US20150094769A1 - System and method for lengthening an existing spinal support structure - Google Patents
System and method for lengthening an existing spinal support structure Download PDFInfo
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- US20150094769A1 US20150094769A1 US14/043,510 US201314043510A US2015094769A1 US 20150094769 A1 US20150094769 A1 US 20150094769A1 US 201314043510 A US201314043510 A US 201314043510A US 2015094769 A1 US2015094769 A1 US 2015094769A1
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- rod
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B17/00—Surgical instruments, devices or methods, e.g. tourniquets
- A61B17/56—Surgical instruments or methods for treatment of bones or joints; Devices specially adapted therefor
- A61B17/58—Surgical instruments or methods for treatment of bones or joints; Devices specially adapted therefor for osteosynthesis, e.g. bone plates, screws, setting implements or the like
- A61B17/68—Internal fixation devices, including fasteners and spinal fixators, even if a part thereof projects from the skin
- A61B17/70—Spinal positioners or stabilisers ; Bone stabilisers comprising fluid filler in an implant
- A61B17/7001—Screws or hooks combined with longitudinal elements which do not contact vertebrae
- A61B17/7032—Screws or hooks with U-shaped head or back through which longitudinal rods pass
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B17/00—Surgical instruments, devices or methods, e.g. tourniquets
- A61B17/56—Surgical instruments or methods for treatment of bones or joints; Devices specially adapted therefor
- A61B17/58—Surgical instruments or methods for treatment of bones or joints; Devices specially adapted therefor for osteosynthesis, e.g. bone plates, screws, setting implements or the like
- A61B17/68—Internal fixation devices, including fasteners and spinal fixators, even if a part thereof projects from the skin
- A61B17/70—Spinal positioners or stabilisers ; Bone stabilisers comprising fluid filler in an implant
- A61B17/7049—Connectors, not bearing on the vertebrae, for linking longitudinal elements together
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Abstract
A system for interfacing a first spinal support rod to a second spinal support rod may optionally comprise a rod interface device configured to receive a portion of the first rod and grip a portion of the second rod to secure the second rod to the first rod. The system may optionally comprise a screw interface device configured to receive a portion of the first rod and configured to mount on a head portion of a pedicle screw.
Description
- 1. Field
- The present disclosure relates to spinal fusion surgery and more particularly pertains to a new system and method for lengthening an existing spinal support structure for facilitating a surgical procedure for revising by extending a previous spinal support construct used, for example, for spinal vertebral fusion.
- 2. Description of the Prior Art
- Conventional spine surgeries, such as spinal fusion surgery, involves the installation of a rod connected to screws mounted on individual spinal vertebrae, and in the past required forming an incision in the tissue of the patient that extended for at least the distance between the most distant vertebrae to which the rod was to be mounted, and typically at least the length of the rod to be installed. More recently, a minimally invasive technique has been developed and used in which a number of smaller incisions are formed in the back, rather than the traditional single longer incision, with each incision generally corresponding to one of the locations of the pedicle screws to be placed. One or more additional incisions may be formed to permit the lengthwise insertion of the rod into a position that is adjacent to the screws, so that the rod may be attached to the previously mounted screws.
- In one aspect, the present disclosure relates to a system for interfacing a first support rod to a second support rod, and may comprise a rod interface device configured to receive a portion of a first support rod and grip a portion of a second support rod to secure the second support rod to the first support rod. The rod interface device may comprise a frame having a bottom wall and a perimeter wall extending from the bottom wall to partially define an interior configured to receive a portion of the first support rod therein. The rod interface device may also comprise a pair of gripping jaws movably mounted on the frame such that the gripping jaws are movable with respect to each other between a gripping position in which the second rod is gripped by the jaws and a release position in which the second rod is released from any grip of the gripping jaws.
- In another aspect, the disclosure relates to a system for interfacing a first support rod to a second support rod, and may comprise a screw interface device configured to receive a portion of a first support rod and being configured to mount on a head portion of a screw. The screw interface device may comprise a screw mount element configured to be removably mounted on the head portion of the screw, the screw mount element being insertable into the cavity to secure the second support rod in the cavity. The screw interface device may also comprise a rod mount element mounted on the screw mount element, with the rod mount element defining a pocket for receiving a portion of the first support rod.
