IP Library Granted Patent US 10,779,947
Granted Patent B2
US 10,779,947 · App. 15/589,032 · Granted Sep 22, 2020

Methods and apparatus for treating neurovascular venous outflow obstruction

Inventors: Fred Khosravi (Mountain View, CA); Gerard von Hoffmann (Rancho Santa Fe, CA)
Assignee: Incept, LLC
A61F2/2475A61F2/915A61B17/12009A61F2/01A61F2/2418A61F2/856A61F2002/016A61F2002/91583A61F2220/005A61F2220/0008A61F2220/0016A61F2220/0075A61F2230/0006A61F2230/0054A61F2230/0067A61F2230/0091A61F2230/0093A61M25/104A61M25/1011A61M2025/0175A61M2025/109A61M2025/1015A61M2025/1047A61M2025/1086
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Quick Facts
Patent No.
US 10,779,947
App. No.
15/589,032
Granted
Sep 22, 2020
Kind
B2
Abstract

Methods and devices are disclosed for treating neurovascular venous outflow obstructions, with or without implantation of a prosthetic valve. The valve may be carried by a support, such as a stent, which may be self-expandable or balloon expandable. Both transvascular and direct surgical access is contemplated.

Claims (23)

1. An implant, for positioning in a neurovascular venous outflow tract, comprising:

a radially expandable frame, for engaging the wall of a vein; the frame having a flowpath therethrough;

an occluder support within the frame, extending across the flowpath at an inclined angle relative to the central axis of blood flow; and

a thin film occluder, movable between a first position spaced apart from the occluder support sufficient to permit flow through the flowpath in a first direction, and a second position in contact with the support such that it inhibits flow through the flowpath in a second direction.

2. An implant as in claim 1 , further comprising at least one anchor on the frame for engaging the wall of the vein.

3. The implant as in claim 1 , wherein the implant comprises a valve.

4. The implant as in claim 3 , wherein the valve comprises a wind sock valve.

5. The implant as in claim 3 , wherein the valve comprises a duck bill valve.

6. The implant as in claim 1 , wherein the frame comprises an annular and radially outwardly projecting structure that provides an interference fit with an extravascular structure to resist migration when the valve is positioned in the neurovascular outflow tract.

7. The implant as in claim 1 , comprising a plurality of occluders.

8. The implant as in claim 1 , wherein the occluder comprises ePTFE.

9. The implant as in claim 1 , wherein the occluder comprises biological tissue.

10. The implant as in claim 9 , wherein the biological tissue comprises pericardium.

11. An implant, for positioning in a neurovascular venous outflow tract, comprising:

a frame, for engaging the wall of a vein; the frame having a flowpath therethrough;

an occluder support within the frame, extending across the flowpath at an inclined angle relative to the central axis of blood flow; and

a thin film occluder, movable between a first position spaced apart from the occluder support configured to permit flow through the flowpath in a first direction, and a second position in contact with the support and configured to inhibit flow through the flowpath in a second direction,

wherein the frame comprises an annular and radially outwardly projecting structure that provides an interference fit with an extravascular structure to resist migration when the valve is positioned in the neurovascular outflow tract.

12. An implant, for positioning in a neurovascular venous outflow tract, comprising:

a radially expandable frame, for engaging the wall of a vein; the frame having a flowpath therethrough;

an occluder support within the frame, extending across the flowpath at an inclined angle relative to the central axis of blood flow; and

a thin film occluder, movable between a first position spaced apart from the occluder support configured to permit flow through the flowpath in a first direction, and a second position in contact with the support configured to inhibit flow through the flowpath in a second direction,

wherein the frame comprises a radially outwardly projecting structure that provides an interference fit with an extravascular structure to resist migration when the frame is positioned in the neurovascular outflow tract.

Continuity (4)
Continuation 14550748 · Nov 21, 2014
Continuation 13191296 · Jul 26, 2011
Provisional Application 61400383 · Jul 27, 2010
Related Publication 20170296343A1 · Oct 19, 2017