Multiplanar bone anchor system
US-2024023997-A1 · Jan 25, 2024 · US
US9814493B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9814493-B2 |
| Application number | US-90278910-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 12, 2010 |
| Priority date | Oct 12, 2009 |
| Publication date | Nov 14, 2017 |
| Grant date | Nov 14, 2017 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A spine stabilization implant includes a first portion having a first fixed angulated extension, a first rod receiving element and a connecting element. The implant also includes a second portion having a second fixed angulated extension, a second rod receiving element, and a receiving portion for receiving the connecting element of the first portion. The second portion is configured with a locking assembly for locking the first portion and second portion to one another.
Opening claim text (preview).
We claim: 1. A spine stabilization implant comprising: a first portion having a first fixed angulated extension, a first rod receiving element and a connecting element, wherein the first rod receiving element is monolithically formed with the first portion and the first fixed angulated extension, wherein the first fixed angulated extension has a first longitudinal axis and the connecting element has a second longitudinal axis, wherein the first longitudinal axis is at an angle relative to the second longitudinal axis, wherein the first fixed angulated extension is angled upwardly toward an upper surface of the first rod receiving element, and the angle is permanently fixed; a second portion having a second fixed angulated extension, a second rod receiving element, and a receiving portion for receiving the connecting element of the first portion, wherein the connecting element is receivable and rotatable within the receiving portion; wherein the second portion is configured with a locking assembly for locking the first portion and second portion to one another, wherein the first and second rod receiving elements are configured as tulips and comprise first and second locking caps for enclosing first and second elongated rods, wherein the first and second locking caps and the first and second elongated rods are downwardly received in the tulips in the same direction, wherein the first portion and the second portion are configured to be adjustable laterally and rotationally with respect to each other. 2. The spine stabilization implant according to claim 1 , wherein the locking assembly further comprises a set screw. 3. The spine stabilization implant according to claim 1 , wherein the implant is comprised of titanium. 4. The spine stabilization implant according to claim 1 , wherein the implant is comprised of PEEK. 5. The spine stabilization implant according to claim 1 , wherein the locking assembly is a clamp. 6. A spine stabilization system comprising: a cross-connector comprising: a first portion with a first fixed angulated extension, a first rod receiving element and a connecting element, wherein the first rod receiving element is monolithically formed with the first portion and the first fixed angulated extension, wherein the first fixed angulated extension has a first longitudinal axis and the connecting element has a second longitudinal axis, wherein the first longitudinal axis is at an angle relative to the second longitudinal axis, wherein the first fixed angulated extension is configured such that the angle is permanently fixed; a second portion having a second fixed angulated extension, a second rod receiving element, and a receiving portion for receiving the connecting element of the first portion; wherein the first and second rod receiving elements are configured as tulips, wherein each of the tulips includes a first arm, a second arm and a seat therebetween, wherein each of the tulips has an upper portion comprising an upper surface of the first arm and the second arm, and a lower portion comprising the seat, wherein the first angled extension is angled upwardly toward the upper surface of the first rod receiving element, wherein the second portion is configured with a locking assembly for locking the first portion and second portion to one another; a first and second bone anchor coupled to the first and second fixed angulated extensions; a first elongated rod positioned within the seat of the first receiving element and a second elongated rod positioned within the seat of the second receiving element, wherein the first elongated rod is loaded into the first rod receiving element such that the first elongated rod passes the upper surface of the first arm and the second arm of the first rod receiving element before residing in the seat of the first rod receiving element and the second elongated rod is loaded into the second rod receiving element such that the second elongated rod passes the upper surface of the first arm and the second arm of the second rod receiving element before residing in the seat of the second rod receiving element; third and fourth bone anchors adapted to be coupled to the sacrum portion of the spine and configured to capture and retain a portion of the first and second elongated rods, wherein the first and second rod receiving elements comprise first and second locking caps for enclosing the first and second elongated rods, wherein the first and second portions are configured to adjust laterally and rotationally with respect to each other. 7. The spine stabilization system according to claim 6 , wherein the locking assembly further comprises a set screw. 8. The spine stabilization system according to claim 6 , wherein the implant is comprised of titanium. 9. The spine stabilization system according to claim 6 , wherein the cross-connector is comprised of PEEK. 10. The spine stabilization system according to claim 6 , wherein the locking assembly is a clamp. 11. The spine stabilization system according to claim 6 , wherein the first and second rod receiving elements comprise a first and second locking cap for retaining and capturing the first and second elongated rods. 12. A method for stabilizing the spine comprising: positioning a cross-connector across the iliac portion of the spine, the cross connector comprising a first portion with a first fixed angulated extension, a first rod receiving element and a connecting element, wherein the first rod receiving element is monolithically formed with the first portion and the first fixed angulated extension, wherein the first fixed angulated extension has a first longitudinal axis and the connecting element has a second longitudinal axis, wherein the first longitudinal axis is at an angle relative to the second longitudinal axis, wherein the first fixed angulated extension is configured such that the angle is permanently fixed; the cross connector further comprising a second portion having a second fixed angulated extension, a second rod receiving element, and a receiving portion for receiving the connecting element of the first portion wherein the first and second rod receiving elements are configured as tulips, wherein each of the tulips has a first arm and a second arm and an upper portion comprising an upper surface of the first arm and an upper surface of the second arm and a lower portion comprising a seat, wherein the first angled extension is angled upwardly toward the upper surface of the first rod receiving element, wherein the second portion is configured with a locking assembly for locking the first portion and second portion to one another, positioning first and second bone anchors into the iliac crest, the first and second bone anchors being coupled to the first and second fixed angulated extensions; positioning first and second elongated rods within the first and second rod receiving elements, wherein the first elongated rod is loaded into the first rod receiving element such that the first elongated rod passes the upper surface of the first arm and the second arm of the first rod receiving element and the second elongated rod is loaded into the second rod receiving element such that the second elongated rod passes the upper surface of the first arm and the second arm of the second rod receiving element before residing in the seat of the second rod receiving element and positioning third and fourth bone anchors on the sacrum portion of the spine and capturing a portion of the first and second elongated rods, wherein the first and second portions are configured to adjust laterally and rotationally with respect to each other, wherein the first rod receiving element has a
of variable angle or length · CPC title
for linking adjacent ends of longitudinal elements · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.