- In yet another aspect, the disclosure relates to a surgical spinal support construct that may comprise a primary spine stabilization structure which may include a pair of primary pedicle screws each configured for threaded insertion into a vertebra of the patient, with each of the primary pedicle screws including a threaded body portion and a head portion defining a cavity. The primary pine stabilization structure may further include a primary rod extending between the pedicle screws with portions of the primary rod extending into the cavities of the primary pedicle screws. The construct may also comprise a secondary spine stabilization structure which may include a secondary pedicle screw configured for threaded insertion into a vertebra of the patient, with the secondary pedicle screws including a threaded body portion and a head portion defining a cavity. The secondary spine stabilization structure may also include a secondary rod having a portion positioned in the cavity of the secondary pedicle screw and extending to the primary spine stabilization structure, and an interface structure linking the secondary rod to primary spine stabilization structure.
- There has thus been outlined, rather broadly, some of the more important elements of the disclosure in order that the detailed description thereof that follows may be better understood, and in order that the present contribution to the art may be better appreciated. There are additional elements of the disclosure that will be described hereinafter and which will form the subject matter of the claims appended hereto.
- In this respect, before explaining at least one embodiment or implementation in greater detail, it is to be understood that the scope of the disclosure is not limited in its application to the details of construction and to the arrangements of the components, as well as the particulars of the steps, set forth in the following description or illustrated in the drawings. The disclosure is capable of other embodiments and implementations and is thus capable of being practiced and carried out in various ways. Also, it is to be understood that the phraseology and terminology employed herein are for the purpose of description and should not be regarded as limiting.
- As such, those skilled in the art will appreciate that the conception, upon which this disclosure is based, may readily be utilized as a basis for the designing of other structures, methods and systems for carrying out the several purposes of the present disclosure. It is important, therefore, that the claims be regarded as including such equivalent constructions insofar as they do not depart from the spirit and scope of the present disclosure.
- The advantages of the various embodiments of the present disclosure, along with the various features of novelty that characterize the disclosure, are disclosed in the following descriptive matter and accompanying drawings.
- The disclosure will be better understood and when consideration is given to the drawings and the detailed description which follows. Such description makes reference to the annexed drawings wherein:
-
FIG. 1 is a schematic side view of the new system utilizing the rod interface device according to the present disclosure. -
FIG. 2 is a schematic sectional view of the rod interface device of the system, according to an illustrative embodiment, from the perspective of line 2-2 ofFIG. 1 with the jaws shown in the release position. -
FIG. 3 is a schematic sectional view of the rod interface device of the system, according to an illustrative embodiment, from the perspective of line 2-2 ofFIG. 1 with the jaws shown in the gripping position. -
FIG. 4 is a schematic sectional view of the rod interface device taken along a plane substantially perpendicular to the plane of the sections shown inFIGS. 2 and 3 , according to an illustrative embodiment. -
FIG. 5 is a schematic side view of an illustrative embodiment of the system utilizing a screw interface device. -
FIG. 6 is a schematic side sectional view of the screw interface device, according to an illustrative embodiment, from a perspective taken along line 6-6 ofFIG. 5 . -
FIG. 7 is a schematic sectional view of the screw interface device taken along a plane substantially perpendicular to the plane of the sections shown inFIG. 6 , according to an illustrative embodiment. - With reference now to the drawings, and in particular to
FIGS. 1 through 7 thereof, a new system and method for lengthening an existing spinal support structure embodying the principles and concepts of the disclosed subject matter will be described. - Spinal surgeries, and especially spinal fusion surgeries, utilize a bone graft to fuse the adjacent vertebrae. Often metal screws are mounted on the vertebral body, and a rod or rods are secured to the screws, to hold the vertebrae in place while the spine fusion heals. The screws are mounted on the pedicle portion of the vertebra, which forms the small bony tube for the spinal cord, to grab into the bone of the vertebral body for a solid anchoring on the vertebra. After the screws are mounted, with one in each pedicle, the rod or rods are attached to connect all the screws together to create a relatively rigid metal frame that holds the vertebrae in position with respect to each other. A bone grafting material may then be placed around the back of the vertebrae to help heal and fuse the vertebrae together. Increasingly the surgery can be performed in a minimally invasive manner, so that the screws and rods may be placed using a series of small incisions rather than one long incision extending at least the length of the rod or rods.
