Intrasaccular aneurysm occlusion device with net or mesh expanded by string-of-pearls embolies
This invention is an intrasaccular aneurysm occlusion device comprising: a net or mesh with a self-expanding resilient proximal portion (which is deployed close to the aneurysm neck) and an expandable flexible distal portion (which is deployed close to the aneurysm dome); and a “string of pearls” of embolic members which are inserted into the net or mesh.
1. An intrasaccular aneurysm occlusion device comprising:
an expandable net or mesh which is inserted into an aneurysm sac; wherein a proximal portion of the expandable net or mesh is configured to be a first distance from the aneurysm neck after the net or mesh has been inserted into the aneurysm sac; wherein a distal portion of the expandable net or mesh is configured to be a second distance from the aneurysm neck after the net or mesh has been inserted into the aneurysm sac; wherein the second distance is greater than the first distance; wherein the proximal portion of the expandable net or mesh has a first level of flexibility, elasticity, conformability, and/or compliance; wherein the distal portion of the expandable net or mesh has a second level of flexibility, elasticity, conformability, and/or compliance; and wherein second level of flexibility, elasticity, conformability, and/or compliance is greater than the first level of flexibility, elasticity, conformability, and/or compliance;
a plurality of three-dimensional embolic members which are inserted into and retained within the expandable net or mesh after the net or mesh has been inserted into the aneurysm sac, wherein the proximal portion of the net or mesh self expands after the net or mesh has been inserted into the aneurysm sac, and wherein the distal portion of the net or mesh is expanded by insertion and retention of the plurality of three-dimensional embolic members inside the net or mesh after the net or mesh has been inserted into the aneurysm sac; and
one or more longitudinal strands which are inserted into the aneurysm sac, wherein the one or more longitudinal strands connect embolic members in the plurality of three-dimensional embolic members to each other, wherein the embolic members in the plurality of three-dimensional embolic members have progressively lower durometer values as one progresses along the strand in a distal to proximal manner, and wherein the embolic members in the plurality of three-dimensional embolic members have an average durometer value which is less than 70.
2. The intrasaccular aneurysm occlusion device in claim 1 wherein embolic members in a distal portion of a longitudinal strand have an average durometer value in the range of 25 to 50 and embolic members in a proximal portion of the longitudinal strand have an average durometer value in the range of 10 to 30.
3. An intrasaccular aneurysm occlusion device comprising:
an expandable net or mesh which is inserted into an aneurysm sac; wherein a proximal portion of the expandable net or mesh is configured to be a first distance from the aneurysm neck after the net or mesh has been inserted into the aneurysm sac; wherein a distal portion of the expandable net or mesh is configured to be a second distance from the aneurysm neck after the net or mesh has been inserted into the aneurysm sac; wherein the second distance is greater than the first distance; wherein the proximal portion of the expandable net or mesh has a first level of flexibility, elasticity, conformability, and/or compliance; wherein the distal portion of the expandable net or mesh has a second level of flexibility, elasticity, conformability, and/or compliance; wherein second level of flexibility, elasticity, conformability, and/or compliance is greater than the first level of flexibility, elasticity, conformability, and/or compliance; wherein the proximal portion of the net or mesh is made from one or more materials with a first average durometer and the distal portion of the net or mesh is made from one or more materials with a second average durometer, wherein the second average durometer is less than the first average durometer; and wherein the proximal portion of the net or mesh self expands after the net or mesh has been inserted into the aneurysm sac and the distal portion of the net or mesh is expanded by insertion and retention of the plurality of embolic members inside the net or mesh after the net or mesh has been inserted into the aneurysm sac;
a plurality of three-dimensional embolic members which are inserted into and retained within the expandable net or mesh after the net or mesh has been inserted into the aneurysm sac; and
one or more longitudinal strands which are inserted into the aneurysm sac, wherein the one or more longitudinal strands connect embolic members in the plurality of three-dimensional embolic members to each other, wherein the embolic members in the plurality of three-dimensional embolic members have progressively lower durometer values as one progresses along the strand in a distal to proximal manner, and wherein the embolic members in the plurality of three-dimensional embolic members have an average durometer value which is less than 70.
4. The intrasaccular aneurysm occlusion device in claim 3 wherein embolic members in a distal portion of a longitudinal strand have an average durometer value in the range of 25 to 50 and embolic members in a proximal portion of the longitudinal strand have an average durometer value in the range of 10 to 30.