IP Library Granted Patent US 9,034,030
Granted Patent B2
US 9,034,030 · App. 12/075,531 · Granted May 19, 2015

Helical arm tie down

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,034,030
App. No.
12/075,531
Granted
May 19, 2015
Kind
B2
Abstract

An arrangement for temporarily retaining a side arm ( 36 ) of a stent graft ( 30 ) in a selected position during loading thereof onto a deployment device, the side arm extending from an ostium ( 38 ) in the tubular body ( 32 ) and substantially helically around and along the tubular body to an open end ( 40 ). A first tie down wire ( 48 ) is stitched through the tubular body and through the side arm and then through the biocompatible graft material of the tubular body at the open end of the side arm. The stent graft can then be loaded into a sheath of a deployment device for the stent graft. There can be a second tie down wire ( 50 ) stitched through the biocompatible graft material of the tubular body and through the side arm and then through the biocompatible graft material of the tubular body at the ostium end of the side arm. The first and/or second tie down wires can be withdrawn after the stent graft is loaded into the sheath or left in place until delivery.

Claims (16)

1. A stent graft comprising:

a tubular body of a biocompatible graft material, the tubular body having a circumference, a tubular body surface, an ostium in the tubular body surface, and a side arm extending from the ostium in the tubular body surface, and extending at least partially helically around and at least partially along the tubular body of the stent graft at least one-fourth the circumference of the tubular body to an open end of the side arm,

the stent graft further including a temporary tie down arrangement for the side arm, the temporary tie down arrangement comprising at least one elongate longitudinally extending wire extending proximally of the open end of the side arm to distally of the open end of the side arm, the at least one elongate wire passing through the tubular body surface at a location distal to the open end of the side arm, through the graft material of the side arm, and then through the tubular body surface at a location proximal to the open end of the side arm to hold the open end of the side arm against the tubular body surface by the tie down wire between distal and proximal locations, wherein the open end of the side arm is retained in its position with respect to the tubular body during loading of the stent graft into a deployment device, wherein the stent graft further includes a second temporary tie down arrangement for the side arm, the second temporary tie down arrangement comprising at least one elongate longitudinally extending wire extending proximally of the ostium end of the side arm to distally of the ostium of the side arm and holding flat the ostium end of the side arm during loading of the stent graft into a deployment device.

2. A stent graft as in claim 1 wherein the tie down wire is stitched into the graft material adjacent to the side arm and through the side arm holding the side arm against the tubular body surface.

3. A stent graft as in claim 1 wherein the side arm extends at an angle of approximately 45° to the longitudinal direction of the stent graft.

4. A stent graft as in claim 1 wherein the side arm comprises a plurality of radiopaque markers therealong.

5. A stent graft as in claim 1 wherein the side arm comprises a transversely corrugated graft material tube.

6. A stent graft comprising:

a tubular body of a biocompatible graft material, the tubular body having a circumference, a tubular body surface, an ostium in the tubular body surface, and a side arm extending from the ostium in the tubular body surface, and extending at least partially helically around and at least partially along the tubular body of the stent graft at least one-fourth the circumference of the tubular body to an open end of the side arm,

the stent graft further including a temporary tie down arrangement for the side arm, the temporary tie down arrangement comprising at least one elongate longitudinally extending wire extending proximally of the open end of the side arm to distally of the open end of the side arm, the at least one elongate wire passing through the tubular body surface at a location distal to the open end of the side arm, through the graft material of the side arm, and then through the tubular body surface at a location proximal to the open end of the side arm to hold the open end of the side arm against the tubular body surface by the tie down wire between distal and proximal locations, wherein the open end of the side arm is retained in its position with respect to the tubular body during loading of the stent graft into a deployment device,

wherein the side arm comprises a resilient reinforcing ring at the open end thereof, and

wherein the resilient reinforcing ring at the open end of the side arm is held flat against the tubular body surface by the temporary tie down arrangement.

7. A stent graft as in claim 6 wherein the resilient reinforcing ring at the open end of the side arm is permanently stitched to the tubular body.

8. A stent graft comprising a tubular body of a biocompatible graft material, the tubular body having a circumference, a side wall, an ostium in the side wall, and a side arm extending from the ostium in the side wall of the tubular body and at least partially helically around and along the tubular body of the stent graft at least one-fourth the circumference of the tubular body to an open end,

the side arm comprising a transversely corrugated graft material tube having a length, a plurality of radiopaque markers disposed along the length, and a resilient reinforcing ring at its open end that is permanently stitched to the tubular body,

the stent graft further including a first temporary tie down arrangement comprising an elongate longitudinally extending tie down wire stitched through the graft material of the tubular body at, at least, two spaced-apart locations on the tubular body adjacent to the open end of the side arm, and through the side arm holding the open end of the side arm against the tubular body adjacent to the open end between the two spaced apart locations, wherein one spaced apart location is proximal to the open and of the side arm and the other spaced apart location is distal to the open end of the side arm, and a second elongate longitudinally extending temporary tie down arrangement for the side arm at the ostium end of the side arm holding flat the open end of the side arm and the ostium end of the side arm during loading of the stent graft into a deployment device to ensure the side arm retains its position with respect to the tubular body.

Assignments (4)
SECURITY INTEREST Recorded Feb 28, 2024
From: COOK MEDICAL TECHNOLOGIES LLC
To: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 066700/0277 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 13, 2015
From: WILLIAM A. COOK AUSTRALIA PTY. LTD.
To: COOK MEDICAL TECHNOLOGIES LLC
Reel/Frame 035391/0224 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 19, 2012
From: COOK INCORPORATED
To: COOK MEDICAL TECHNOLOGIES LLC
Reel/Frame 028401/0890 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2008
From: HANNAY, GWYNNE
To: WILLIAM A. COOK AUSTRALIA PTY. LTD.; COOK INCORPORATED
Reel/Frame 021003/0937 →