- After a spinal fusion surgery has been performed, the spinal discs adjacent to the fused discs may have increased pressure and may fail, requiring spinal fusions at additional levels of the spine in surgery generally referred to as revision spine surgery. Applicant has recognized that unlike the initial spinal fusion surgery, the revision surgery may not be able to be performed in a minimally invasive manner, such as by substituting a longer rod to reach the additional spinal vertebra levels. Applicant has further recognized that it would be advantageous to avoid revision surgery that utilizes the conventional practice of making a full-length incision to remove the existing rod, install pedicle screws on the additional vertebrae levels, and then install a new longer rod mounted to the existing and new screws.
- In one aspect, the disclosure relates to a
system 10 for adding or integrating one or more rods to an existing rod and pedicle screw installation, such as an installation from a previous spinal surgery. In some embodiments, connection of the additional rod is made to the rod previously implanted in the patient, and in some embodiments the connection of the additional rod is made to a pedicle screw of a previous surgery. The implantation and assembly of the elements of the system may be conducted in a minimally-invasive manner, generally without forming a large incision in the tissue of the patient and instead may be conducted through small incisions. Removal of the existing spine support structure, including any rods and screws, is not typically needed for implementation of thesystem 10. - In some embodiments, the
system 10 may include an existingspine stabilization structure 12 that has previously been implanted in the patient and may be attached to thespine 1 of the patient. The existingspine stabilization structure 12 may include a pair ofpedicle screws vertebra 2, 3 of the patient, with each of the pedicle screws being mounted on the pedicle of a vertebra of the patient. The particular configuration of the screw is not critical as long as the screw is suitable for the purpose. An illustrative suitable screw will be described. - Each of the
pedicle screws head portion 16 which defines a cavity 18. The cavity 18 may be defined or bounded byinner surfaces 20 which may have threads formed thereon for purposes that will become apparent. Achannel 22 may be formed in thehead portion 16 and may extend through the cavity 18 for receiving a portion of a rod therein. Thechannel 22 may extend along atransverse axis 24 that is oriented substantially transverse to a longitudinal axis of the pedicle screw. Thescrews body portion 28 that is connected to the head portion either rigidly or in a manner permitting some relative movement therebetween. The body portion may be configured to be threaded into a hole formed in the vertebra, and at least a portion of theexterior surface 29 may be threaded. Thebody portion 28 may terminate in atip 30. The existingspine stabilization structure 12 may further include anexisting rod 32 that extends between thepedicle screws channel 22 of each of thehead portions 16 of the respective pedicle screws. - The system may also include an
interface structure 34 that is configured to link an additional rod to another rod, such as a rod that was placed in a previous surgery. Theinterface structure 34 may be placed in a minimally invasive manner, although a minimally-invasive installation is not required. - In some embodiments of the system, the
interface structure 34 may comprise arod interface device 36 that is configured to connect anadditional rod 38 to an existingrod 32. The rod interface device may include aframe 40 that has abottom wall 42 and aperimeter wall 44 that extends upwardly from the bottom wall to partially define an interior 46 of the frame. Theperimeter wall 44 may have aninward surface 48 with threads formed thereon. A pair ofopposed grooves 49 may be formed in the perimeter walls to receive the additional rod therein. Anopening 50 may be formed in thebottom wall 42 and the bottom wall may have a pair ofcavities opening 50 in opposition to each other. Thegrooves 49 in the perimeter wall may form a pair of perimeter wall portions that are located on opposite sides of the frame, and in some of the most preferred embodiments the perimeter wall portions may be elongated to help guide the movement of device elements, tools, as well as other things into the operative area (such as through an incision in the body of the patient). These elongated perimeter wall portions, which are illustratively shown inFIGS. 1 and 5 , may have a score line or line of reduced thickness and weakness formed across the portion that allows the perimeter wall portion to be severed or broken at the line, for example, when the device has been implanted. The relative length of the section beyond the line that may be removed may be one to ten or more times the length of the section that remains connected to the bottom wall. The position of the score line on the perimeter wall portions is preferably positioned at a distance from the bottom wall that minimizes the protrusion of the perimeter wall portion more than is necessary to accomplish the functionality of the interface structure. Illustratively, the position of the score line on the perimeter wall portion, and the height of the wall portion, may be sized to minimize the protrusion of the perimeter wall portions beyond, for example, therod securing element 82. - The
