MLchartDataset catalogue

Patent · US10959856B2 · B2 · US

Intervertebral spacer and plate

(11) Publication number
US10959856B2
(21) Application number
15/970,166
(22) Filing date
2018-05-03
(30) Priority date
2015-07-17
(43) Publication date
2021-03-30
(45) Date of grant
2021-03-30
(51) IPC
A61F 2/44; A61F 2/46
(52) CPC
  • A61F Filters implantable into blood vessels; prostheses; devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents; orthopaedic, nursing or contraceptive devices; fomentation; treatment or protection of eyes or ears; bandages, dressings or absorbent pads; first-aid kits: 2/447, 2/30749, 2/4455, 2/4611, 2002/3008, 2002/30266, 2002/30383, 2002/30387, 2002/30433, 2002/30507, 2002/30538, 2002/30556, 2002/30578, 2002/30579, 2002/30593, 2002/30604, 2002/30622, 2002/30777, 2002/30836, 2002/30841, 2002/30878, 2002/30904, 2002/3093, 2002/30957, 2002/4615, 2002/4625, 2002/4627, 2002/4629
(73) Assignee
Globus Medical Inc
(72) Inventors
Jody L. Seifert; Alex Burkhardt; Kevin Gahman; Chad Glerum; Mark Weiman; John Matthews; Michael Ashleigh; Sean Gill; Mark Miccio
(54) Title
Intervertebral spacer and plate
(57) Abstract

Embodiments herein are generally directed to spinal implants, systems, apparatuses, and components thereof that can be used in spinal fusion and/or stabilization procedures, as well as methods of installation. The spinal implants may include an intervertebral spacer and a plate member.

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Claims (20)

  1. A vertebral fusion device, comprising: a first endplate having at least one first mating feature extending downward from the first endplate; a second endplate having at least one second mating feature extending upward from the second endplate; a first ramped body extending between the first endplate and the second endplate, wherein the first ramped body comprises a first upwardly extending mating feature engaging the at least one first mating feature of the first endplate and a first downwardly extending mating feature engaging the at least one second mating feature of the second endplate, and wherein at least one of the first upwardly extending mating feature and the first downwardly extending mating feature has a radius of curvature about a pivot point; and an actuator in engagement with the first ramped body, wherein rotation of the actuator causes translation of the first ramped body, thereby causing expansion of the implant wherein the first endplate includes a third mating feature extending downward from the first endplate and the second endplate includes a fourth mating feature extending upward from the second endplate, wherein the first ramped body includes a second upwardly extending mating feature and a second downwardly extending mating feature, wherein the third mating feature of the first endplate engages with the second upwardly extending mating feature of the first ramped body and the fourth mating feature of the second endplate engages with the second downwardly extending mating feature of the first ramped body, wherein the first mating feature and the third mating feature of the first endplate are spaced apart and sloped in the same direction, and wherein the pivot point allows the first endplate and the second endplate to expand in a manner to create a wedge-shaped configuration relative to a latitudinal axis of the vertebral fusion device.
  2. The vertebral fusion device of claim 1, wherein a curvature of at least one of the at least one upwardly extending mating feature and the at least one downwardly extending mating feature is in the form of a helix.
  3. The vertebral fusion device of claim 1, wherein the pivot point lies on the outside of the vertebral fusion device.
  4. The vertebral fusion device of claim 1, wherein the at least one first mating feature is a first recess, wherein the at least one second mating feature is a second recess, and wherein the at least one upwardly extending mating feature and the at least one downwardly extending mating feature are protrusions.
  5. The vertebral fusion device of claim 1, wherein the at least one first mating feature is a first protrusion, wherein the at least one second mating feature is a second protrusion, and wherein the at least one upwardly extending mating feature and the at least one downwardly extending mating feature are recesses.
  6. The vertebral fusion device of claim 1, wherein the at least one first mating feature comprises a plurality of first mating features, and wherein the at least one second mating feature comprises a plurality of second mating features.
