IP Library › Granted Patent US 12,076,251
Granted Patent B2
US 12,076,251 · App. 17/649,296 · Granted Sep 3, 2024

Implants for spinal fixation and or fusion

Inventors: Ali H. Mesiwala (Claremont, CA); Mark A. Reiley (Delray Beach, FL); Paul M. Sand (Redwood City, CA); Bret W. Schneider (San Jose, CA); Scott A. Yerby (Montara, CA); Christopher I. Shaffrey (Durham, NC); Robert K. Eastlack (La Jolla, CA); Juan S. Uribe (Paradise Valley, AZ); Isador H. Lieberman (Plano, TX); Frank M. Phillips (Chicago, IL); David W. Polly (Edina, MN); Phillip J. Singer (Bowling Green, KY); Jeffrey B. Phelps (North Richland Hills, TX); Derek P. Lindsey (San Jose, CA); Patrick Kahn (Livermore, CA); Nikolas F. Kerr (Milpitas, CA); Francois Follini (Santa Clara, CA)
Assignee: SI-Bone Inc.
A61F2/4455A61B17/7055A61F2/28A61F2/30771A61F2/442A61B17/0218A61B17/025A61B2017/0256A61F2002/2835A61F2002/3085A61F2/4611
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Quick Facts
Patent No.
US 12,076,251
App. No.
17/649,296
Granted
Sep 3, 2024
Kind
B2
Abstract

Bone implants, including methods of use and assembly. The bone implants, which are optionally composite implants, generally include a distal anchoring region and a growth region that is proximal to the distal anchoring region. The distal anchoring region can have one or more distal surface features that adapt the distal anchoring region for anchoring into iliac bone. The growth region can have one or more growth features that adapt the growth region to facilitate at least one of bony on-growth, in-growth, or through-growth. The implants may be positioned along a posterior sacral alar-iliac (“SAI”) trajectory. The implants may be coupled to one or more bone stabilizing constructs, such as rod elements thereof.

Claims (19)

1. A method of stabilizing a sacroiliac (“SI”) joint with a composite implant, the method comprising:

rotationally advancing a composite implant along a posterior sacral alar-iliac (“SAI”) trajectory, the composite implant including an outer sleeve disposed about a monolithic inner shank with a distal inner thread of the outer sleeve interfaced with a distal outer thread of the inner shank,

the distal outer thread of the inner shank extending distally relative to a distal end of the outer sleeve, and

the outer sleeve comprising an outer sleeve thread in the same direction and continuous with the distal outer thread of the inner shank at the distal end of the outer sleeve, and a growth region that comprises a plurality of surface growth features that are sized and configured to facilitate at least one of bony on-growth, in-growth, or through-growth; and

rotationally advancing the composite implant through the sacrum, across the SI joint, and into the ilium such that the distal outer thread of the inner shank is anchored in the ilium and such that the outer sleeve is implanted across the SI joint and into the sacrum with the growth region of the outer sleeve disposed across the SI joint.

2. The method of claim 1 , wherein the outer sleeve is a 3D printed outer sleeve, and wherein the monolithic inner shank is more resistant to fatigue than the 3D printed outer sleeve.

3. The method of claim 2 , wherein the monolithic inner shank is machined.

4. The method of claim 1 , wherein rotationally advancing the composite implant through the sacrum, across the SI joint, and into the ilium comprises anchoring the distal threaded region of the inner shank in a tear-drop shaped region of the ilium.

5. The method of claim 1 , wherein rotationally advancing a composite implant along a posterior SAI trajectory comprises advancing the composite implant along a posterior second sacral alar-iliac (“S2AI”) trajectory with a bony entry point between a S1 and a S2 foramen.

6. A method of stabilizing a sacroiliac (“SI”) joint with a composite implant, the method comprising:

rotationally advancing a composite implant along a posterior sacral alar-iliac (“SAI”) trajectory, the composite implant including an outer sleeve disposed about a monolithic inner shank with a distal inner thread of the outer sleeve interfaced with a distal outer thread of the inner shank in an implant region where an outer sleeve minor diameter tapers distally and an inner shank minor diameter tapers distally,

the outer sleeve comprising one or more outer threads that are in the same direction as the distal outer thread of the inner shank; and

rotationally advancing the composite implant through the sacrum, across the SI joint, and into the ilium such that the region where the outer sleeve minor diameter tapers distally is anchored in the ilium and such that a growth region of the outer sleeve disposed across the SI joint.

7. A method of stabilizing a sacroiliac (“SI”) joint with a composite implant, the method comprising:

rotationally advancing a composite implant along a posterior sacral alar-iliac (“SAI”) trajectory, the composite implant including

an outer sleeve disposed about a monolithic inner shank,

a distal outer thread of the inner shank extending distally relative to a sleeve distal end, and

an outer sleeve distal thread that is continuous with the distal outer thread of the inner shank in a region of the implant an outer sleeve minor diameter tapers distally and an inner shank minor diameter tapers distally; and

rotationally advancing the composite implant through the sacrum, across the SI joint, and into the ilium such that the distal outer thread of the inner shank is anchored in the ilium and such that a growth region of the outer sleeve disposed across the SI joint.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2022
From: MESIWALA, ALI H.; REILEY, MARK A.; SAND, PAUL M.; SCHNEIDER, BRET W.; YERBY, SCOTT A.; SHAFFREY, CHRISTOPHER I.; EASTLACK, ROBERT K.; URIBE, JUAN S.; LIEBERMAN, ISADOR H.; PHILLIPS, FRANK M.; POLLY, DAVID W.; SINGER, PHILLIP J.; PHELPS, JEFFREY B.; LINDSEY, DEREK P.; KAHN, PATRICK; KERR, NIKOLAS F.; FOLLINI, FRANCOIS
To: SI-BONE INC.
Reel/Frame 059816/0952 →
Continuity (6)
Continuation 16874149 · May 14, 2020
Continuation PCTUS2020018402 · Feb 14, 2020
Continuation 16276430 · Feb 14, 2019
Provisional Application 62859646 · Jun 10, 2019
Provisional Application 62933250 · Nov 8, 2019
Related Publication 20220354665A1 · Nov 10, 2022
Cited By (6)
US 12,433,733 US 12,616,587 US 12,653,682 US 12,661,159 US 12,661,239 US 12,708,415