rod interface device 36 may further include a pair ofgripping jaws rod 32 so that theinterface device 36 may be attached to therod 32 in a secure manner. The grippingjaws FIG. 2 ) a gripping position (seeFIG. 3 ). The grippingjaws frame 40 in a pivotable manner. - The
jaws inner surface 56 that faces an inner surface of the other jaw, with the inner surfaces being relatively closer together in the gripping position and relatively farther apart in the release position. One or both of theinner surfaces 56 of thejaws recess 58 for receiving a portion of the existingrod 32 and a recess in one inner surface may be positioned in opposition to the recess of the other jaw when the jaws are in the gripping position. In some embodiments, the recess may be substantially semi-cylindrical in shape, although other shapes may be employed. The inner surface of the jaws may be generally planar about the recess. Thejaws inboard end 60 positioned relatively closer to theframe 40, anoutboard end 61 positioned relatively farther from the frame. Thejaws outer surface 62 that tapers smaller toward the outboard end and larger toward the inboard end such that a relatively smaller tip is created that facilitates insertion of the jaws and frame into an incision in the body, and the tapered shape of the outer surface of a jaw may have a semi-conical shape. - Each of the gripping
jaws closing tab frame 40 in a manner permitting pivot movement of the jaw with respect to the frame. The pivot pins have opposite ends that may be positioned in thecavities opening 50 of the frame. - The
interface structure 34 may further include ajaw manipulation structure 70 that may be configured to move the jaws between the gripping position and the release position in a controllable manner. Themanipulation structure 70 may comprise a jawcloser element 72 that may be configured to contact thejaws closer element 72 may be mounted on theframe 40 and may be rotatable with respect to the frame, and in some embodiments a perimeter surface of the jaw closer element may have threads formed thereon to engage the threads on theinward surface 48 of theperimeter wall 44 of the frame. By the engagement of the threads, the jaw closer element may be moved closer to, and away from, thebottom wall 42 of the frame by rotating the closer element in one rotational direction of the other direction. The jawcloser element 72 may have atool recess 73 formed thereon to receive a portion of atool 4 to cause rotation of thecloser element 72 by the surgeon. - The jaw
closer element 72 has anabutment surface 74 that is positioned to be able to contact theclosing tabs closer element 72 contacts thetabs closer element 72 is moved closer toward the bottom wall the abutment surfaces presses against the tabs and moves the tabs toward the bottom wall and also outwardly relative to each other. The effect on the jaws is to pivot the jaws toward the gripping position, with the outboard ends 61 moved toward each other as well as theinner surfaces 56 and therecesses 58 of the jaws. The movement of the jaws toward the gripping position allows the recesses to close in upon arod 32 that is located between the jaws, and may effectively trap the rod between the jaws and secure the frame to the rod. - The
jaw manipulation structure 34 may also include ajaw spreader element 76 that may be configured to move the jaws toward the release position when in a first relationship (seeFIG. 2 ) with the jaws and to permit the jaws to move toward the gripping position when in a second relationship (seeFIG. 3 ) with the jaws. Thespreader element 76 may have a tapered shape, and in some embodiments may have a substantially conical shape that is inverted when theinterface structure 34 is positioned above a rod for coupling. - The
jaw spreader element 76 may be moveable with respect to, and between, the jaws. The jaw spreader element may be rotatable with the jawcloser element 72 such that movement of thecloser element 72 with respect to the frame also moves the spreader element with respect to the frame. Thejaw manipulation structure 34 may further comprise ajaw connector element 78 that may connect thejaw spreader element 76 to the jaw closer element such that movement of the jaw closer element is transferred to the jaw spreader element. The transferred movement may include translational movement as well as rotational movement. The jaw connector element may extend between the jaws. In some embodiments, the jaw closer element, the jaw connector element and the jaw spreader element are formed of a single piece of material. - In a general sense, movement of the closer element toward the
