Systems and apparatuses for securing an implant in intervertebral space

US2016120657A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016120657-A1
Application numberUS-201614991191-A
CountryUS
Kind codeA1
Filing dateJan 8, 2016
Priority dateSep 15, 2006
Publication dateMay 5, 2016
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Systems and tools for inserting and securing an implant within the intervertebral space. An intervertebral disc implant with upper and lower bearing members with an articulation interface between the members for providing relative motion therebetween. The implant may be provided with various securing members for fixing the implant within the intervertebral space. A tool may be used to insert the implant, which includes a plurality of shiftable implant engaging members that are shiftable between non-engaging and engaging configurations to alternatively release or hold the implant.

First claim

Opening claim text (preview).

What is claimed is: 1 . An intervertebral disc implant for being inserted between adjacent upper and lower vertebral bones, comprising: an upper bearing member; a lower bearing member; a body of the upper bearing member having an outer bearing surface for being disposed adjacent the upper vertebral bone; a body of the lower bearing member having an outer bearing surface for being disposed adjacent the lower vertebral bone; an articulation interface between the upper and lower bearing members for allowing relative movement therebetween with the bearing members configured to fit in an intervertebral space between upper and lower vertebral bones; a rotary securing member rotatably mounted to one of the bearing members to be carried by the one bearing member, so that the rotary securing member extends along the outer bearing surface of the one bearing member prior to being inserted into the intervertebral space, and is inserted together with the one bearing member into the intervertebral space, and after insertion of the rotary securing member and the one bearing member into the intervertebral space, the rotary securing member is arranged for being rotated for securing the one bearing member to the adjacent vertebral bone; a rotary shaft of the securing member having a longitudinal axis; and a plurality of spaced-apart plate-like bone-engaging portions extending generally transversely from the rotary shaft such that rotation of the rotary shaft about the longitudinal axis causes a corresponding rotation of the bone engaging portions about the longitudinal axis to allow the rotary shaft of the rotary securing member to be rotated from an undeployed orientation with the bone-engaging portions out of engagement with the adjacent vertebral bone and a deployed orientation with the bone-engaging portions in imbedded engagement with the adjacent vertebral bone. 2 . The intervertebral disc implant of claim 2 , wherein the plurality of spaced plate-like bone-engaging portions include first, second, and third bone-engaging portions each fixedly disposed on the rotary shaft and spaced apart along the longitudinal axis from the other bone engaging portions for engaging with the adjacent vertebral bone to secure the one bearing member relative thereto. 3 . The intervertebral disc implant of claim 1 , wherein when in the undeployed orientation, the plurality of bone-engaging portions are disposed within the body of the one bearing member such that they do not protrude outside of the outer bearing surface thereof. 4 . The intervertebral disc implant of claim 1 , wherein the body includes a plurality of spaced apart recesses sized and configured to receive the corresponding plurality of bone-engaging portions when the bone-engaging portions are in the undeployed orientation. 5 . The intervertebral disc implant of claim 1 , wherein the plate-like bone-engaging portions each comprise a leading cutting edge that extends outwardly from the rotary shaft for cutting into the adjacent vertebral bone as the bone-engaging portion is rotated into the deployed orientation to create a groove in the adjacent vertebral bone sized to fit the bone-engaging portion therein. 6 . The intervertebral disc implant of claim 1 , wherein the plurality of plate-like bone-engaging portions extend transversely to the longitudinal axis of the rotary shaft and are parallel to one another. 7 . The intervertebral disc implant of claim 1 , wherein the securing member is connected to the one bearing member via a friction fit. 8 . The intervertebral disc implant of claim 1 , further comprising a securing member receiving portion of the outer bearing surface of the one bearing member having at least one pair of opposed arms having opposing inner arcuate surface portions for retaining the rotary shaft therebetween with a friction fit. 9 . The intervertebral disc implant of claim 8 , wherein the securing member receiving portion includes at least two pairs of opposed arms for retaining the securing member therebetween, wherein one of the plurality of bone-engaging portions is disposed between the two pairs of opposed arms for providing a path for which the bone engaging member may travel between the undeployed and the deployed orientations. 10 . The intervertebral disc implant of claim 1 , wherein at least one securing member is disposed on each of the upper and lower bearing members for fixing the bearing members relative to the adjacent vertebral bones. 11 . The intervertebral disc implant of claim 1 , wherein the plurality of bone-engaging portions are formed on the rotary shaft, such that each rotary securing member is monolithic. 12 . The intervertebral disc implant of claim 1 , wherein each of the plurality of plate-like bone-engaging portions has opposing side portions extending transversely from the rotary shaft and a distal arc-shaped edge portion spaced from the rotary shaft at an outermost extent of the opposing side portions. 13 . The intervertebral disc implant of claim 12 , wherein the distal arc-shaped edge portion subtends an angle of at least 90 degrees. 14 . An intervertebral disc implant, comprising: an upper bearing member; a lower bearing member; a body of the upper bearing member having an outer bearing surface for being disposed adjacent the upper vertebral bone; a body of the lower bearing member having an outer bearing surface for being disposed adjacent the lower vertebral bone; an articulation interface between the upper and lower bearing members for allowing relative movement therebetween; a rotary securing member rotatably mounted to one of the bearing members for being rotated for securing the one bearing member to the adjacent vertebral bone; a rotary shaft of the securing member having a longitudinal axis; and a securing member receiving portion of the one bearing member having at least one pair of opposed arms extending outwardly from the outer bearing surface and a gap between the at least one pair of opposed arms for receiving the rotary shaft therein with the at least one pair of opposed arms retaining the securing member therebetween with a friction fit. 15 . The intervertebral disc implant of claim 14 , wherein the securing member includes a plate-like bone-engaging portion extending from the rotary shaft configured to be rotated from an undeployed orientation with the bone-engaging portion disposed within the body of the bearing member and out of engagement with the adjacent vertebral bone and a deployed orientation with the bone-engaging portion in engagement with the adjacent vertebral bone and the bone-engaging portion being configured such that rotation of the rotary shaft from the undeployed orientation to the deployed orientation does not cause the rotary shaft to advance along the longitudinal axis thereof and the outer bearing surface. 16 . The intervertebral disc implant of claim 14 , wherein the rotary shaft is configured to be rotated approximately 180 degrees from the undeployed orientation to the deployed orientation. 17 . The intervertebral disc implant of claim 14 , wherein the securing member receiving portion further comprises a second pair of opposed arms extending from the outer bearing surface having a gap therebetween for receiving the rotary shaft therein with the second pair of opposed arms retaining the securing member therebetween with a friction fit, the second pair of opposed arms spaced along the longitudinal axis of the rotary shaft from the at least one pair of opposed arms. 18 . The intervertebral implant

Assignees

Inventors

Classifications

  • with cutting edges · CPC title

  • A61F2/4425Primary

    made of articulated components · CPC title

  • made by laterally inserting a protrusion, e.g. a rib into a complementarily-shaped groove · CPC title

  • Rounded shapes, e.g. with rounded corners · CPC title

  • Snap connection · CPC title

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What does patent US2016120657A1 cover?
Systems and tools for inserting and securing an implant within the intervertebral space. An intervertebral disc implant with upper and lower bearing members with an articulation interface between the members for providing relative motion therebetween. The implant may be provided with various securing members for fixing the implant within the intervertebral space. A tool may be used to insert th…
Who is the assignee on this patent?
Pioneer Surgical Tech Inc
What technology area does this patent fall under?
Primary CPC classification A61F2/4425. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Thu May 05 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).