pair of pivoting bars and disposed on opposite sides of the pair of pivoting bars; and a screw extending through the two plates and configured to clamp the two plates down onto the pair of pivoting bars when the screw is in a locked position.
2. The laminoplasty plate of claim 1, wherein central portion includes mating dovetail features extending from the medial portion and the lateral portion, and wherein the mating dovetail features allow the medial portion and the lateral portion to slide relative to one another.
3. The laminoplasty plate of claim 2, wherein the central portion further includes a pin extending from one of the medial portion or the lateral portion into a slot formed in the other one of the medial portion or lateral portion, and wherein the pin and the slot are configured to limit the sliding of the medial portion and the lateral portion.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) Non-limiting example embodiments described herein, with reference to the following accompanying Figures.
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DETAILED DESCRIPTION
(22) The aspects, advantages and/or other features of example embodiments of the invention will become apparent in view of the following detailed description, taken in conjunction with the accompanying drawings. In describing example embodiments, specific terminology is employed for the sake of clarity. However, the embodiments are not intended to be limited to this specific terminology. It should be apparent to those skilled in the art that the described embodiments of the present invention provided herein are merely exemplary and illustrative and not limiting. Numerous embodiments of modifications thereof are contemplated as falling within the scope of the present invention and equivalents thereto. It is to be understood that each specific element includes all technical equivalents that operate in a similar manner to accomplish a similar purpose.
(23) Unless otherwise noted, technical terms are used according to conventional usage. Any patents and/or publications mentioned in this specification are indicative of the level of those skilled in the art to which the invention pertains. All publications, patent applications, patents, and other references mentioned herein are incorporated by reference in their entirety.
(24) As used herein, “a” or “an” may mean one or more. As used herein, “another” may mean at least a second or more. Furthermore, unless otherwise required by context, singular terms include pluralities and plural terms include the singular.
(25) Generally provided herein are laminoplasty plates, systems and devices, which provide flexibility, expandability, and customizability to conform the plates, systems and devices to a patient during a laminoplasty procedure. Also provided herein are kits that include such laminoplasty plates, systems and/or devices, or components thereof. Further provided are methods of assembling the present laminoplasty plates, systems and devices, and laminoplasty methods which include using the present laminoplasty plates, systems and devices.
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(27) Example embodiments herein include articulating lamina devices, which may be used to address situations e.g., in which rigid lamina plates do not conform to varying anatomical landmarks of individual patients. The embodiments depicted in
(28) In particular, non-limiting example embodiments provided herein include articulating laminoplasty devices, which include a cage connecting one or more lamina plates. The one or more lamina plates may each be attached to the cage, e.g. on opposite sides of the cage; by a slotted hinge, which slotted hinges may allow the lamina plates to be adjusted angularly and/or transitionally with respect to the cage. At least one of the lamina plates may include one or more openings adapted for receiving a bone fastener, such as a bone screw to attach the lamina plates to a patients' lamina.
(29) Referring to
(30) Lamina plates 12 and 14 may each include one or more openings or holes 22 for receiving a bone fastener, such as a bone screw. The holes 22 may be disposed for example for accessing and inserting the fasteners from the outside of the bone to facilitate implantation. According to non-limiting embodiments, articulating lamina plate devices herein may be configured for use in an “open door” laminoplasty procedure with a first lamina plate 14 configured for securing to a portion of a lamina that has been cut and hinged away from the lateral mass.
(31) In example embodiments, the cage 12 is a non-load bearing lamina cage. The cage may be configured for ease of anatomical fit without a secondary twisting or bending of the plate.
(32) According to non-limiting example embodiments, at least one bone strut may be attached to an inner surface of plate 14 and/or 16 to facilitate bone fusion or regeneration between the lateral mass and lamina.
(33) According to non-limiting example embodiments, one or more of the present lamina plates may be made from one or more materials that would be suitable for implantation into a subject, such as a human, including for example, titanium material. In alternate embodiments any other suitable implant material known to those skilled in the art may be used.
(34) Non-limiting example embodiments may also include methods that include inserting the present articulating laminoplasty device into a patient, adjusting the lateral and or transitional position of one or more lamina plates with respect to a lamina cage, to fit a patient into which the articulating laminoplasty device is inserted, and fixing the lamina plates to the patients lamina in a desired position, e.g., using bone fasteners.