bottom wall 42 moves the spreader element away from thewall 42, and movement of the closer element away from thewall 42 moves the spreader element toward thewall 42. Movement of the jaw spreader element toward the bottom wall causes contact of the outer surface of the spreader element with theinner surfaces 56 of the jaws and the tapered shape of the spreader element tends to push the inner surfaces away from each other and pivot the outboard ends of the jaws away from each other, opening the jaws toward the release position, as the tapered spreader element wedges between the jaws. Movement of the jaw spreader element away from thebottom wall 42 allows the inner surfaces of the jaws to move toward each other, especially in conjunction with the movement of theabutment surface 74 of the jaw closer element against the closingtabs 64 of the jaws. As the jaw closer element moves closer to the bottom wall, and the jaw spreader element moves away from the bottom wall, the jaws are moved toward the gripping position. - The
rod interface device 36 may also include arod seating element 80 for stabilizing the position of theadditional rod 38 when positioned in the frame interior and passing through thechannel 22. Therod seating element 80 may be positioned in the interior of the frame, and may be positioned adjacent to the jawcloser element 72 of thejaw manipulation structure 70 with therod 38 abutted against thedevice 36. Therod seating element 80 may have a midsection of tapered thickness with an outer section of thicker thickness relative to the midsection to tend to center therod 38 toward the center of the channel. Arod securing element 82 may be positioned in the interior of the frame, and may have an outer peripheral surface formed with threads to engage the threads on theinward surface 48 of the frame. The rod securing element may have atool recess 84 for receiving a tool to rotate the rod securing element to tighten the abutment of the securingelement 82 against therod 38, as well as loosen the abutment if desired. - Methods of using the
system 10 with therod interface device 36 may include steps of locating a location on the existing rod where the additional rod is to be connected to the existing rod, forming an incision in the patient to access the location on the existing rod, and moving the rod interface device through the incision to the location on the exiting rod. While moving the rod interface device to the location, the jaws may preferably by in the gripping position such that the jaws present a relatively tapered profile to the tissue on the sides of the incision. The jaws are placed in the gripping position by moving the jawcloser element 76 toward thebottom wall 42 by rotating the jaw closer element, which in turn presses theabutment surface 74 against the closingtabs spreader element 76 between the jaws and tends to rotate the jaws toward the release position. Once the outboard ends of the jaws are suitably spread, then the rod interface device may be advanced toward the existingrod 32 to move therod 32 between the jaws and into therecesses 58 of the jaws. Once therod 32 has sufficiently moved into position between the recesses, the jaw closer element may be rotated in a direction that moves the closer element on the threads toward the bottom wall, bringing the abutment surface against the closing tabs, and moving the jaw spreader element away from the bottom wall and out of the wedged relationship with the jaws. The outboard ends of the jaws tend to move toward each other, trapping the existing rod in the recesses or, and between, the jaws. - The
rod seating element 80, if utilized, may be positioned adjacent to the jaw closer element, and a portion of theadditional rod 38 may be positioned in thegrooves 49 of the perimeter wall of the frame such that the rod portion passes through at least a portion of the interior of the frame. The additional rod may be inserted into the operative area through known minimally-invasive techniques. Therod securing element 82 may be threaded into the interior of the frame by rotating and brought into abutment with the rod with sufficient pressure to hold the rod against the rod seating element and/or jaw closer element. - In some embodiments of the
system 10, theinterface structure 34 may comprise ascrew interface device 90 that is configured to connect theadditional rod 38 to an existingscrew 14. Thescrew interface device 34 may be configured to be connected to the head portion of a pedicle screw, and in particular a pedicle screw that includes a perimeter wall with threads formed on at least a portion of the inward surface of the perimeter wall. Thescrew interface device 90 may include ascrew mount element 92 that is configured to be mounted on the head of a pedicle screw, such as the existing pedicle screw of a previous surgery with an existingrod 32 remaining in place. More specifically, the screw mount element may be mountable on thehead portion 16 of the screw, such as by insertion of a portion of themount element 92 into the cavity 18 and engaging the threads formed on theinner surfaces 20 of the head portion. - The
