Modular aortic arch prosthetic assembly and method of use thereof

US11534285B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11534285-B2
Application numberUS-202016885533-A
CountryUS
Kind codeB2
Filing dateMay 28, 2020
Priority dateDec 5, 2016
Publication dateDec 27, 2022
Grant dateDec 27, 2022

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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 prosthetic assembly configured for endovascular placement within an aortic arch and method of use thereof. The prosthetic assembly includes a proximal aortic stent-graft prosthesis configured to be positioned within a proximal portion of the aortic arch adjacent to the brachiocephalic artery, a distal aortic stent-graft prosthesis configured to be positioned within a distal portion of the aortic arch adjacent to the left subclavian artery, a first branch stent-graft prosthesis configured to be positioned within the brachiocephalic artery and a second branch stent-graft prosthesis configured to be positioned in one of the left common carotid and the left subclavian artery. When deployed, a proximal end of the first branch stent-graft prosthesis is disposed within a lumen of the proximal aortic stent-graft prosthesis to proximally displace the ostium of the brachiocephalic artery. When deployed, a proximal end of the distal aortic stent-graft prosthesis is disposed within the distal end of the proximal aortic stent-graft prosthesis to form an overlap between the proximal and distal aortic stent-graft prostheses. The overlap is relatively increased by the first branch stent-graft prosthesis proximally displacing the ostium of the brachiocephalic artery.

First claim

Opening claim text (preview).

