MLchartDataset catalogue

Patent · US10322007B2 · B2 · US

Expandable spinal fusion cage

(11) Publication number
US10322007B2
(21) Application number
15/213,477
(22) Filing date
2016-07-19
(30) Priority date
2013-05-10
(43) Publication date
2019-06-18
(45) Date of grant
2019-06-18
(51) IPC
A61F 2/44; A61B 17/86
(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: 2/446, 2/4455, 2/4611, 2002/30092, 2002/30093, 2002/30224, 2002/3023, 2002/30289, 2002/30387, 2002/30405, 2002/30411, 2002/30433, 2002/30484, 2002/30545, 2002/30556, 2002/30568, 2002/30579, 2002/30622, 2002/30884, 2002/30891, 2002/30904, 2220/0016, 2310/00023
  • A61B Diagnosis; surgery; identification: 17/70, 17/863
(73) Assignee
Sidewinder Medical Products LLC
(72) Inventors
Robert Masson; James Scott Hay; Ryan Singh
(54) Title
Expandable spinal fusion cage
(57) Abstract

A device, system, and method for performing a spinal procedure. The device includes first and second shape-memory outer platforms, the outer platforms expanding at a temperature greater than the transformative temperature, a core member having first and second expansion bodies and first and second wedge members, the first expansion body being coupled to the first outer platform and the second expansion body being coupled to the second outer platform, and a screw rotatably disposed within the core member, the screw passing through at least a portion of each of the first and second wedge members. Rotation of the screw causes the first and second wedge members to move toward each other and the first and second expansion bodies to move away from each other. Thus, reaching a transformation temperature and rotating the screw expands the device to come in contact with and anchored against both of the adjacent vertebrae.

Full text
View on Google Patents

Claims (19)

  1. An intervertebral medical device, the medical device comprising: a core member; a first outer plate and a second outer plate, each of the first and second outer plates being coupled to at least a portion of the core member, wherein the first and second outer plates are composed of a shape memory material, the first and second outer plates being transitionable between a non-expanded, substantially tubular configuration and an expanded, substantially planar configuration; and a rotational screw mechanism at least partially disposed within the core member and operable to selectively adjust a distance between the first and second outer plates.
  2. The medical device of claim 1, wherein the first and second outer plates transition to the expanded configuration when the temperature of the first and second outer plates is greater than a transformative temperature of the shape memory material.
  3. The medical device of claim 2, wherein the transformative temperature is less than the human body temperature of approximately 37 degrees Celsius.
  4. The medical device of claim 1, further comprising at least one locking component configured to maintain a distance between the first and second outer plates in the expanded, substantially planar position.
  5. The medical device of claim 4, wherein the at least one locking component is mechanically actuated by the rotational screw mechanism.
  6. The medical device of claim 1, further comprising a plurality of fingers extending from a circumference of each of the first and second outer plates configured to anchor the medical device to adjoining vertebral tissue.
  7. The medical device of claim 1, wherein at least one of the first and second outer plates includes a plurality of protrusions on an external surface thereof to enhance a gripping characteristic of the device.
  8. The medical device of claim 1, wherein a distance between the first and second outer plates can be selectively adjusted to increase or decrease an overall height of the medical device.
  9. A medical device for insertion between two adjacent vertebrae, the device comprising: a first outer platform and a second outer platform, wherein a distance between the first and second outer platform is selectively adjustable by a rotational screw mechanism to increase or decrease an overall height of the medical device, wherein each of the first and second outer platforms is composed of a shape-memory material having a transformative temperature, the device having a first, substantially tubular configuration at a first temperature less than the transformative temperature and having a second configuration different from the first configuration at a second temperature greater than the transformative temperature.
  10. The medical device of claim 9, wherein the transformative temperature is less than the human body temperature of approximately 37 degrees Celsius.
  11. The medical device of claim 9, further comprising at least one locking component configured to maintain a distance between the first and second outer plates in the second configuration, wherein the at least one locking component is mechanically actuated by the rotational screw mechanism.
  12. A method of implanting a medical device, comprising: implanting the medical device between two vertebral bodies, wherein the medical device comprises: a core member; and a first outer plate and a second outer plate, each of the first and second outer plates being coupled to at least a portion of the core member, wherein the first and second outer plates are composed of a shape memory material having a transformative temperature, wherein the first and second outer plates transition from a non-expanded, substantially tubular configuration to an unfurled, substantially planar configuration at the transformative temperature; and adjusting a distance between the first and second outer plates by rotationally engaging a portion of the medical device with an external instrument.
  13. The method of claim 12, wherein the transformative temperature is less than the human body temperature of approximately 37 degrees Celsius.
  14. The method of claim 13, wherein implanting the medical device results in the first and second outer plates transitioning from the non-expanded, substantially tubular configuration to the unfurled, substantially planar configuration.
  15. The method of claim 14, wherein adjusting a distance between the first and second outer plates includes at least one of increasing or decreasing an overall height of the medical device.
  16. The method of claim 15, further comprising engaging a locking element of the medical device to prevent the first and second outer plates from moving towards each other.
  17. The method of claim 14, further comprising mechanically reinforcing a distance between the first and second outer plates in the unfurled, substantially planar configuration.
  18. The method of claim 12, wherein implanting the medical device includes inserting and positioning the medical device between the two vertebral bodies through a lateral transpsoas retroperitoneal approach.
  19. The method of claim 12, wherein the medical device further comprises a plurality of protrusions on an external surface of at least one of first and second outer plates includes to enhance a gripping characteristic of the medical device.

