Pedicle-based intradiscal fixation
US-11872140-B2 · Jan 16, 2024 · US
US12558231B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12558231-B2 |
| Application number | US-202318541203-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 15, 2023 |
| Priority date | Apr 12, 2022 |
| Publication date | Feb 24, 2026 |
| Grant date | Feb 24, 2026 |
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Official abstract text for this publication.
Pedicle-based intradiscal fixation devices, systems, instruments, and methods thereof. A pedicle-based intradiscal implant for stabilizing an inferior vertebra and a superior vertebra may include a bendable rod configured to engage bone, a bone fastener defining a channel for receiving the bendable rod, and a locking cap for securing the bone fastener and the bendable rod. The implant may be positioned through a pedicle of an inferior vertebra and the bendable rod may be deployable into the vertebral body of the inferior vertebra, through the disc space, and into the vertebral body of the superior vertebra to stabilize the spine.
Opening claim text (preview).
What is claimed is: 1 . A pedicle-based intradiscal implant comprising: a bendable rod that extends from a proximal end having an outer threaded portion to a distal end configured to engage bone; a bone fastener having a threaded screw head and a cannula extending along a central longitudinal axis configured to receive the bendable rod; and a locking cap with an internally threaded seat for engaging with the screw head of the bone fastener and a central protrusion defining a cavity for receiving the proximal end of the bendable rod. 2 . The intradiscal implant of claim 1 , wherein the locking cap has a cylindrical body defining a drive recess opposite to the internally threaded seat. 3 . The intradiscal implant of claim 1 , wherein the cavity in the central protrusion of the locking cap is non-threaded and is configured to push the rod forward, thereby compressing the rod securely. 4 . The intradiscal implant of claim 1 , wherein the cavity in the central protrusion of the locking cap is threaded and is configured to mate with the outer threaded portion of the bendable rod, thereby pulling the rod backward to secure the rod. 5 . The intradiscal implant of claim 1 , wherein a portion of the cannula is a curved portion located near the distal end of the bone fastener. 6 . The intradiscal implant of claim 1 , wherein the bendable rod is flexible such that the rod has a straight configuration and is bendable into a curved configuration. 7 . The intradiscal implant of claim 6 , wherein in the curved configuration, the bendable rod has a straight portion and a curved portion where the rod is curved in an arc up to 180°. 8 . The intradiscal implant of claim 1 , wherein the bendable rod is formed of a shape-memory material. 9 . The intradiscal implant of claim 8 , wherein the bendable rod is formed of nitinol. 10 . The intradiscal implant of claim 1 , wherein a distal portion of the bendable rod has a polygonal cross-section with planar faces and a proximal portion of the bendable rod has a cylindrical shape. 11 . The intradiscal implant of claim 1 , wherein the bone fastener is a pedicle screw with a proximal end including a recess configured to receive an instrument for inserting the pedicle screw and a distal end with a tip configured to be inserted into the pedicle of an inferior vertebra. 12 . A hybrid implant comprising: a bendable rod configured to engage bone; a bone fastener having a threaded screw head and a cannula extending along a central longitudinal axis configured to receive the bendable rod; a locking cap with an internal seat for engaging with the screw head of the bone fastener and a central protrusion defining a cavity for receiving one end of the bendable rod; and a tulip head coupled to the locking cap, the tulip head having a body with a pair of opposed arms defining a rod slot sized and configured to accept a spinal rod. 13 . The implant of claim 12 , wherein the tulip head is integrally coupled to the locking cap with a rigid arm. 14 . The implant of claim 12 , wherein the tulip head is offset laterally to the locking cap. 15 . The implant of claim 12 , wherein the rod slot of the tulip head is aligned in parallel to the bendable rod. 16 . The implant of claim 12 , wherein the screw head is externally threaded and the internal seat of the locking cap is internally threaded to thereby threadedly interface with the screw head. 17 . The intradiscal implant of claim 12 , wherein a portion of the cannula is a curved portion located near the distal end of the bone fastener. 18 . The intradiscal implant of claim 12 , wherein the bendable rod is flexible such that the rod has a straight configuration and is bendable into a curved configuration. 19 . The intradiscal implant of claim 18 , wherein in the curved configuration, the bendable rod has a straight portion and a curved portion where the rod is curved in an arc up to 180°. 20 . The intradiscal implant of claim 12 , wherein the bendable rod is formed of a shape-memory material.
Longitudinal element being non-straight, e.g. curved, angled or branched (adjustable length longitudinal elements A61B17/7014; A61B17/7019 takes precedence, e.g. coil springs) · CPC title
Titanium or titanium-based alloys, e.g. Ti-Ni alloys · CPC title
with a threaded, e.g. self-tapping, bone-engaging surface, e.g. external surface · CPC title
using a threaded locking member, e.g. a locking screw or a set screw · CPC title
tubular, e.g. sleeves · CPC title
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