What is claimed is: 1. A prosthetic assembly configured for endovascular placement within an aortic arch, the prosthetic assembly comprising: a proximal aortic stent-graft prosthesis including a tubular graft, at least one stent coupled to the tubular graft, and a coupling extending from the tubular graft, wherein in an expanded configuration the proximal aortic stent-graft prosthesis is configured to have an outer diameter that is substantially similar to an inner diameter of the aortic arch; a distal aortic stent-graft prosthesis including a tubular graft, at least one stent coupled to the tubular graft, and a coupling extending from the tubular graft, the coupling being configured to be positioned distal to an ostium of a branch vessel when deployed in situ, wherein in an expanded configuration the distal aortic stent-graft prosthesis is configured to have an outer diameter along an entire length thereof that is substantially similar to an inner diameter of the aortic arch; a first branch stent-graft prosthesis including a tubular graft and at least one stent coupled to the tubular graft, wherein the first branch stent-graft prosthesis is configured to be disposed through the coupling of the proximal aortic stent-graft prosthesis when the proximal aortic stent-graft prosthesis is in its expanded configuration and the first branch stent-graft prosthesis in an expanded configuration; and a second branch stent-graft prosthesis including a tubular graft and at least one stent coupled to the tubular graft, wherein the second branch stent-graft prosthesis is configured to be disposed through the coupling of the distal aortic stent-graft prosthesis when the distal aortic stent-graft prosthesis is in its expanded configuration and the second branch stent-graft prosthesis is in an expanded configuration, wherein an overlap is formed between the proximal and distal aortic stent-graft prostheses when the proximal and distal aortic stent-graft prostheses are in their respective expanded configurations, and wherein a portion of the second branch stent-graft prosthesis in its expanded configuration is configured to be disposed between and contact both of an outer surface of the distal aortic stent-graft prosthesis and a vessel wall of the aortic arch, and wherein the distal aortic stent-graft prosthesis is configured to partially collapse relative to its expanded configuration due to the contact with the second branch stent-graft prosthesis in its expanded configuration. 2. The prosthetic assembly of claim 1 , wherein the coupling of each of the proximal and distal aortic stent-graft prostheses includes an annular support wireform attached to and extending around the top of the coupling. 3. The prosthetic assembly of claim 1 , wherein each of the proximal and distal aortic stent-graft prostheses includes a plurality of stents coupled to the tubular graft, wherein each stent is a sinusoidal patterned ring. 4. The prosthetic assembly of claim 1 , wherein the proximal aortic stent-graft prosthesis is configured to be positioned within a proximal portion of the aortic arch adjacent to the brachiocephalic artery in situ, the distal aortic stent-graft prosthesis is configured to be positioned within a distal portion of the aortic arch adjacent to the left subclavian artery in situ, and the second branch stent-graft prosthesis is configured to be positioned within the left subclavian artery in situ. 5. The prosthetic assembly of claim 4 , wherein the branch vessel is the left subclavian artery and wherein the proximal end of the second branch stent-graft prosthesis is configured to be disposed within the lumen of the distal aortic stent-graft prosthesis in order to reroute the ostium of the left subclavian artery to the descending aorta in situ. 6. The prosthetic assembly of claim 1 , wherein the proximal aortic stent-graft prosthesis is configured to be positioned within a proximal portion of the aortic arch adjacent to the brachiocephalic artery in situ, the distal aortic stent-graft prosthesis is configured to be positioned within a distal portion of the aortic arch adjacent to the left common carotid artery in situ, and the second branch stent-graft prosthesis is configured to be positioned within the left common carotid artery in situ. 7. The prosthetic assembly of claim 6 , wherein the branch vessel is the left common carotid artery and wherein the proximal end of the second branch stent-graft prosthesis is configured to be disposed within the lumen of the distal aortic stent-graft prosthesis in order to reroute the ostium of the left common carotid artery to the descending aorta in situ. 8. The prosthetic assembly of claim 1 , wherein the first branch stent-graft prosthesis is configured to be positioned in the brachiocephalic artery in situ. 9. The prosthetic assembly of claim 1 , wherein the second branch stent-graft prosthesis is configured to exert a higher radial force than the distal aortic stent-graft prosthesis. 10. The prosthetic assembly of claim 9 , wherein the plurality of stents of the second branch stent-graft prosthesis are constructed with thicker segments than the plurality of stents of the distal aortic stent-graft prosthesis. 11. The prosthetic assembly of claim 9 , wherein the plurality of stents of the second branch stent-graft prosthesis are constructed with shorter segments between adjacent crowns than the plurality of stents of the distal aortic stent-graft prosthesis. 12. A method of deploying a prosthetic assembly within an aortic arch, the method comprising the steps of: positioning a proximal aortic stent-graft prosthesis within a proximal portion of the aortic arch adjacent to the brachiocephalic artery, wherein the proximal aortic stent-graft prosthesis is in a compressed configuration for delivery; deploying the proximal aortic stent-graft prosthesis into an expanded configuration, wherein an outer diameter of the proximal aortic stent-graft prosthesis contacts a vessel wall or an inner surface of a previously-implanted prosthesis along an entire length thereof in its expanded configuration; positioning a first branch stent-graft prosthesis within the brachiocephalic artery and through a coupling of the proximal aortic stent-graft prosthesis, wherein the first branch stent-graft prosthesis is in a compressed configuration for delivery; deploying the first branch stent-graft prosthesis into an expanded configuration; positioning a distal aortic stent-graft prosthesis within a distal portion of the aortic arch adjacent to the left subclavian artery, wherein the distal aortic stent-graft prosthesis is in a compressed configuration for delivery; deploying the distal aortic stent-graft prosthesis into an expanded configuration, wherein an outer diameter of the distal aortic stent-graft prosthesis contacts a vessel wall or an inner surface of a previously-implanted prosthesis along an entire length thereof in its expanded configuration; positioning a second branch stent-graft prosthesis within a branch vessel other than the brachiocephalic artery and through a coupling of the distal aortic stent-graft prosthesis, wherein the second branch stent-graft prosthesis is in a compressed configuration for delivery; and deploying the second branch stent-graft prosthesis into an expanded configuration, wherein an overlap is formed between the proximal and distal aortic stent-graft prostheses, and wherein a portion of the second branch stent-graft prosthesis in its expanded configuration is disposed between and contacts both of an outer surface of the distal aortic stent-graft prosthesis and a vessel wall of the aortic arch, and wherein the distal aortic stent-graft pros

Assignees

Inventors

Classifications

  • Modifying the blood flow model, e.g. by diffuser or deflector · CPC title

  • provided with means for allowing access to secondary lumens · CPC title

  • telescopic · CPC title

  • Nested prosthetic parts · CPC title

  • Two or more distinct overlapping stents · CPC title

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What does patent US11534285B2 cover?
A prosthetic assembly configured for endovascular placement within an aortic arch and method of use thereof. The prosthetic assembly includes a proximal aortic stent-graft prosthesis configured to be positioned within a proximal portion of the aortic arch adjacent to the brachiocephalic artery, a distal aortic stent-graft prosthesis configured to be positioned within a distal portion of the aor…
Who is the assignee on this patent?
Medtronic Vascular Inc
What technology area does this patent fall under?
Primary CPC classification A61F2/07. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Dec 27 2022 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).