Description

The present invention relates to a method, system, and device for performing spinal fusion procedures with minimal anatomical manipulation. Specifically, the present invention relates to a method, system, and device for preparing an intervertebral space for spinal fusion or other medical procedure, implanting a device such as an expandable spine cage, and/or introducing and depositing material such as bone graft material, stem cells, antibiotic, and the like to an intervertebral space.

Spinal fusion (also called spondylodesis or spondylosyndesis) is a surgical procedure by which two or more adjacent vertebrae are joined or fused together. This method is primarily used to reduce or eliminate pain caused by abnormal motion of the vertebrae from conditions such as scoliosis, degenerative disc disease, spondylolisthesis, kyphosis, spinal stenosis, fractures, infections, tumors, and other degenerative spinal conditions or conditions that cause instability of the spine.

In interbody fusion, a commonly performed type of spinal fusion, a medical device called an interbody fusion cage or spine cage is surgically inserted between adjacent vertebrae to maintain spine alignment and disc height. Additionally, graft material harvested from the patient (autograft) or from a donor (allograft) is inserted into the intervertebral space with the spine cage to encourage the natural osteoblastic process and resulting fusion between the endplates of the vertebrae. Pedicle screws may also be used to augment the fusion.

Citations (4)

  • US6019793A
  • US6656178B1
  • US20050222683A1
  • US8523944B2
Record as JSON
{
  "publication_number": "US10322007B2",
  "country": "US",
  "kind": "B2",
  "title": "Expandable spinal fusion cage",
  "abstract": "A device, system, and method for performing a spinal procedure. The device includes first and second shape-memory outer platforms, the outer platforms expanding at a temperature greater than the transformative temperature, a core member having first and second expansion bodies and first and second wedge members, the first expansion body being coupled to the first outer platform and the second expansion body being coupled to the second outer platform, and a screw rotatably disposed within the core member, the screw passing through at least a portion of each of the first and second wedge members. Rotation of the screw causes the first and second wedge members to move toward each other and the first and second expansion bodies to move away from each other. Thus, reaching a transformation temperature and rotating the screw expands the device to come in contact with and anchored against both of the adjacent vertebrae.",
  "claims": [
    "1. An intervertebral medical device, the medical device comprising: a core member; a first outer plate and a second outer plate, each of the first and second outer plates being coupled to at least a portion of the core member, wherein the first and second outer plates are composed of a shape memory material, the first and second outer plates being transitionable between a non-expanded, substantially tubular configuration and an expanded, substantially planar configuration; and a rotational screw mechanism at least partially disposed within the core member and operable to selectively adjust a distance between the first and second outer plates.",
    "2. The medical device of claim 1, wherein the first and second outer plates transition to the expanded configuration when the temperature of the first and second outer plates is greater than a transformative temperature of the shape memory material.",
    "3. The medical device of claim 2, wherein the transformative temperature is less than the human body temperature of approximately 37 degrees Celsius.",
    "4. The medical device of claim 1, further comprising at least one locking component configured to maintain a distance between the first and second outer plates in the expanded, substantially planar position.",
    "5. The medical device of claim 4, wherein the at least one locking component is mechanically actuated by the rotational screw mechanism.",
    "6. The medical device of claim 1, further comprising a plurality of fingers extending from a circumference of each of the first and second outer plates configured to anchor the medical device to adjoining vertebral tissue.",
    "7. The medical device of claim 1, wherein at least one of the first and second outer plates includes a plurality of protrusions on an external surface thereof to enhance a gripping characteristic of the device.",
    "8. The medical device of claim 1, wherein a distance between the first and second outer plates can be selectively adjusted to increase or decrease an overall height of the medical device.",
    "9. A medical device for insertion between two adjacent vertebrae, the device comprising: a first outer platform and a second outer platform, wherein a distance between the first and second outer platform is selectively adjustable by a rotational screw mechanism to increase or decrease an overall height of the medical device, wherein each of the first and second outer platforms is composed of a shape-memory material having a transformative temperature, the device having a first, substantially tubular configuration at a first temperature less than the transformative temperature and having a second configuration different from the first configuration at a second temperature greater than the transformative temperature.",