  7. The vertebral fusion device of claim 6, further comprising: a second ramped body having one or more mating features configured to engage one or more of the plurality of first mating features and the plurality of second mating features.
  8. The vertebral fusion device of claim 7, wherein the first ramped body comprises a first end and a second end, the second end comprising a first threaded bore passing longitudinally therethrough, and wherein the second ramped body comprises a first bore configured to be coaxial with the first threaded bore of the first ramped body.
  9. A surgical system, comprising: an implant comprising: a first endplate having at least one first mating feature extending downward from the first endplate; a second endplate having at least one second mating feature extending upward from the second endplate; a first ramped body extending between the first endplate and the second endplate, wherein the first ramped body comprises at least one upwardly extending mating feature engaging the at least one first mating feature of the first endplate and at least one downwardly extending mating feature engaging the at least one second mating feature of the second endplate, and wherein at least one of the at least one upwardly extending mating feature and the at least one downwardly extending mating feature has a radius of curvature about a pivot point; and an actuator in engagement with the first ramped body, wherein rotation of the actuator causes translation of the first ramped body, thereby causing expansion of the implant; and an inserter configured to engage the implant, wherein the inserter comprises an outer shaft and a distal engagement portion at an angle relative to the outer shaft, wherein the first endplate includes a third mating feature extending downward from the first endplate and the second endplate includes a fourth mating feature extending upward from the second endplate, wherein the first ramped body includes a second upwardly extending mating feature and a second downwardly extending mating feature, wherein the third mating feature of the first endplate engages with the second upwardly extending mating feature of the first ramped body and the fourth mating feature of the second endplate engages with the second downwardly extending mating feature of the first ramped body, wherein the first mating feature and the third mating feature of the first endplate are spaced apart and sloped in the same direction, and wherein the pivot point allows the first endplate and the second endplate to expand in a manner to create a wedge-shaped configuration relative to a latitudinal axis of the vertebral fusion device.
  10. The surgical system of claim 9, wherein the inserter comprises a first engagement tip received within the distal engagement portion.
  11. The surgical system of claim 10, wherein the inserter comprises a second engagement tip received within the distal engagement portion.
  12. The surgical system of claim 11, wherein the first engagement tip is configured to engage a threaded opening in the implant and the second engagement tip is configured to engage the actuator thereby causing expansion of the implant.
  13. The surgical system of claim 11, wherein the inserter further comprises a first lumen in fluid communication with the first engagement tip and a second lumen in fluid communication with the second engagement tip.
  14. The surgical system of claim 13, wherein the inserter further comprises a drive shaft configured to extend in either of the first lumen or the second lumen to actuate the first engagement tip or the second engagement tip.
  15. The surgical system of claim 9, wherein the outer shaft of the inserter houses a first lumen adjacent to a second lumen.
  16. The surgical system of claim 15, wherein the first lumen is in fluid communication with a first engagement tip and the second lumen is in fluid communication with a second engagement tip.
  17. The surgical system of claim 16, wherein the first engagement tip is configured to engage and hold the implant and the second engagement tip is configured to expand or contract the implant.
  18. The surgical system of claim 9, wherein the inserter comprises a first engagement tip in fluid communication with a first lumen and a drive shaft extending through the first lumen.
  19. The surgical system of claim 9, wherein the at least one first mating feature comprises a plurality of first mating features, and wherein the at least one second mating feature comprises a plurality of second mating features.
  20. The surgical system of claim 19, wherein the implant further comprises: a second ramped body having one or more mating features configured to engage one or more of the plurality of first mating features and the plurality of second mating features.

