IP Library Patent Application 18135153
Patent Application
App. No. 18/135,153

Intrasacular Aneurysm Occlusion Device with a Proximal Bowl-Shaped Mesh and a Distal Globular Mesh

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Quick Facts
Patent No.
US None
App. No.
18/135,153
Abstract

Disclosed herein is an intrasacular aneurysm occlusion device with a proximal bowl-shaped mesh which covers the neck of an aneurysm sac and a distal globular mesh between the proximal bowl-shaped mesh and the dome of the aneurysm sac. The proximal bowl-shaped mesh blocks blood flow into the aneurysm sac and the distal globular mesh holds the bowl-shaped mesh in place against the aneurysm neck.

Claims (28)

1 . An intrasacular aneurysm occlusion device comprising:

a proximal bowl-shaped mesh or net which is configured to span a neck of an aneurysm sac; and

a distal globular mesh or net which is configured to be between the proximal bowl-shaped mesh or net and a distal dome of the aneurysm sac to hold the proximal bowl-shaped mesh or net against the neck of the aneurysm sac.

2 . The device in claim 1 wherein the proximal bowl-shaped mesh or net has two layers and/or double thickness.

3 . The device in claim 1 wherein the proximal bowl-shaped mesh or net is formed by compressing, folding, and/or inverting a spherical or ellipsoidal mesh or net.

4 . The device in claim 3 wherein the proximal bowl-shaped mesh or net is formed by folding and/or inverting a spherical or ellipsoidal mesh or net along its central circumference.

5 . The device in claim 1 wherein the distal globular mesh or net has a spherical, oblate spheroidal, or ellipsoidal shape.

6 . The device in claim 1 wherein the distal globular mesh or net has a cardioid shape.

7 . The device in claim 1 wherein the distal globular mesh or net has a distal inversion.

8 . The device in claim 1 wherein the proximal bowl-shaped mesh or net and the distal globular mesh or net have a first configuration in which they do not overlap as they travel through a catheter toward an aneurysm sac and a second configuration in which they overlap after they have been deployed in the aneurysm sac.

9 . The device in claim 1 wherein the proximal bowl-shaped mesh or net and the distal globular mesh or net have a first configuration in which they are not nested as they travel through a catheter toward an aneurysm sac and a second configuration in which they are nested after they have been deployed in the aneurysm sac.

10 . The device in claim 1 wherein the proximal bowl-shaped mesh or net and the distal globular mesh or net are moved toward each other when a user pulls, rotates, or pushes a wire or string.

11 . The device in claim 1 wherein there is a central opening, hole, tube, and/or lumen on the central longitudinal axis of the distal globular mesh or net through which embolic material and/or members are inserted into the distal globular mesh or net.

12 . An aneurysm occlusion device comprising;

an intrasacular arcuate proximal stent; and

an intrasacular arcuate distal stent, wherein the proximal stent has a concavity into which a portion of the distal stent fits when the device is deployed within an aneurysm sac.

13 . The device in claim 12 wherein the distal stent is spherical when expanded and the proximal stent is hemispherical when expanded.

14 . The device in claim 12 wherein the distal stent is ellipsoidal when expanded and the proximal stent is a section of an ellipsoid when expanded.

15 . The device in claim 12 wherein the device has double thickness where it covers the aneurysm neck.

16 . The device in claim 12 wherein the distal and proximal stents do not overlap as they travel through a catheter, but they do overlap after they are deployed in an aneurysm sac.

17 . The device in claim 12 wherein the distal and proximal stents have a first configuration in which they are not nested as they travel through a catheter toward an aneurysm sac and a second configuration in which they are nested after they have been deployed in the aneurysm sac.

18 . The device in claim 12 wherein the distal stent and/or the proximal stent are connected to a wire or string.

19 . The device in claim 18 wherein the distal and proximal stents are moved toward each other when a user pulls, rotates, or pushes the wire or string.

20 . A method for forming and deploying an intrasacular aneurysm occlusion device comprising:

forming two globular meshes from a tubular mesh by radially-constraining a distal end of the tubular mesh, radially-constraining a middle portion of the tubular mesh, and radially-constraining a proximal end of the tubular mesh;

longitudinally-stretching and radially-compressing the two globular meshes for delivery through a catheter to an aneurysm sac;

inserting and radially-expanding the two globular meshes within the aneurysm sac; and

forming a proximal bowl-shaped mesh and a distal globular mesh within the aneurysm sac by compressing and/or folding the proximal globular mesh into bowl-shaped mesh, wherein the distal globular mesh is nested within the concavity of the proximal bowl-shaped mesh.