screw mount element 92 may include afirst mount portion 94 that has a threadedouter surface 96 for engaging the threads of the inner surface of the head portion of the screw. Theouter surface 96 of thefirst mount portion 94 may be substantially cylindrical with the threads thereon such that engagement between the respective threads causes the first mount portion to move into the cavity 18 of the head portion as the mount element or at least the first mount portion is rotated. Thefirst mount portion 94 may be employed to press and secure the existingrod 32 in the cavity 19 and thechannel 22 by contact with alower surface 98 of the mount portion with therod 32. Thescrew mount element 92 may include asecond mount portion 100 that extends from thefirst mount portion 94, and may have a partially spherical surface. - The screw mount element may also include a
rod mount element 102 that is mounted on thescrew mount element 92, and may be mounted on the rod mount element in a manner permitting movement of the rod mount element with respect to the screw mount element, although this is not critical. Therod mount element 102 may define acavity 104 that receives a portion of thesecond mount portion 100 of the screw mount element, and the internal surface defining the cavity may be at least partially spherical in shape to engage the surface of the second mount portion. Therod mount element 102 may also include alower wall 106 with thecavity 104 formed therein and aside wall 108 extending upwardly from the lower wall. The lower and side walls may define a pocket 110 for receiving the additional rod therethrough, and the side walls may have a pair ofopposed notches 112 through which the rod extends into and out of the pocket. A rod seating element may be located in the pocket 110, and a rod securing element may also be positioned in the pocket to engage the threads and about against the additional rod to hold the rod in the pocket. - Methods of using the
system 10 with thescrew interface device 90 may include steps of locating a location of an existingscrew 14 to which the additional rod is to be connected, forming an incision in the patient to access the location of the screw, and moving the screw interface device through the incision in the patient to the location adjacent to the screw, such as the head portion of the screw. An existing securing element may be removed from the head portion of the screw prior to insertion of theinterface device 90, but in some implementations that securing element may be left in place if sufficient room remains in the cavity for a section of thefirst mount portion 94 of thescrew mount element 92. A section of the first mount portion may be threaded into the cavity and may be rotated to a degree that the screw mount engages the existing rod if an existing element has been removed. Once the screw mount element has been secured to the head portion of the screw, a rod seating element may be inserted into the pocket and then the additional rod may also be inserted into the pocket 110 and through at least one of the pair of opposed notches 11 of therod mount element 102. The additional rod may be inserted into the operative area through known minimally-invasive techniques. A rod securing element may be inserted into the pocket and engaged with the threads by rotation, with rotation continuing until the rod securing element places sufficient pressure against therod 38 to securely anchor it in place. - It should be appreciated that in the foregoing description and appended claims, that the terms “substantially” and “approximately,” when used to modify another term, mean “for the most part” or “being largely but not wholly or completely that which is specified” by the modified term.
- It should also be appreciated from the foregoing description that, except when mutually exclusive, the features of the various embodiments described herein may be combined with features of other embodiments as desired while remaining within the intended scope of the disclosure.
- Further, those skilled in the art will appreciate that the steps shown in the drawing figures may be altered in a variety of ways. For example, the order of the steps may be rearranged, substeps may be performed in parallel, shown steps may be omitted, or other steps may be included, etc.
- With respect to the above description then, it is to be realized that the optimum dimensional relationships for the parts of the disclosed embodiments and implementations, to include variations in size, materials, shape, form, function and manner of operation, assembly and use, are deemed readily apparent and obvious to one skilled in the art in light of the foregoing disclosure, and all equivalent relationships to those illustrated in the drawings and described in the specification are intended to be encompassed by the present disclosure.
