US2021169540A1PendingUtilityA1
Minimally invasive spinal fusion system and method
Est. expiryAug 20, 2034(~8 yrs left)· nominal 20-yr term from priority
Inventors:James Earl Dix
A61F 2002/30593A61B 17/8805A61B 17/7083A61F 2/4611A61B 17/7098A61B 17/7061A61F 2/442A61F 2/4455A61B 2017/00955A61B 17/00234A61B 2017/00933H05K 999/99
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Claims
Abstract
Disclosed herein are minimally invasive systems and method for stabilizing the spine, while preserving a degree of spinal flexion and extension of the spine at the level of the stabilized vertebrae postoperatively. The systems and methods can include an expandable anchor and rod that span an intervertebral disc. The anchor can have interstices, and ends in two adjacent vertebral bodies. The system can also include a volume of bone cement media.
Claims
exact text as granted — not AI-modified1 - 9 . (canceled)
10 . A method for stabilizing the spine, comprising:
inserting a tubular body into the interior of the a first vertebral body, through an intervertebral disc, and into the interior of a second vertebral body adjacent the first vertebral body; inserting an anchor having interstices through a lumen of the tubular body such that a distal end of the anchor is within the interior of the second vertebral body, a proximal end of the anchor is within the interior of the first vertebral body, and a central portion of the anchor spans the intervertebral disc; flowing a first volume of media into the distal end of the anchor within the interior of the second vertebral body, wherein the media flows through the interstices of the anchor outside the anchor and into the interior of the second vertebral body; flowing a second volume of media into the proximal end of the anchor within the interior of the first vertebral body; and inserting a rod through the central lumen of the tubular body, such that a distal portion of the rod is positioned within the interior of the second vertebral body and in contact with the first volume of media, the proximal portion of the rod is positioned within the interior of the first vertebral body, and a central portion of the rod spans the intervertebral disc, wherein the rod resides at least partially within an interior of the anchor.
11 . The method of claim 10 , comprising:
creating a pedicular access channel in a pedicle to access the interior of a first vertebral body; inserting an introducer cannula into the pedicle; and inserting a hollow needle through a central lumen of the introducer cannula into the interior of the first vertebral body, through an intervertebral disc, and into the interior of a second vertebral body adjacent the first vertebral body;
12 . The method of claim 10 , wherein substantially no media flows within the intervertebral disc.
13 . The method of claim 10 , wherein the method does not involve a discectomy procedure.
14 . The method of claim 10 , wherein the media comprises PMMA.
15 . The method of claim 10 , wherein the first volume of media is between about 1 cc and about 5 cc.
16 . The method of claim 10 , wherein the rod comprises a carbon fiber material.
17 . The method of claim 16 , wherein the carbon fiber material comprises PEEK.
18 . The method of claim 10 , wherein the inserting the anchor step comprises inserting the anchor carried proximate a distal end of a balloon catheter.
19 . The method of claim 10 , wherein the anchor comprises a shape memory material.
20 . The method of claim 10 , wherein following insertion of the rod the first and second volumes of media harden, fixing the anchor and rod in place.
21 . The method of claim 10 , wherein flowing the second volume occurs after inserting the rod, such that the proximal portion of the rod is in contact with the second volume of media after flowing the second volume.
22 . A system for stabilizing the spine, comprising:
an anchor having a proximal end, a distal end, and a central portion, wherein the anchor is sized and configured such that the proximal end of the anchor is configured to reside within the interior of a first vertebrae, the distal end of the anchor is configured to reside within the interior of a second vertebrae adjacent the first vertebrae, and the central portion of the anchor is configured to span an intervertebral disc between the first vertebrae and the second vertebrae, wherein the anchor comprises interstices along an axial length of the anchor; and a rod dimensioned to fit within an interior of the anchor, such that, when implanted, the rod is configured to reside substantially within the anchor, wherein the distal end of the rod is configured to reside within the distal end of the anchor within the interior of the second vertebrae, the proximal end of the rod is configured to reside within the proximal end of the anchor within the interior of the first vertebrae, and the central portion of the anchor is configured to span an intervertebral disc between the first vertebrae and the second vertebrae; wherein the anchor is configured such that when the distal end of the anchor is inserted into the interior of the second vertebrae and a volume of media is injected into the distal end of the anchor, the volume of media can flow through the interstices of the anchor outside the anchor and into the interior of the second vertebrae.
23 . The method of claim 22 , wherein the rod comprises a carbon fiber material.
24 . The system of claim 22 , wherein the rod comprises PEEK.
25 . The method of claim 22 , wherein the anchor is configured such that substantially no media flows within the intervertebral disc.
26 . The method of claim 22 , wherein the anchor comprises a shape memory material.
27 . The system of claim 22 , further comprising a balloon catheter comprising a balloon configured to expand the proximal end and the distal end of the anchor.
28 . A system for stabilizing the spine, comprising:
an anchor having a proximal end, a distal end, and a central portion, wherein the anchor is sized and configured such that the proximal end of the anchor is configured to reside within the interior of a first vertebrae, the distal end of the anchor is configured to reside within the interior of a second vertebrae adjacent the first vertebrae, and the central portion of the anchor is configured to span an intervertebral disc between the first vertebrae and the second vertebrae, wherein the anchor comprises interstices along an axial length of the anchor; and a rod dimensioned to fit within an interior of the anchor, such that, when implanted, the rod is configured to reside substantially within the anchor, wherein the distal end of the rod is configured to reside within the distal end of the anchor within the interior of the second vertebrae, the proximal end of the rod is configured to reside within the proximal end of the anchor within the interior of the first vertebrae, and the central portion of the anchor is configured to span an intervertebral disc between the first vertebrae and the second vertebrae; wherein the anchor is configured such that when the distal end of the anchor is inserted into the interior of the second vertebrae and a volume of media is injected into the distal end of the anchor, the volume of media can flow through the interstices of the anchor outside the anchor and into the interior of the second vertebrae.Join the waitlist — get patent alerts
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