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US Patent 7374571 Rolled minimally-invasive heart valves and methods of manufacture

Patent 7374571 was granted and assigned to Edwards Lifesciences on May, 2008 by the United States Patent and Trademark Office.

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Is a
Patent
Patent

Patent attributes

Current Assignee
Edwards Lifesciences
Edwards Lifesciences
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
7374571
Date of Patent
May 20, 2008
Patent Application Number
10286009
Date Filed
November 1, 2002
Patent Citations Received
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US Patent 12127938 Delivery apparatus for prosthetic heart valve
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US Patent 12121435 Prosthetic heart valve leaflet assemblies and methods
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US Patent 12121672 Advanced sheath patterns
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US Patent 12121676 Steerable catheter with multiple pull wires
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US Patent 11653910 Helical anchor implantation
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US Patent 11654022 Stents for prosthetic heart valves and methods of making same
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US Patent 11654023 Covered prosthetic heart valve
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US Patent 11666434 Prosthetic heart valve having improved commissure supports
0
...
Patent Primary Examiner
‌
Corrine McDermott
Patent abstract

Expandable heart valves for minimally invasive valve replacement surgeries are disclosed. The valves are rolled into a first, contracted configuration for minimally invasive delivery using a catheter, and then unrolled or unfurled at the implantation site. One- and two-piece stents may be used in conjunction with a plurality of flexible leaflet-forming membranes. The stents may include an annulus section, a sinus section with the membranes attached over sinus apertures, and an outflow section. Lockout tabs and making slots secure the stents in their expanded shapes. Alignment structure ensures concentric unfurling of the stent. Anchoring elements at the stent edges or in the stent body secure the valve within the annulus. A method of manufacture includes shape setting the sheet-like stent to ensure an outward bias during deployment. The stent may also include dear tracks for engagement with a gear mechanism for deployment. The stent is desirably made of a superelastic material such as Nitinol and may have areas removed or thinned to reduce the bending stresses when rolled into its small spiral for catheter delivery.

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