Method and device for secluding a body vessel
Abstract
A device for secluding a body vessel may include a distal balloon, a proximal balloon, an aspiration port positioned adjacent to the distal balloon, an injection port positioned adjacent to the proximal balloon, and a lumen assembly. The lumen assembly may comprise a central lumen, a distal balloon lumen operably coupled to the distal balloon, a proximal balloon lumen operably coupled to the proximal balloon, an aspiration port lumen operably coupled to the aspiration port, and an injection port lumen operably coupled to the injection port. The distal balloon and the proximal balloon may define a treatment chamber therebetween, and the aspiration port and the injection port may be positioned within the treatment chamber on the lumen assembly.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A lumen assembly for secluding a body vessel, the lumen assembly comprising:
a tubular element, the tubular element comprising a tubing material; a plurality of lumens defined by the tubing material, wherein the plurality of lumens comprises at least one aspiration port lumen, at least one injection port lumen, and at least one balloon lumen; and a plurality of ports defined by the tubing material, wherein the plurality of ports comprises at least one aspiration port in fluid communication with one or more of the at least one aspiration port lumen, at least one injection port in fluid communication with one or more of the at least one injection port lumen, wherein the at least one aspiration port lumen is configured to remove at least one of blood, a bodily fluid, a chemical agent, or any combination thereof from a treatment chamber in a body vessel via the at least one aspiration port, wherein the at least one injection port lumen is configured to deliver a chemical agent to the treatment chamber in a body vessel via the at least one injection port, and wherein one or more of the at least one balloon lumens is configured to inflate a proximal balloon operably coupled thereto, and wherein one or more of the at least one balloon lumens is configured to inflate a distal balloon operably coupled thereto.
2 . The lumen assembly of claim 1 , wherein the tubular element is a unitary piece.
3 . The lumen assembly of claim 1 , wherein at least one of the lumens comprising the plurality of lumens is a bore hole through the tubing material.
4 . The lumen assembly of claim 1 , wherein at least one of the ports comprising the plurality of ports is a bore hole through the tubing material.
5 . The lumen assembly of claim 1 , wherein the tubing material is an extruded material.
6 . The lumen assembly of claim 5 , wherein the tubing material is an extruded plastic.
7 . The lumen assembly of claim 1 , wherein the at least one balloon lumen comprises at least one proximal balloon lumen and at least one distal balloon lumen, and
wherein each of the at least one proximal balloon lumen and the at least one distal balloon lumen are configured to independently inflate the proximal balloon and the distal balloon, respectively.
8 . The lumen assembly of claim 1 , wherein each of the at least one aspiration port lumen are approximately perpendicular to one of the at least one injection port lumen.
9 . The lumen assembly of claim 1 , wherein the plurality of lumens further comprises a central lumen configured to receive a guidewire.
10 . The lumen assembly of claim 1 , wherein one or more of the at least one aspiration port lumen and the at least one injection port lumen is configured to receive a guidewire.
11 . The lumen assembly of claim 1 , wherein the tubular element further comprises a plurality of markers disposed thereon.
12 . The lumen assembly of claim 11 , wherein the plurality of markers are visible on an ultrasound machine when the lumen assembly is disposed within a body vessel.
13 . The lumen assembly of claim 11 , wherein the plurality of markers are evenly spaced along the tubular element.
14 . The lumen assembly of claim 11 , wherein at least one of the plurality of markers is disposed in a longitudinal location upon the tubular element that corresponds to a longitudinal location of any of the plurality of lumens or any of the plurality of ports.
15 . A lumen arrangement for increasing the rigidity of a lumen assembly, wherein the arrangement comprises a tubular element defining a plurality of lumens,
wherein the tubular element comprises a cross-section having a first transverse axis, a second transverse axis, and an axis intersection defined by the point where the first transverse axis intersects the second transverse axis, wherein each of the plurality of lumens has a diameter, the diameter having a starting point defined by an intersection of the lumen and the tubular element and an ending point defined by an intersection of the lumen and the tubular element, wherein each of the plurality of lumens is disposed along at least one of the first transverse axis or the second transverse axis, wherein two or more of the lumens comprising the plurality of lumens have a larger diameter than the remaining lumens comprising the plurality of lumens, and wherein the two or more lumens having a larger diameter are disposed approximately perpendicular to each other along the cross-section of the tubular element.
16 . The arrangement of claim 15 , wherein at least one of the lumens comprising the plurality of lumens is a bore hole through the tubular element.
17 . The lumen arrangement of claim 15 , wherein the tubular element is a unitary piece.
18 . The arrangement of claim 15 wherein the tubular element comprises an extruded material.
19 . The arrangement of claim 15 , wherein the angle between the first transverse axis and the second transverse axis at the intersection point is a perpendicular angle.
20 . The arrangement of claim 15 , wherein the axis intersection is in a center-point of the cross-section of the tubular element.Join the waitlist — get patent alerts
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