Combination double-barreled and debranching stent grafts and methods for use
US-9949818-B2 · Apr 24, 2018 · US
US11096775B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11096775-B2 |
| Application number | US-201916502462-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 3, 2019 |
| Priority date | Jul 3, 2019 |
| Publication date | Aug 24, 2021 |
| Grant date | Aug 24, 2021 |
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The techniques of this disclosure generally relate to an assembly including a single multibranch stent device. The single multibranch stent device includes a main body, a proximal coupling extending radially from the main body, and a distal coupling extending radially from the main body. The main body, the proximal coupling, and the distal coupling are permanently coupled to one another and the single multibranch stent device is a single piece. By forming the single multibranch stent device as a single piece, the single multibranch stent device can be deployed in a single deployment thus simplifying the deployment procedure.
Opening claim text (preview).
What is claimed is: 1. An assembly comprising: a delivery catheter comprising: a constraining sheath; and a tapered tip; a single multibranch stent device comprising: a main body; a proximal coupling extending radially from the main body; and a distal coupling extending radially from the main body, wherein the main body, the proximal coupling, and the distal coupling are permanently coupled to one another; a first guidewire prewired within the proximal coupling, the first guidewire extending from the proximal coupling to the tapered tip between the constraining sheath and the main body; and a second guidewire prewired within the distal coupling, the second guidewire extending from the distal coupling to the tapered tip between the constraining sheath and the main body. 2. The assembly of claim 1 wherein the main body comprises a proximal opening at a proximal end and a distal opening at a distal end, wherein the distal coupling is located between the distal opening and the proximal coupling. 3. The assembly of claim 2 wherein the proximal coupling is located between the distal coupling and the proximal end. 4. The assembly of claim 2 wherein the main body comprises a lumen extending between the proximal opening and the distal opening. 5. The assembly of claim 4 wherein the proximal coupling comprises a lumen fluidly coupled to the lumen of the main body, and wherein the distal coupling comprises a lumen fluidly coupled to the lumen of the main body. 6. The assembly of claim 1 wherein the main body comprises a first longitudinal axis, the proximal coupling comprises a second longitudinal axis extending radially from the first longitudinal axis, and the distal coupling comprises a third longitudinal axis extending radially from the first longitudinal axis. 7. The assembly of claim 6 wherein the second longitudinal axis is parallel to the third longitudinal axis. 8. The assembly of claim 1 further comprising: a proximal bridging stent graft configured to be coupled to the proximal coupling. 9. The assembly of claim 1 further comprising: a distal bridging stent graft configured to be coupled to the distal coupling. 10. The assembly of claim 1 wherein a radial orientation of the proximal coupling on the main body is the same as a radial orientation of the distal coupling on the main body. 11. The assembly of claim 1 wherein the first guidewire and the second guidewire exit the delivery catheter through lumens of the tapered tip. 12. The assembly of claim 11 wherein the lumens of the tapered tip are at a proximal end of the tapered tip. 13. An assembly comprising: a delivery catheter comprising: a constraining sheath; and a tapered tip; a single multibranch stent device comprising: a main body; a proximal coupling extending from the main body, the proximal coupling being configured to perfuse the brachiocephalic artery; and a distal coupling extending from the main body, the distal coupling being configured to perfuse an aortic branch vessel distal of the brachiocephalic artery, wherein the main body, the proximal coupling, and the distal coupling are a single piece; a first guidewire prewired within the proximal coupling, the first guidewire extending from the proximal coupling to the tapered tip between the constraining sheath and the main body; and a second guidewire prewired within the distal coupling, the second guidewire extending from the distal coupling to the tapered tip between the constraining sheath and the main body. 14. The assembly of claim 13 wherein the aortic branch vessel is the left common carotid artery. 15. The assembly of claim 13 wherein the aortic branch vessel is the left subclavian artery. 16. The assembly of claim 13 further comprising: a proximal bridging stent graft configured to be coupled to the proximal coupling and to the brachiocephalic artery, wherein the proximal bridging stent graft has a higher radial force than a radial force of the main body. 17. The assembly of claim 13 further comprising: a distal bridging stent graft configured to be coupled to the distal coupling and the aortic branch vessel, wherein the distal bridging stent graft has a higher radial force than a radial force of the main body. 18. The assembly of claim 13 wherein the proximal coupling and the distal coupling have a same radial orientation. 19. The assembly of claim 13 wherein the first guidewire and the second guidewire exit the delivery catheter through lumens of the tapered tip. 20. The assembly of claim 19 wherein the lumens of the tapered tip comprise grooves of the tapered tip.
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