- Therefore, the foregoing is considered as illustrative only of the principles of the disclosure. Further, since numerous modifications and changes will readily occur to those skilled in the art, it is not desired to limit the disclosed subject matter to the exact construction and operation shown and described, and accordingly, all suitable modifications and equivalents may be resorted to that fall within the scope of the claims.
Claims (16)
1. A system for interfacing a first support rod to a second support rod, comprising
a rod interface device configured to receive a portion of a first support rod and grip a portion of a second support rod to secure the second support rod to the first support rod, the rod interface device comprising:
a frame having a bottom wall and a perimeter wall extending from the bottom wall to partially define an interior configured to receive a portion of the first support rod therein; and
a pair of gripping jaws movably mounted on the frame such that the gripping jaws are movable with respect to each other between a gripping position in which the second rod is gripped by the jaws and a release position in which the second rod is released from any grip of the gripping jaws.
2. The system of claim 1 wherein the rod interface device additionally comprises a rod securing element positionable in the frame to secure the first support rod in the interior of the frame.
3. The system of claim 2 wherein the perimeter wall of the frame has an inward surface with threads formed thereon and the rod securing element has an outer peripheral surface with threads for engaging the threads on the inward surface of the frame such that rotation of the rod securing element presses the first support rod toward the bottom wall of the frame.
4. The system of claim 1 wherein the gripping jaws are pivotally mounted such that the jaws pivot with respect to each other.
5. The system of claim 1 wherein each of the gripping jaws includes an inner surface facing an inner surface of the other jaw, the inner surface of at least one jaw having a recess for receiving a portion of the second support rod.
6. The system of claim 1 wherein each of the jaws has an inboard end and an outboard end and an outer surface, the outer surface tapering smaller toward the outboard end and larger toward the inboard end.
7. The system of claim 1 wherein the rod interface device additionally comprises a jaw manipulation structure configured to move the jaws between the gripping position and the release position.
8. The system of claim 7 wherein the jaw manipulation structure includes a jaw closer element configured to contact the jaws and move the jaws toward the gripping position and a jaw spreader element configured to move the jaws into the release position.
9. A system for interfacing a first support rod to a second support rod, comprising
a screw interface device configured to receive a portion of a first support rod and being configured to mount on a head portion of a screw, the screw interface device comprising:
a screw mount element configured to be removably mounted on the head portion of the screw, the screw mount element being insertable into the cavity to secure the second support rod in the cavity; and
a rod mount element mounted on the screw mount element, the rod mount element defining a pocket for receiving a portion of the first support rod.
10. The system of claim 9 wherein the head portion of the screw has a cavity for receiving a portion of the second support rod, the cavity being defined by inner surfaces with threads formed thereon, and
wherein the screw mount element has threads formed thereon configured to engage threads of the cavity of the head portion.
11. The system of claim 9 wherein the rod mount element is mounted on the screw mount element in a manner permitting movement of the rod mount element with respect to the screw mount element.
12. The system of claim 9 wherein the screw mount element includes:
a first mount portion having a threaded outer surface for engaging the threads of the head portion of the screw; and
a second mount portion extending from the first mount portion, the second mount portion defining a cavity receiving a portion of the first mount portion.
13. The system of claim 9 additionally comprising a screw with a head portion defining a cavity for receiving a portion of the second support rod, the cavity being defined by inner surfaces with threads formed thereon; and
wherein the screw mount element has threads formed thereon, the threads engaging threads on the inner surface of the cavity of the head portion to secure the screw interface device to the screw.
14. A surgical spinal support construct comprising:
a primary spine stabilization structure comprising:
a pair of primary pedicle screws each configured for threaded insertion into a vertebra of the patient, each of the primary pedicle screws including a threaded body portion and a head portion defining a cavity;
a primary rod extending between the pedicle screws with portions of the primary rod extending into the cavities of the primary pedicle screws; and
a secondary spine stabilization structure comprising:
a secondary pedicle screw configured for threaded insertion into a vertebra of the patient, the secondary pedicle screws including a threaded body portion and a head portion defining a cavity;
a secondary rod having a portion positioned in the cavity of the secondary pedicle screw and extending to the primary spine stabilization structure; and
an interface structure linking the secondary rod to primary spine stabilization structure.
