IP Library Granted Patent US 7,780,724
Granted Patent B2
US 7,780,724 · App. 12/011,996 · Granted Aug 24, 2010

Monolithic in situ forming valve system

Assignee: California Institute of Technology
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Quick Facts
Patent No.
US 7,780,724
App. No.
12/011,996
Granted
Aug 24, 2010
Kind
B2
Abstract

Described is a monolithic in situ forming valve system. The valve system is delivered in an unformed, collapsed configuration that lacks any functional characteristics commonly associated with a valve before. However, once expanded, the system is transformed into a competent valve for use in a wide variety of applications. The valve system includes a superior expandable structure, an inferior expandable structure, and a helical pre-valve component. The helical pre-valve component comprises a first end attached with the superior expandable structure and a second end attached with the inferior expandable structure. The helical pre-valve component is formed such that expansion of the superior expandable structure and the inferior expandable structure causes the helical pre-valve structure to transform into a functional valve held between each of the expandable structures.

Claims (25)

1. A monolithic in situ forming valve, comprising:

a superior expandable structure;

an inferior expandable structure; and

a helical pre-valve component, the helical pre-valve component comprising:

a first end attached with the superior expandable structure; and

a second end attached with the inferior expandable structure, where the helical pre-valve component is formed such that expansion of the superior expandable structure and the inferior expandable structure causes the helical pre-valve component to transform from a non-functional valve into a functional valve held between each of the expandable structures;

wherein the helical pre-valve component further includes a compliant sheet and at least two appendices; and

wherein the expansion of the superior expandable structure and inferior expandable structure causes vertical shrinkage of the pre-valve component, which causes a first appendix to engage with the inferior expandable structure and a second appendix to engage with the superior expandable structure, thus inducing the compliant sheet to recoil to form the functional valve there between.

2. The apparatus of claim 1 , wherein the appendices are formed of a shape memory material and form a hook-shape when exposed to a desired temperature.

3. The apparatus of claim 1 , wherein appendices are configured to secure the pre-valve component to either the superior expandable structure or the inferior expandable structure, thereby fixedly securing the compliant sheet between the superior expandable structure and the inferior expandable structure.

4. The apparatus of claim 1 , wherein the compliant sheet is integrated with a plurality of leaflets made of polymeric materials.

5. The apparatus of claim 1 , wherein the compliant sheet is formed of a tissue selected from a group consisting of bovine tissue, porcine tissue, and equine pericardial tissue.

6. The apparatus of claim 1 , wherein the superior expandable structure and inferior expandable structure are at least partially composed of a shape memory material, such that the superior expandable structure and inferior expandable structure have a first compressed memory state shape and second expanded memory state shape, where the superior expandable structure and inferior expandable structure are deliverable in a compressed state and upon expansion, are maintained in the second expanded memory state shape.

7. The apparatus of claim 1 , wherein the superior expandable structure and the inferior expandable structure are in the form of a stent-like crown; and

wherein the superior expandable structure and inferior expandable structure are at least partially composed of a magnetic material.

8. The apparatus of claim 1 , further comprising a delivery apparatus connected with at least one of the superior expandable structure and the inferior expandable structure.

9. The apparatus of claim 8 , wherein the delivery apparatus further comprises an expansion mechanism configured to selectively expand the superior expandable structure appended over the delivery apparatus and the inferior expandable structure appended over the delivery apparatus.

10. The apparatus of claim 9 , wherein the expansion mechanism of the delivery apparatus is a balloon.

11. The apparatus of claim 1 ,

wherein the appendices are formed of a shape memory material and form a hook-shape when exposed to a desired temperature;

wherein appendices are configured to secure the pre-valve component to either the superior expandable structure or the inferior expandable structure, thereby fixedly securing the compliant sheet between the superior expandable structure and the inferior expandable structure;

wherein the superior expandable structure and inferior expandable structure are at least partially composed of a shape memory material, such that the superior expandable structure and inferior expandable structure have a first compressed memory state shape and second expanded memory state shape, where the superior expandable structure and inferior expandable structure are deliverable in a compressed state and upon expansion, are maintained in the second expanded memory state shape;

wherein the superior expandable structure and the inferior expandable structure are in the form of a stent-like crown;

further comprising a delivery apparatus connected with at least one of the superior expandable structure and the inferior expandable structure; and

wherein the delivery apparatus further comprises an expansion mechanism configured to selectively expand the superior expandable structure appended over the delivery apparatus and the inferior expandable structure appended over the delivery apparatus.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 19, 2008
From: GHARIB, MORTEZA; KHERADVAR, ARASH
To: CALIFORNIA INSTITUTE OF TECHNOLOGY
Reel/Frame 020972/0078 →
Continuity (3)
Continuation In Part 1136185000 · Feb 24, 2006
Provisional Application 6089829200 · Jan 30, 2007
Related Publication 20080161909A1 · Jul 3, 2008