Description

The present disclosure relates to intervertebral devices and methods used to install these devices.

Many types of spinal irregularities can cause pain, limit range of motion, or injure the nervous system within the spinal column. These irregularities can result from, without limitation, trauma, tumor, disc degeneration, and disease. One example of a spinal irregularity that may result from disc degeneration is spinal stenosis, the narrowing of a spinal canal, which can result in the compression of spinal nerves such as the spinal cord or cauda equina. In turn, the nerve compression can result in pain, numbness, or weakness. Other examples of conditions that can result from disc degeneration are osteoarthritis and disc herniation.

Often, these irregularities can be treated by performing a discectomy and/or immobilizing a portion of the spine. For example, treatment can include a surgical procedure that involves removal and replacement of an affected intervertebral disc with a prosthesis and the subsequent fusion of adjacent vertebrae. The prosthesis, such as an interbody cage or spacer, may be used either alone or in combination with one or more additional devices such as rods, screws, and/or plates.

Some embodiments herein are directed a vertebral fusion device that can include a spacer member comprising a first mating element; and a fixation member comprising a first bore extending therethrough and a second mating element, the second mating element configured to articulably engage the first mating element.

Citations (47)

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  • WO2017015165A1
Record as JSON
{
  "publication_number": "US10959856B2",
  "country": "US",
  "kind": "B2",
  "title": "Intervertebral spacer and plate",
  "abstract": "Embodiments herein are generally directed to spinal implants, systems, apparatuses, and components thereof that can be used in spinal fusion and/or stabilization procedures, as well as methods of installation. The spinal implants may include an intervertebral spacer and a plate member.",
  "claims": [
    "1. A vertebral fusion device, comprising: a first endplate having at least one first mating feature extending downward from the first endplate; a second endplate having at least one second mating feature extending upward from the second endplate; a first ramped body extending between the first endplate and the second endplate, wherein the first ramped body comprises a first upwardly extending mating feature engaging the at least one first mating feature of the first endplate and a first downwardly extending mating feature engaging the at least one second mating feature of the second endplate, and wherein at least one of the first upwardly extending mating feature and the first downwardly extending mating feature has a radius of curvature about a pivot point; and an actuator in engagement with the first ramped body, wherein rotation of the actuator causes translation of the first ramped body, thereby causing expansion of the implant wherein the first endplate includes a third mating feature extending downward from the first endplate and the second endplate includes a fourth mating feature extending upward from the second endplate, wherein the first ramped body includes a second upwardly extending mating feature and a second downwardly extending mating feature, wherein the third mating feature of the first endplate engages with the second upwardly extending mating feature of the first ramped body and the fourth mating feature of the second endplate engages with the second downwardly extending mating feature of the first ramped body, wherein the first mating feature and the third mating feature of the first endplate are spaced apart and sloped in the same direction, and wherein the pivot point allows the first endplate and the second endplate to expand in a manner to create a wedge-shaped configuration relative to a latitudinal axis of the vertebral fusion device.",
    "2. The vertebral fusion device of claim 1, wherein a curvature of at least one of the at least one upwardly extending mating feature and the at least one downwardly extending mating feature is in the form of a helix.",
    "3. The vertebral fusion device of claim 1, wherein the pivot point lies on the outside of the vertebral fusion device.",
    "4. The vertebral fusion device of claim 1, wherein the at least one first mating feature is a first recess, wherein the at least one second mating feature is a second recess, and wherein the at least one upwardly extending mating feature and the at least one downwardly extending mating feature are protrusions.",
    "5. The vertebral fusion device of claim 1, wherein the at least one first mating feature is a first protrusion, wherein the at least one second mating feature is a second protrusion, and wherein the at least one upwardly extending mating feature and the at least one downwardly extending mating feature are recesses.",
    "6. The vertebral fusion device of claim 1, wherein the at least one first mating feature comprises a plurality of first mating features, and wherein the at least one second mating feature comprises a plurality of second mating features.",
    "7. The vertebral fusion device of claim 6, further comprising: a second ramped body having one or more mating features configured to engage one or more of the plurality of first mating features and the plurality of second mating features.",
    "8. The vertebral fusion device of claim 7, wherein the first ramped body comprises a first end and a second end, the second end comprising a first threaded bore passing longitudinally therethrough, and wherein the second ramped body comprises a first bore configured to be coaxial with the first threaded bore of the first ramped body.",
    "9. A surgical system, comprising: an implant comprising: a first endplate having at least one first mating feature extending downward from the first endplate; a second endplate having at least one second mating feature extending upward from the second endplate; a first ramped body extending between the first endplate and the second endplate, wherein the first ramped body comprises at least one upwardly extending mating feature engaging the at least one first mating feature of the first endplate and at least one downwardly extending mating feature engaging the at least one second mating feature of the second endplate, and wherein at least one of the at least one upwardly extending mating feature and the at least one downwardly extending mating feature has a radius of curvature about a pivot point; and an actuator in engagement with the first ramped body, wherein rotation of the actuator causes translation of the first ramped body, thereby causing expansion of the implant; and an inserter configured to engage the implant, wherein the inserter comprises an outer shaft and a distal engagement portion at an angle relative to the outer shaft, wherein the first endplate includes a third mating feature extending downward from the first endplate and the second endplate includes a fourth mating feature extending upward from the second endplate, wherein the first ramped body includes a second upwardly extending mating feature and a second downwardly extending mating feature, wherein the third mating feature of the first endplate engages with the second upwardly extending mating feature of the first ramped body and the fourth mating feature of the second endplate engages with the second downwardly extending mating feature of the first ramped body, wherein the first mating feature and the third mating feature of the first endplate are spaced apart and sloped in the same direction, and wherein the pivot point allows the first endplate and the second endplate to expand in a manner to create a wedge-shaped configuration relative to a latitudinal axis of the vertebral fusion device.",