15. The construct of claim 14 wherein the interface structure comprises a rod interface device receiving a portion of the secondary rod and gripping a portion of the primary rod to secure the secondary rod to the primary rod.
16. The construct of claim 14 wherein the interface structure comprises a screw interface device receiving a portion of a secondary rod and being mounted on the head portion of one of the primary pedicle screws.
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
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US14/043,510 US20150094769A1 (en) | 2013-10-01 | 2013-10-01 | System and method for lengthening an existing spinal support structure |
US15/142,517 US9655654B2 (en) | 2013-10-01 | 2016-04-29 | Spinal rod support structure with clamp |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US14/043,510 US20150094769A1 (en) | 2013-10-01 | 2013-10-01 | System and method for lengthening an existing spinal support structure |
Related Child Applications (1)
Application Number | Title | Priority Date | Filing Date |
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US15/142,517 Division US9655654B2 (en) | 2013-10-01 | 2016-04-29 | Spinal rod support structure with clamp |
Publications (1)
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US14/043,510 Abandoned US20150094769A1 (en) | 2013-10-01 | 2013-10-01 | System and method for lengthening an existing spinal support structure |
US15/142,517 Active US9655654B2 (en) | 2013-10-01 | 2016-04-29 | Spinal rod support structure with clamp |
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US9655654B2 (en) | 2013-10-01 | 2017-05-23 | Advance Research System, Llc | Spinal rod support structure with clamp |
US20190175226A1 (en) * | 2017-02-10 | 2019-06-13 | Medos International Sarl | Tandem Rod Connectors and Related Methods |
US10966761B2 (en) | 2017-03-28 | 2021-04-06 | Medos International Sarl | Articulating implant connectors and related methods |
US11058463B2 (en) | 2016-05-18 | 2021-07-13 | Medos International Sarl | Implant connectors and related methods |
US11076890B2 (en) | 2017-12-01 | 2021-08-03 | Medos International Sàrl | Rod-to-rod connectors having robust rod closure mechanisms and related methods |
US11160583B2 (en) | 2016-12-19 | 2021-11-02 | Medos International Sarl | Offset rods, offset rod connectors, and related methods |
US11382676B2 (en) | 2017-03-28 | 2022-07-12 | Medos International Sarl | Articulating implant connectors and related methods |
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US8740950B2 (en) * | 2011-12-08 | 2014-06-03 | Spine Wave, Inc. | Methods for percutaneously attaching a cross connector to contralateral spinal constructs |
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US9655654B2 (en) | 2013-10-01 | 2017-05-23 | Advance Research System, Llc | Spinal rod support structure with clamp |
US11058463B2 (en) | 2016-05-18 | 2021-07-13 | Medos International Sarl | Implant connectors and related methods |
US11596451B2 (en) | 2016-05-18 | 2023-03-07 | Medos International Sarl | Implant connectors and related methods |
US11160583B2 (en) | 2016-12-19 | 2021-11-02 | Medos International Sarl | Offset rods, offset rod connectors, and related methods |
US20190175226A1 (en) * | 2017-02-10 | 2019-06-13 | Medos International Sarl | Tandem Rod Connectors and Related Methods |
US10869695B2 (en) * | 2017-02-10 | 2020-12-22 | Medos International Sarl | Tandem rod connectors and related methods |
US11793554B2 (en) | 2017-02-10 | 2023-10-24 | Medos International Sarl | Tandem rod connectors and related methods |
US10966761B2 (en) | 2017-03-28 | 2021-04-06 | Medos International Sarl | Articulating implant connectors and related methods |
US11382676B2 (en) | 2017-03-28 | 2022-07-12 | Medos International Sarl | Articulating implant connectors and related methods |
US11707304B2 (en) | 2017-03-28 | 2023-07-25 | Medos International Sarl | Articulating implant connectors and related methods |
US11076890B2 (en) | 2017-12-01 | 2021-08-03 | Medos International Sàrl | Rod-to-rod connectors having robust rod closure mechanisms and related methods |
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US20160242817A1 (en) | 2016-08-25 |
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