Spinal correction adjustment systems and methods

US2016151096A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016151096-A1
Application numberUS-201314436817-A
CountryUS
Kind codeA1
Filing dateOct 17, 2013
Priority dateOct 17, 2012
Publication dateJun 2, 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.

A system provides for lateral translational corrective force(s) and/or derotational corrective force(s) on a spinal column and includes highly adaptive hardware for connecting the system to the spinal column, where the hardware facilitates a more natural range of motion within pre-selected limits and application of such lateral translational and/or derotational corrective force(s). The upper and lower vertebral segments retain freedom of movement while an apical or restricted segment is restricted from relative vertebral movement. A central segment controls primary rod roll while the rod is free to change in pitch, yaw and roll at the upper (superior) and lower (inferior) segments.

First claim

Opening claim text (preview).

1 . A coupler for an implantable spinal correction system, the coupler comprising: a first connector configured for securement to a first stabilizing member; a second connector configured for securement to at least one of a vertebral anchor or a second stabilizing member; a first slide member having a central bore and being connected to the first connector; a second slide member having a central bore and being connected to the second connector and telescopically received within the central bore of the first slide member; a drive member extending through the central bores of the first and second slide members; an actuator coupled with the drive member such that rotation of the actuator causes rotation of the drive member resulting in relative, longitudinal movement between the first and second slide members. 2 . The coupler of claim 1 , wherein the drive member and the actuator are configured such that the drive member and the actuator automatically lock relative longitudinal movement between the first and second slide members when the actuator is not under an external rotational force. 3 . The coupler of claim 1 , wherein the drive member is a cylindrical member with a threaded exterior surface. 4 . The coupler of claim 1 , wherein the drive member has a first end and includes a gear at the first end and the actuator includes external threads mated with the gear of the drive member. 5 . The coupler of claim 1 , wherein the actuator is rotated manually. 6 . The coupler of claim 1 , wherein the actuator is rotated with a power source. 7 . The coupler of claim 1 , wherein the actuator is rotated non-percutaneously. 8 . The coupler of claim 1 , wherein the first connector has a saddle-shaped receptacle for receiving the first stabilizing member that substantially prevents lateral movement of the first stabilizing member and prevents roll of the first stabilizing member with respect to the first connector. 9 . The coupler of claim 1 , wherein the first connector is a polyaxial joint for receiving the first stabilizing member that substantially prevents lateral movement of the first stabilizing member and prevents roll of the first stabilizing member while allowing the first stabilizing member to change in pitch, yaw and axial slide with respect to the first connector. 10 . The coupler of claim 1 , wherein the second connector is a polyaxial joint that substantially prevents lateral movement of the second stabilizing member while allowing the second stabilizing member to change in at least roll. 11 . The coupler of claim 1 , wherein the second connector is a polyaxial joint that substantially prevents lateral movement of the vertebral anchor while allowing the vertebral body anchor to change in pitch, yaw and roll with respect to the second connector. 12 . The coupler of claim 1 , wherein the second connector is configured for securement to the vertebral anchor and the second stabilizing member. 13 . The coupler of claim 1 , wherein the second connector has a saddle-shaped receptacle for receiving the second stabilizing member. 14 . The coupler of claim 1 , wherein the first slide member includes female threading at the central bore of the first slide member. 15 . The coupler of claim 1 , wherein the second slide member includes female threading at the central bore of the second slide member. 16 . A system for spinal correction comprising: a first stabilizing member for extending along a first side of a spine of a patient; a first stabilizing anchor for being secured at a superior spinal region on the first side of the spine and for receiving the first stabilizing member such that the first stabilizing member is able to change in pitch, yaw, and roll relative to the first stabilizing anchor while being substantially laterally constrained relative to the first stabilizing anchor; a second stabilizing anchor for being secured at an inferior spinal region on the first side of the spine and for receiving the first stabilizing member such that the first stabilizing member is able to change in pitch, yaw, and roll relative to the second stabilizing anchor while being substantially laterally constrained relative to the second stabilizing anchor; a second stabilizing member for extending along a second side of a spine of a patient; a lateral coupler for coupling the first and second stabilizing members, the lateral coupler including: a first connector configured for securement to the first stabilizing member that substantially prevents lateral movement of the first stabilizing member and prevents roll of the first stabilizing member with respect to the first connector; a second connector configured for securement to at least one of a vertebral anchor or the second stabilizing member, the second connector substantially preventing lateral movement of the vertebral anchor or the second stabilizing member; a first slide member connected to the first connector; a second slide member connected to the second connector and telescopically received within the first slide member; a first vertebral anchor for being secured to the second side of the spine and including a transverse arm including a terminal end extending away from the second side of the spine toward the first side of the spine; and an adjustment mechanism for being secured to the first stabilizing anchor and exerting a correction force on the first vertebral anchor, the adjustment mechanism configured to be secured to the terminal end of the transverse arm of the first vertebral anchor to define an effective length between the adjustment mechanism and the first vertebral anchor, the adjustment mechanism being further configured to shorten the effective length to exert the correction force. 17 . The system of claim 16 , wherein the first vertebral anchor includes a receptacle for receiving the second stabilizing member, the receptacle being configured to be selectively locked to the second stabilizing member such that the second stabilizing member is substantially prevented from changing in pitch, yaw, and roll relative to the receptacle and is laterally constrained by the receptacle. 18 . The system of claim 16 , wherein the lateral coupler is configured to allow, at a minimum, roll of the second stabilizing member. 19 . The system of claim 16 , wherein the first vertebral anchor includes a fastener portion configured to provide a polyaxial connection to a vertebral fastener. 20 . The system of claim 19 , wherein the lateral coupler is configured as an adjuster, the lateral coupler further including: a drive member extending through the first and second slide members; and an actuator coupled with the drive member such that rotation of the actuator causes rotation of the drive member resulting in relative, longitudinal movement between the first and second slide members. 21 . The system of claim 20 , wherein the drive member and the actuator are configured such that the drive member and the actuator automatically lock relative longitudinal movement between the first and second slide members when the actuator is not under an external rotational force. 22 . The system of claim 16 , wherein the first slide member is substantially prevented from axial rotation relative to the second slide member. 23 . A method of correcting a spinal defect, comprising: extending a first stabilizing member along a first side of a spine of a patient; securing a first stabilizing anchor at a sup

Assignees

Inventors

Classifications

  • with single longitudinal rod offset laterally from single row of screws or hooks (A61B17/7044 takes precedence) · CPC title

  • of variable angle or length · CPC title

  • Screws or hooks combined with longitudinal elements which do not contact vertebrae (A61B17/7058 takes precedence) · CPC title

  • with parts attached to bones or to each other by flexible wires, straps, sutures or cables · CPC title

  • with means for adjusting the distance between two screws or hooks · CPC title

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What does patent US2016151096A1 cover?
A system provides for lateral translational corrective force(s) and/or derotational corrective force(s) on a spinal column and includes highly adaptive hardware for connecting the system to the spinal column, where the hardware facilitates a more natural range of motion within pre-selected limits and application of such lateral translational and/or derotational corrective force(s). The upper an…
Who is the assignee on this patent?
K2M Inc
What technology area does this patent fall under?
Primary CPC classification A61B17/7052. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Thu Jun 02 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).