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(37) Non-limiting example embodiments are directed to laminoplasty plates that include at least one opening configured in size, position, and shape, to facilitate bone graft insertion into a bone graft housing when the laminoplasty plate is attached to the bone graft housing; and one or more screw holes disposed on each end of the laminoplasty plate, which screw holes are adapted for receiving a bone fastener or screw. Further example embodiments include laminoplasty systems that include a laminoplasty plate and an attachable bone graft housing.
(38) The bone graft housing and laminoplasty plate may be configured so as to allow one to assemble the laminoplasty plate and bone graft housing in the operating room. By way of non-limiting example, the plate and housing may be assembled in an operating room by sliding a laminoplasty plate into a housing or alternatively, by snapping the plate on a housing, and locking the plate in place. Accordingly, example methods include sliding a laminoplasty plate into a bone graft housing and securing or locking the laminoplasty plate to the bone graft housing. As described with respect to further embodiments below, an example lock may include a portion of the laminoplasty plate that fits within one or more openings in the bone graft housing. As also described below, the bone graft housing may also include one or more stops to hold the laminoplasty plate in a desired position within the housing.
(39) Also encompassed are methods that include inserting a laminoplasty plate/bone graft housing system into a patient and fixing the system to the patient's lamina in a desired position, e.g., using bone fasteners.
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(41) According to the present invention, the present plates also have an option of attaching to an allograft (e.g., by a third party), for example by placing a washer and screw 38 through the opening/window 32 in the plate as depicted in
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(43) According to example embodiments, laminoplasty plates may include one or more malleable laminoplasty plates that are made of Titanium. The bone graft housing may be made e.g., of Polyether ether ketone (PEEK).
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(46) Thus, non-limiting example embodiments include an expandable laminoplasty fixation system that includes: a lateral mass plate having a set screw housing; a lamina plate having angled grooves; and a set screw positioned at least partially within said set screw housing, wherein said set screw has set screw thread, which set screw thread is mated with the angled grooves of the lamina plate such that when the set screw is screwed or unscrewed the lateral mass plate and lamina plate contract or expand with respect to one another.
(47) According to non-limiting example embodiments, the lateral mass plate and/or the lamina plate may have a kick stand 64 that allows the plate assembly to self retain in the trough between lamina and lateral mass.
(48) Advantages of these embodiments include that the device is adjustable and expandable by the turn of a screw.
(49) Example methods herein may include positioning an expandable laminoplasty fixation device within a patient, adjusting the device to a desired position outside the patient and/or after placement in the patient, and fixing the expandable device to the patient using bone screws or other fixation devices placed through one or more openings/holes on either end of the device.
(50) According to non-limiting example embodiments the plate may include a malleable material.
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(53) As depicted in
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(55) Also encompassed are methods that include inserting a laminoplasty plate/bone graft housing system into a patient and fixing the system to the patient's lamina in a desired position, e.g., using bone fasteners.
(56) As with other embodiments of the present invention, the bone graft housing and laminoplasty plate may be configured so as to allow one to assemble the laminoplasty plate and bone graft housing in the operating room. By way of non-limiting example, the plate and housing may be assembled in an operating room by sliding a laminoplasty plate into a housing or alternatively, by snapping the plate on a housing, and locking the plate in place.
(57) The plates in the present embodiments may have an option of having lateral mass side of holes lined up or perpendicular with respect to lamina alignment.
(58) According to non-limiting example embodiments, the plate can be used in a laminoplasty procedure as a stand alone, i.e., without a bone graft housing. Further example embodiments include laminoplasty systems that include a laminoplasty plate and an attachable bone graft housing either attached to one another or not yet attached.
(59) The plate may have for example an upper and/or lower kickstand 104 to sustain a space between lamina and lateral mass/pedicle during the laminoplasty procedure. An optional kickstand on each side allows the plate design to be narrow and may simplify the manufacturability of the plate.
