IP Library Granted Patent US 8,771,341
Granted Patent B2
US 8,771,341 · App. 13/647,315 · Granted Jul 8, 2014

Protuberant aneurysm bridging device and method of use

Inventors: Brian M. Strauss (Irvine, CA); Jeffrey J. Valko (Irvine, CA); Michael R. Henson (Irvine, CA); Robert A. Pecor (Irvine, CA)
Assignee: Reverse Medical Corporation
A61F2/90A61F2/91A61F2002/91575A61B17/12118A61F2002/823A61F2250/0037A61B17/1214A61B17/12172A61F2/915A61B2019/5466A61F2/856
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Quick Facts
Patent No.
US 8,771,341
App. No.
13/647,315
Granted
Jul 8, 2014
Kind
B2
Abstract

A bridging device for supporting occlusive masses within an aneurysm located at a vascular bifurcation.

Claims (30)

1. A method of treating a wide-necked aneurysm at a bifurcation of a parent artery into a first and second branch artery, said wide-necked aneurysm characterized by a neck opening into the bifurcation, said method comprising:

providing a bridging device in a first catheter and delivering said bridging device to the neck of the aneurysm;

said bridging device comprising a wire frame structure characterized by a distal region, a proximal region, and a bridging region disposed between the distal region and the proximal region, said bridging device being self-expandable from a small diameter configuration and a large diameter configuration;

placing a distal segment of a first catheter across the neck of the aneurysm;

deploying the distal region of the bridging device from the distal segment of the first catheter while maintaining the bridging device in secure connection to a delivery wire, such that the distal regions expands to engage the wall of the first branch artery thereby fixing the distal region within the first branch artery;

adjusting the position of the bridging device, so that a proximal edge of the distal region of substantially cylindrical cross-section is aligned with the junction of the aneurysm neck and the first branch artery; and thereafter

deploying a bridging portion of the bridging device from the distal segment of the catheter so that the bridging portion is disposed adjacent the aneurysm neck, spanning the aneurysm neck;

pushing the proximal region of the bridging device to longitudinally compress the bridging region and force the bridging region to assume a radially expanded configuration proximate the aneurysm neck;

removing the proximal region of substantially cylindrical cross-section from the distal segment of the catheter so that the proximal region is disposed within the parent artery;

delivering an occlusive device or substance from a second catheter into the aneurysm sac; and

releasing the bridging device from the first catheter.

2. The method of claim 1 further comprising the step of:

detaching the bridging device from the first catheter and removing the first catheter from the bifurcation, leaving the bridging device within the bifurcation, spanning the neck of the aneurysm.

3. The method of claim 1 further comprising the steps of:

withdrawing the bridging device into the distal segment of the first catheter and removing the bridging device from the bifurcation after delivering the occlusive device or substance.

4. A method of treating a wide-necked aneurysm at a bifurcation of a parent artery into a first and second branch artery, said wide-necked aneurysm characterized by a neck opening into the bifurcation, said method comprising:

providing a bridging device in a first catheter and delivering said bridging device to the neck of the aneurysm;

said bridging device comprising a wire frame structure characterized by a distal region, a proximal region, and a bridging region disposed between the distal region and the proximal region, said bridging device being self-expandable from a small diameter configuration and a large diameter configuration;

placing the distal region of first catheter across the neck of the aneurysm;

deploying the distal region of the bridging device from the distal segment of the first catheter while maintaining the bridging device in secure connection to a delivery wire, such that the distal regions expands to engage the wall of the first branch artery thereby fixing the distal region within the first branch artery;

adjusting the position of the bridging device, so that a proximal edge of the distal region of substantially cylindrical cross-section is aligned with the junction of the aneurysm neck and the first branch artery; and thereafter

deploying the bridging region of the bridging device from the distal segment of the catheter so that the bridging region is disposed adjacent the aneurysm neck, spanning the aneurysm neck;

pushing the proximal region of the bridging device to longitudinally compress the bridging portion and force the bridging portion to assume a radially expanded configuration proximate the aneurysm neck; and thereafter

removing the proximal region of substantially cylindrical cross-section from the distal segment of the catheter so that the proximal segment is disposed within the parent artery;

delivering an occlusive device or substance from a second catheter into the aneurysm sac; and

releasing the bridging device from the first catheter.

5. The method of claim 4 further comprising the step of:

detaching the bridging device from the first catheter and removing the first catheter from the bifurcation, leaving the bridging device within the bifurcation, spanning the neck of the aneurysm.

6. The method of claim 4 further comprising the steps of

withdrawing the bridging device into the distal segment of the first catheter and removing the bridging device from the bifurcation after delivering the occlusive device or substance.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 11, 2015
From: REVERSE MEDICAL LLC
To: COVIDIEN LP
Reel/Frame 035143/0782 →
CHANGE OF NAME Recorded Mar 11, 2015
From: REVERSE MEDICAL CORPORATION
To: REVERSE MEDICAL LLC
Reel/Frame 035188/0429 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2012
From: STRAUSS, BRIAN M.; VALKO, JEFFREY J.; HENSON, MICHAEL R.; PECOR, ROBERT A.
To: REVERSE MEDICAL CORPORATION
Reel/Frame 029454/0563 →
Continuity (2)
Provisional Application 61556122 · Nov 4, 2011
Related Publication 20130116774A1 · May 9, 2013