Expandable epicardial pads and devices and methods for delivery of same

US10610356B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10610356-B2
Application numberUS-201715654374-A
CountryUS
Kind codeB2
Filing dateJul 19, 2017
Priority dateFeb 5, 2015
Publication dateApr 7, 2020
Grant dateApr 7, 2020

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

An apparatus for use in the delivery of a prosthetic mitral valve may include an epicardial pad configured to engage an outside surface of a heart to secure a prosthetic heart valve in position within the heart. The epicardial pad defines a lumen configured to receive therethrough a tether extending from the prosthetic valve. The epicardial pad is movable between a first configuration in which the epicardial pad has a first outer perimeter and is configured to be disposed within a lumen of a delivery sheath and a second configuration in which the epicardial pad has a second outer perimeter greater than the first outer perimeter. The epicardial pad can be disposed against the outside surface of the heart when in the second configuration to secure the prosthetic valve and tether in a desired position within the heart.

First claim

Opening claim text (preview).

What is claimed is: 1. An apparatus, comprising: an epicardial pad configured to engage an outside surface of a heart to secure a prosthetic heart valve in position within the heart, the prosthetic heart valve having a tether extending therefrom and outside the heart when the prosthetic heart valve is disposed within the heart, the epicardial pad defining a lumen configured to receive the tether therethrough, the epicardial pad being movable between a first configuration in which the epicardial pad has a first outer perimeter and is configured to be disposed within a lumen of a delivery sheath and a second configuration in which the epicardial pad has a second outer perimeter greater than the first outer perimeter, the epicardial pad configured to be disposed against the outside surface of the heart when in the second configuration to secure the prosthetic valve and tether in a desired position within the heart, the apparatus also including an internal anchor coupleable to the epicardial pad, the internal anchor configured to be disposed within a ventricle of the heart when the epicardial pad is disposed against the outside surface of the heart to secure the prosthetic valve and tether in a desired position within the heart, wherein the internal anchor is coupleable to the epicardial pad with sutures that extend through an opening in the apex of the heart, the internal anchor and epicardial pad configured to close the opening. 2. The apparatus of claim 1 , wherein the epicardial pad includes a frame member and a covering coupled to the frame member, the frame member being formed with a shape memory material such that the epicardial pad is biased into the second configuration when not constrained within a lumen of a delivery sheath. 3. An apparatus, comprising: a delivery sheath defining a first lumen; a dilator device defining a second lumen and being movably disposed within the first lumen of the delivery sheath, the dilator device including an elongate member and an expandable member disposed at a distal end of the elongate member, the expandable member having a collapsed configuration and an expanded configuration, the dilator device being in the collapsed configuration when disposed within the first lumen; and an epicardial pad having a collapsed configuration and an expanded configuration, the epicardial pad configured to be disposed within the second lumen when in the collapsed configuration, the epicardial pad configured to be disposed against an outside surface of a heart when in the expanded configuration, the dilator member of the dilator device configured to dilate tissue associated with the outside surface of the heart when moved from its collapsed configuration to its expanded configuration such that a space is formed in which the epicardial pad can be disposed, wherein the delivery sheath further includes a retractor portion disposed at a distal end portion of the delivery sheath, the retractor portion configured to separate a portion of pericardium tissue from a portion of epicardium tissue of the heart. 4. The apparatus of claim 3 , wherein the dilator member is a balloon inflatable with an inflation medium to move the dilator member to the second configuration. 5. The apparatus of claim 3 , wherein the epicardial pad includes a frame member and a covering coupled to the frame member, the frame member being formed with a shape memory material such that the epicardial pad is biased into the expanded configuration when unconstrained within the second lumen. 6. An apparatus, comprising: a delivery sheath defining a first lumen; a dilator device defining a second lumen and being movably disposed within the first lumen of the delivery sheath, the dilator device including an elongate member and an expandable member disposed at a distal end of the elongate member, the expandable member having a collapsed configuration and an expanded configuration, the dilator device being in the collapsed configuration when disposed within the first lumen; and an epicardial pad having a collapsed configuration and an expanded configuration, the epicardial pad configured to be disposed within the second lumen when in the collapsed configuration, the epicardial pad configured to be disposed against an outside surface of a heart when in the expanded configuration, the dilator member of the dilator device configured to dilate tissue associated with the outside surface of the heart when moved from its collapsed configuration to its expanded configuration such that a space is formed in which the epicardial pad can be disposed, wherein the epicardial pad defines a lumen configured to receive therethrough a tether extending from a prosthetic heart valve, the apparatus further comprising: an internal locator member movably disposable within the second lumen of the dilator device and movably disposable through the lumen of the epicardial pad, the internal locator member defining a lumen configured to receive therethrough the tether, the internal locator member having a collapsed configuration and an expanded configuration, the internal locator member configured to be inserted into the ventricle of the heart when in the collapsed configuration and moved to the expanded configuration within the ventricle of the heart to help position the epicardial pad against an outside surface of the heart. 7. A method, comprising: disposing a distal end portion of a delivery sheath outside a surface of a heart near an apex of the heart, the delivery sheath having a dilator device movably disposed within a lumen of the delivery sheath, the dilator device including an elongate member and a dilator member disposed at a distal end portion of the elongate member, the dilator member being movable from a collapsed configuration when disposed within the lumen of the delivery sheath and an expanded configuration; after disposing a distal end portion of a delivery sheath outside a surface of a heart, disposing the dilator member of the dilator device outside a distal end of the delivery sheath; and moving the dilator member to the expanded configuration such that tissue associated with the surface of the heart is dilated from pressure exerted on the tissue by the dilator member and a space is formed to receive an epicardial pad device. 8. The method of claim 7 , further comprising: after the moving the dilator member to the expanded configuration, moving the dilator to the collapsed configuration; and disposing the dilator member within the lumen of the delivery sheath. 9. The method of claim 7 , further comprising: disposing an epicardial pad within the space formed by the dilator member; and securing the epicardial pad to the apex of the heart. 10. The method of claim 9 , further comprising: prior to disposing the epicardial pad, coupling to the epicardial pad a tether extending from a prosthetic heart valve implanted within the heart, the securing the epicardial pad includes securing the prosthetic valve and tether in position within the heart. 11. The method of claim 9 , further comprising: prior to disposing an epicardial pad within the space formed by the dilator member, inserting the epicardial pad within a lumen defined by the dilator device such that the epicardial pad is in a collapsed configuration; and prior to the securing the epicardial pad, moving the epicardial pad to an expanded configuration. 12. The method of claim 11 , wherein the moving the epicardial pad to the expanded configuration includes moving the epicardial pad outside the lumen of the dilator device such that the epicardial pad assumes a biased expanded configuration. 13. The method of claim

Assignees

Inventors

Classifications

  • A61F2/2457Primary

    Chordae tendineae prostheses · CPC title

  • Deployment by retracting a sheath · CPC title

  • radio-opaque, e.g. radio-opaque markers · CPC title

  • Nested prosthetic parts · CPC title

  • the shaft being resilient and having a coiled or helical shape in the released state · CPC title

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What does patent US10610356B2 cover?
An apparatus for use in the delivery of a prosthetic mitral valve may include an epicardial pad configured to engage an outside surface of a heart to secure a prosthetic heart valve in position within the heart. The epicardial pad defines a lumen configured to receive therethrough a tether extending from the prosthetic valve. The epicardial pad is movable between a first configuration in which …
Who is the assignee on this patent?
Tendyne Holdings Inc
What technology area does this patent fall under?
Primary CPC classification A61F2/2457. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Apr 07 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).