(60) According to non-limiting example embodiments, such as depicted in
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(63) Referring to
(64) Referring now to
(65) As depicted in
(66) Similar to the laminoplasty plates discussed above, the laminoplasty plates depicted in
(67) In some embodiments, the laminoplasty plate 1300 may have, for example, a pair of kickstands 1314 extending from respective ones of the medial and lateral portions 1301, 1303 to sustain a space between lamina and lateral mass/pedicle during the laminoplasty procedure. An optional kickstand on each side allows the plate design to be narrow and may simplify the manufacturability of the plate.
(68) Referring now to
(69) Referring now to
(70) In some embodiments, the laminoplasty plate 166 further includes a pin 1608 extending from one of the first subassembly 1602B into a slot 1610 formed in the second subassembly 1602B. The pin 1608 and the slot 1610 are configured to prevent the laminoplasty plate 1600 from being over-adjusted and can additionally advantageously provide an indication to the surgeon of the offset length. In some embodiments, the laminoplasty plate 1600 further includes a cam set screw 1612 that is configured to lock the laminoplasty plate 1600 in the desired offset configuration. In the unlocked position, the cam set screw 1612 allows free motion of the dovetail features 1604A, 1604B relative to each other. In the locked position, the cam set screw 1612 applies a force normal to the dovetail features 1604A, 1604B sufficient to lock the features from further movement. Similar to the laminoplasty plate 1300 discussed above, an offset distance between a first axis passing through the first subassembly 1602A and a second axis passing through the second subassembly 1602B is adjustable to be between 0-3 mm.
(71) As with other example embodiments, in these embodiments, laminoplasty plates may include one or more malleable laminoplasty plates that are made of Titanium. The bone graft housing may be made e.g., of Polyether ether ketone (PEEK).
(72) According to non-limiting example embodiments, the present laminoplasty plates may be relatively simple to manufacture e.g., by stamping.
(73) The present plates, devices and systems may be used in various laminoplasty procedures in accordance with the present invention. Thus, laminoplasty methods that use the present plates, devices and systems are encompassed hereby. By way of example, laminoplasty methods may be performed on a mammal. According to non-limiting example embodiments, the mammal may be for example, a human.
(74) Also included herein are methods of assembling and/or adjusting laminoplasty devices and systems that may include e.g., more than one component or adjustable parts.
(75) Further provided herein are kits for performing laminoplasty methods provided herein. Such kits may include for example, one or more laminoplasty elements, which may include for example one or more components or ingredients that may be used for in the methods and techniques herein.
(76) By way of example, in embodiments having an articulating laminoplasty device described herein, example kits may include the articulating laminoplasty device itself, and at least one additional component such as instructions for using the device in a laminoplasty procedure, one or more bone fasteners or screws, and/or a screwdriver or other tool for fastening or screwing the device to a patient.
(77) Other example kits may include a laminoplasty plate or device and at least one additional component such as a bone graft housing; instructions for assembling the laminoplasty plate and bone graft housing together; instructions for using the device or system in a laminoplasty procedure; a bone graft; one or more bone fasteners or screws; and/or a screwdriver or other tool for fastening or screwing the device to a patient. According to other example embodiments, kits may include a laminoplasty plate and bone graft housing already assembled or at least partially assembled together, but perhaps not locked into a position, thus allowing for one to adjust their relative positions during surgery.
(78) Other example kits may include an expandable laminoplasty fixation system that includes a lateral mass plate, lamina plate and a set screw, and at least one additional component such as instructions for using the expandable laminoplasty fixation system in a laminoplasty procedure, one or more bone fasteners or screws, and/or a screwdriver or other tool for adjusting the screw in the laminoplasty fixation system and/or for fastening or screwing the device to a patient.
(79) The kits may optionally include one or more devices or components for visualizing the devices or device placement or attachment during the laminoplasty procedure.
(80) Although the invention has been described in example embodiments, those skilled in the art will appreciate that various modifications may be made without departing from the spirit and scope of the invention, and such modifications are therefore included herein. It is therefore to be understood that the inventions herein may be practiced other than as specifically described. Thus, the present embodiments should be considered in all respects as illustrative and not restrictive. Accordingly, it is intended that such changes and modifications fall within the scope of the present invention as defined by the claims appended hereto.