Thrombus management and structural compliance features for prosthetic heart valves

US2016106537A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016106537-A1
Application numberUS-201514976866-A
CountryUS
Kind codeA1
Filing dateDec 21, 2015
Priority dateJun 25, 2013
Publication dateApr 21, 2016
Grant date

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A prosthetic heart valve can include an outer support assembly, an inner valve assembly, which define between them an annular space, and a pocket closure that bounds the annular space to form a pocket in which thrombus can be formed and retained. Alternatively, or additionally, the outer support assembly and the inner valve assembly can be coupled at the ventricle ends of the outer support assembly and the inner valve assembly, with the outer support assembly being relatively more compliant in hoop compression in a central, annulus portion than at the ventricle end, so that the prosthetic valve can seat securely in the annulus while imposing minimal loads on the inner valve assembly that could degrade the performance of the valve leaflets.

First claim

Opening claim text (preview).

What is claimed is: 1 . A prosthetic heart valve comprising: an outer frame assembly having an atrium end configured to be disposed in an atrium of a heart and an opposite, ventricle end; an inner valve assembly, the inner valve assembly disposed within and coupled to the outer frame, the inner valve assembly and the outer frame assembly defining therebetween an annular region, the inner valve assembly and the outer frame assembly configured to substantially prevent blood flow therebetween through the annular region; a pocket closure coupled between the outer frame assembly and the inner valve assembly and enclosing therewith a portion of the annular space, forming a thrombus retaining pocket, at least a portion of the pocket closure formed of a material having a porosity that is sufficiently large to allow red blood cells to pass through the pocket closure into the pocket and that is sufficiently small to prevent thrombus formed from the red blood cells to pass through the pocket closure from the pocket. 2 . The prosthetic heart valve of claim 1 , wherein the inner valve assembly includes: an inner frame; a covering disposed about the periphery of the inner frame, defining in part the annular region, and formed of a material substantially impermeable to blood; and a valve leaflet assembly supported on the inner frame. 3 . The prosthetic heart valve of claim 1 , wherein the outer valve assembly includes: an outer frame; and an inner covering disposed about the inner periphery of the outer frame, defining in part the annular region, and formed of a material substantially impermeable to blood. 4 . The prosthetic heart valve of claim 1 , wherein: the inner valve assembly includes: an inner frame; a covering disposed about the periphery of the inner frame, defining in part the annular region, and formed of a material substantially impermeable to blood; and a valve leaflet assembly supported on the inner frame; and the outer valve assembly includes: an outer frame; and an inner covering disposed about the inner periphery of the outer frame, defining in part the annular region, and formed of a material substantially impermeable to blood, the covering of the inner frame coupled to the inner covering of the outer frame to close the ventricle end of the annular region, opposite the pocket covering. 5 . The prosthetic heart valve of claim 1 , wherein the inner valve assembly includes an atrium end having a periphery formed with multiple arches and wherein the pocket closure is coupled along the periphery of the atrium end. 6 . The prosthetic heart valve of claim 1 , wherein the outer frame assembly has an annulus portion between the atrium end and the ventricle end, the annulus portion having a perimeter that is sized to fit into an annulus of an atrioventricular valve, the atrium end of the outer frame assembly having a perimeter that is substantially larger than the perimeter of the medial portion, each of the atrium end and the annulus portion being D-shaped in cross section. 7 . The prosthetic heart valve of claim 1 , wherein the inner frame is formed of an expanded shape memory metal. 8 . The prosthetic heart valve of claim 1 , wherein the outer frame is formed of an expanded shape memory metal. 9 . The prosthetic heart valve of claim 1 , wherein the pocket closure is formed at least in part of a material having a pore size less than about 160μ. 10 . The prosthetic heart valve of claim 9 , wherein the pocket closure is formed at least in part of a material having a pore size between about 90μ and about 120μ. 11 . The prosthetic heart valve of claim 1 , wherein the pocket closure is formed at least in part of a material that is one of a woven material, a knit material, or a non-woven material. 12 . A prosthetic heart valve comprising: an outer frame assembly having an atrium portion, a ventricle portion, and an annulus portion between the atrium portion and the ventricle portion, the ventricle portion having a maximum perimeter larger than a maximum perimeter of the annulus portion, the ventricle portion having a minimum perimeter smaller than a minimum perimeter of the annulus portion, the annulus portion having an hourglass shape with a minimum perimeter disposed between a larger perimeter near the atrium portion and a larger perimeter near the ventricle portion; an inner valve assembly including an inner frame having an atrium end and a ventricle end, the inner valve assembly coupled to the outer frame assembly by a connection between the ventricle end of the inner frame and the ventricle portion of the outer frame assembly, the inner frame assembly extending from the connection towards the atrium portion of the outer frame assembly, the inner frame assembly and the outer frame assembly diverging from the connection towards the atrium portion of the outer frame assembly, the annulus portion of the outer frame assembly being spaced radially from the inner valve assembly and radially inwardly deflectable towards the inner valve assembly to accommodate in the annulus portion a natural valve annulus having a perimeter smaller than the minimum perimeter of the annulus portion. 13 . The prosthetic heart valve of claim 12 , wherein each of the atrium portion and the annulus portion of the outer frame assembly is D-shaped in cross section. 14 . The prosthetic heart valve of claim 12 , wherein the inner frame is formed of an expanded shape memory metal. 15 . The prosthetic heart valve of claim 12 , wherein the outer frame is formed of an expanded shape memory metal. 16 . A prosthetic heart valve comprising: an outer frame assembly having an atrium portion, a ventricle portion, and an annulus portion between the atrium portion and the ventricle portion; an inner valve assembly including an inner frame having an atrium end and a ventricle end, the inner valve assembly coupled to the outer frame assembly by a connection between the ventricle end of the inner frame and the ventricle portion of the outer frame assembly, the inner frame assembly extending from the connection towards the atrium portion of the outer frame assembly, the inner frame assembly and the outer frame assembly diverging from the connection towards the atrium portion of the outer frame assembly, the annulus portion and the atrium portion of the outer frame assembly being spaced radially from the inner valve assembly and being radially inwardly deflectable towards the inner valve assembly, each of the atrium portion, the ventricle portion, and the annulus portion of the outer frame assembly having a stiffness in resistance to radial compression, the stiffness of the annulus portion being less than the stiffness of the ventricle portion. 17 . The prosthetic heart valve of claim 16 , wherein each of the atrium portion and the annulus portion of the outer frame assembly is D-shaped in cross section. 18 . The prosthetic heart valve of claim 16 , wherein the inner frame is formed of an expanded shape memory metal. 19 . The prosthetic heart valve of claim 16 , wherein the outer frame is formed of an expanded shape memory metal. 20 . The prosthetic heart valve of claim 16 , wherein the stiffness of the ventricle portion of the outer frame assembly is greater than the stiffness of the annulus portion. 21 . The prosthetic heart valve of claim 16 , wherein the stiffness of the ventricle portion of the outer frame assembly is less than the stiffness of the annulus po

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What does patent US2016106537A1 cover?
A prosthetic heart valve can include an outer support assembly, an inner valve assembly, which define between them an annular space, and a pocket closure that bounds the annular space to form a pocket in which thrombus can be formed and retained. Alternatively, or additionally, the outer support assembly and the inner valve assembly can be coupled at the ventricle ends of the outer support asse…
Who is the assignee on this patent?
Tendyne Holdings Inc, Tendyne Holdings Inc
What technology area does this patent fall under?
Primary CPC classification A61F2/2418. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Thu Apr 21 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).