    "10. The medical device of claim 9, wherein the transformative temperature is less than the human body temperature of approximately 37 degrees Celsius.",
    "11. The medical device of claim 9, further comprising at least one locking component configured to maintain a distance between the first and second outer plates in the second configuration, wherein the at least one locking component is mechanically actuated by the rotational screw mechanism.",
    "12. A method of implanting a medical device, comprising: implanting the medical device between two vertebral bodies, wherein the medical device comprises: a core member; and a first outer plate and a second outer plate, each of the first and second outer plates being coupled to at least a portion of the core member, wherein the first and second outer plates are composed of a shape memory material having a transformative temperature, wherein the first and second outer plates transition from a non-expanded, substantially tubular configuration to an unfurled, substantially planar configuration at the transformative temperature; and adjusting a distance between the first and second outer plates by rotationally engaging a portion of the medical device with an external instrument.",
    "13. The method of claim 12, wherein the transformative temperature is less than the human body temperature of approximately 37 degrees Celsius.",
    "14. The method of claim 13, wherein implanting the medical device results in the first and second outer plates transitioning from the non-expanded, substantially tubular configuration to the unfurled, substantially planar configuration.",
    "15. The method of claim 14, wherein adjusting a distance between the first and second outer plates includes at least one of increasing or decreasing an overall height of the medical device.",
    "16. The method of claim 15, further comprising engaging a locking element of the medical device to prevent the first and second outer plates from moving towards each other.",
    "17. The method of claim 14, further comprising mechanically reinforcing a distance between the first and second outer plates in the unfurled, substantially planar configuration.",
    "18. The method of claim 12, wherein implanting the medical device includes inserting and positioning the medical device between the two vertebral bodies through a lateral transpsoas retroperitoneal approach.",
    "19. The method of claim 12, wherein the medical device further comprises a plurality of protrusions on an external surface of at least one of first and second outer plates includes to enhance a gripping characteristic of the medical device."
  ],
  "description_excerpt": "n/a\n\nThe present invention relates to a method, system, and device for performing spinal fusion procedures with minimal anatomical manipulation. Specifically, the present invention relates to a method, system, and device for preparing an intervertebral space for spinal fusion or other medical procedure, implanting a device such as an expandable spine cage, and/or introducing and depositing material such as bone graft material, stem cells, antibiotic, and the like to an intervertebral space.\n\nSpinal fusion (also called spondylodesis or spondylosyndesis) is a surgical procedure by which two or more adjacent vertebrae are joined or fused together. This method is primarily used to reduce or eliminate pain caused by abnormal motion of the vertebrae from conditions such as scoliosis, degenerative disc disease, spondylolisthesis, kyphosis, spinal stenosis, fractures, infections, tumors, and other degenerative spinal conditions or conditions that cause instability of the spine.\n\nIn interbody fusion, a commonly performed type of spinal fusion, a medical device called an interbody fusion cage or spine cage is surgically inserted between adjacent vertebrae to maintain spine alignment and disc height. Additionally, graft material harvested from the patient (autograft) or from a donor (allograft) is inserted into the intervertebral space with the spine cage to encourage the natural osteoblastic process and resulting fusion between the endplates of the vertebrae. Pedicle screws may also be used to augment the fusion.",
  "cpc": [
    "A61F 2/446",
    "A61B 17/70",
    "A61B 17/863",
    "A61F 2/4455",
    "A61F 2/4611",
    "A61F 2002/30092",
    "A61F 2002/30093",
    "A61F 2002/30224",
    "A61F 2002/3023",
    "A61F 2002/30289",
    "A61F 2002/30387",
    "A61F 2002/30405",
    "A61F 2002/30411",
    "A61F 2002/30433",
    "A61F 2002/30484",
    "A61F 2002/30545",
    "A61F 2002/30556",
    "A61F 2002/30568",
    "A61F 2002/30579",
    "A61F 2002/30622",
    "A61F 2002/30884",
    "A61F 2002/30891",
    "A61F 2002/30904",
    "A61F 2220/0016",
    "A61F 2310/00023"
  ],
  "ipc": [
    "A61F 2/44",
    "A61B 17/86"
  ],
  "assignees": [
    "Sidewinder Medical Products LLC"
  ],
  "inventors": [
    "Robert Masson",
    "James Scott Hay",
    "Ryan Singh"
  ],
  "filing_date": "2016-07-19",
  "publication_date": "2019-06-18",
  "grant_date": "2019-06-18",
  "priority_date": "2013-05-10",
  "application_number": "US-201615213477-A",
  "family_id": "51865355",
  "cited_by_count": 35,
  "citations": [
    "US6019793A",
    "US6656178B1",
    "US20050222683A1",
    "US8523944B2"
  ]
}

Record 2,761 of 8,000 in Patents full text (MLC-0201). Request the full dataset.