    "10. The surgical system of claim 9, wherein the inserter comprises a first engagement tip received within the distal engagement portion.",
    "11. The surgical system of claim 10, wherein the inserter comprises a second engagement tip received within the distal engagement portion.",
    "12. The surgical system of claim 11, wherein the first engagement tip is configured to engage a threaded opening in the implant and the second engagement tip is configured to engage the actuator thereby causing expansion of the implant.",
    "13. The surgical system of claim 11, wherein the inserter further comprises a first lumen in fluid communication with the first engagement tip and a second lumen in fluid communication with the second engagement tip.",
    "14. The surgical system of claim 13, wherein the inserter further comprises a drive shaft configured to extend in either of the first lumen or the second lumen to actuate the first engagement tip or the second engagement tip.",
    "15. The surgical system of claim 9, wherein the outer shaft of the inserter houses a first lumen adjacent to a second lumen.",
    "16. The surgical system of claim 15, wherein the first lumen is in fluid communication with a first engagement tip and the second lumen is in fluid communication with a second engagement tip.",
    "17. The surgical system of claim 16, wherein the first engagement tip is configured to engage and hold the implant and the second engagement tip is configured to expand or contract the implant.",
    "18. The surgical system of claim 9, wherein the inserter comprises a first engagement tip in fluid communication with a first lumen and a drive shaft extending through the first lumen.",
    "19. The surgical system of claim 9, wherein the at least one first mating feature comprises a plurality of first mating features, and wherein the at least one second mating feature comprises a plurality of second mating features.",
    "20. The surgical system of claim 19, wherein the implant further comprises: a second ramped body having one or more mating features configured to engage one or more of the plurality of first mating features and the plurality of second mating features."
  ],
  "description_excerpt": "The present disclosure relates to intervertebral devices and methods used to install these devices.\n\nMany types of spinal irregularities can cause pain, limit range of motion, or injure the nervous system within the spinal column. These irregularities can result from, without limitation, trauma, tumor, disc degeneration, and disease. One example of a spinal irregularity that may result from disc degeneration is spinal stenosis, the narrowing of a spinal canal, which can result in the compression of spinal nerves such as the spinal cord or cauda equina. In turn, the nerve compression can result in pain, numbness, or weakness. Other examples of conditions that can result from disc degeneration are osteoarthritis and disc herniation.\n\nOften, these irregularities can be treated by performing a discectomy and/or immobilizing a portion of the spine. For example, treatment can include a surgical procedure that involves removal and replacement of an affected intervertebral disc with a prosthesis and the subsequent fusion of adjacent vertebrae. The prosthesis, such as an interbody cage or spacer, may be used either alone or in combination with one or more additional devices such as rods, screws, and/or plates.\n\nSome embodiments herein are directed a vertebral fusion device that can include a spacer member comprising a first mating element; and a fixation member comprising a first bore extending therethrough and a second mating element, the second mating element configured to articulably engage the first mating element.",
  "cpc": [
    "A61F 2/447",
    "A61F 2/30749",
    "A61F 2/4455",
    "A61F 2/4611",
    "A61F 2002/3008",
    "A61F 2002/30266",
    "A61F 2002/30383",
    "A61F 2002/30387",
    "A61F 2002/30433",
    "A61F 2002/30507",
    "A61F 2002/30538",
    "A61F 2002/30556",
    "A61F 2002/30578",
    "A61F 2002/30579",
    "A61F 2002/30593",
    "A61F 2002/30604",
    "A61F 2002/30622",
    "A61F 2002/30777",
    "A61F 2002/30836",
    "A61F 2002/30841",
    "A61F 2002/30878",
    "A61F 2002/30904",
    "A61F 2002/3093",
    "A61F 2002/30957",
    "A61F 2002/4615",
    "A61F 2002/4625",
    "A61F 2002/4627",
    "A61F 2002/4629"
  ],
  "ipc": [
    "A61F 2/44",
    "A61F 2/46"
  ],
  "assignees": [
    "Globus Medical Inc"
  ],
  "inventors": [
    "Jody L. Seifert",
    "Alex Burkhardt",
    "Kevin Gahman",
    "Chad Glerum",
    "Mark Weiman",
    "John Matthews",
    "Michael Ashleigh",
    "Sean Gill",
    "Mark Miccio"
  ],
  "filing_date": "2018-05-03",
  "publication_date": "2021-03-30",
  "grant_date": "2021-03-30",
  "priority_date": "2015-07-17",
  "application_number": "US-201815970166-A",
  "family_id": "57775341",
  "cited_by_count": 30,
  "citations": [
    "US3273129A",
    "US4863476A",
    "US6235059B1",
    "US6176882B1",
    "US8986389B2",
    "US8579981B2",
    "US7828849B2",
    "US7850733B2",
    "US7883543B2",
    "US7887595B1",
    "US8105382B2",
    "US20080306557A1",
    "US8864832B2",
    "US8128701B2",
    "US8157865B2",
    "US8382842B2",
    "US20120035729A1",
    "US20130023994A1",
    "US8062375B2",
    "US8636746B2",
    "US8894712B2",
    "US8795366B2",
    "US8894711B2",
    "US20140364917A1",
    "US20110319998A1",
    "US20110319997A1",
    "US20120029635A1",
    "US8480739B2",
    "US20120330421A1",
    "US20120330422A1",
    "US8398713B2",
    "US8932302B2",
    "US20150272746A1",
    "US20140012380A1",
    "US20140163682A1",
    "US20140163683A1",
    "US20140172103A1",
    "US20150351925A1",
    "WO2014116891A1",
    "US20140249628A1",
    "US20140277473A1",
    "US20140277487A1",
    "US20150012097A1",
    "US20150100129A1",
    "US20160296344A1",
    "US20170014240A1",
    "WO2017015165A1"
  ]
}

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