IP Library › Granted Patent US 10,098,766
Granted Patent B2
US 10,098,766 · App. 12/510,166 · Granted Oct 16, 2018

Stent and method and device for fabricating the stent

Inventor: Claus Harder (Uttenreuth, DE)
Assignee: BIOTRONIK AG
A61F2/915A61F2/82A61F2/91A61F2002/068A61F2002/9155
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Quick Facts
Patent No.
US 10,098,766
App. No.
12/510,166
Granted
Oct 16, 2018
Kind
B2
Abstract

Stent, as well as a method and device for fabricating the stent, wherein the stent has a tubular lattice structure comprising individual struts and at least one strut of which at least one longitudinal section runs with at least one directional component in the radial circumferential direction of the stent, wherein the surface of the longitudinal section facing the outside of the stent is curved only about the longitudinal axis of the stent. According to the invention, the surface of longitudinal section of the strut, which surface faces the inside of the stent, has such a curvature that the strut cross section is fluidically optimized.

Claims (9)

1. A stent, comprising a tube-like lattice structure comprising individual struts, wherein the stent has at least one strut, positioned at a first end region of the stent, and at least one strut, positioned at a second end region of the stent opposing the first end region, wherein each of the at least one strut at the first and second end regions have at least one longitudinal section that does not run parallel to a longitudinal axis of the stent, wherein the inner surface of each of the at least one strut at the first and second end regions is of an asymmetric convex shape defined by a plane of asymmetry perpendicular to the longitudinal axis of the stent and longitudinally aligned at a middle of the at least one strut, and wherein the asymmetric convex shape of the at least one strut at the first end region is a mirror image of the asymmetric convex shape of the at least one strut at the second end region, defined by a plane of mirror symmetry perpendicular to the longitudinal axis of the stent.

2. The stent according to claim 1 , wherein the stent comprises a biodegradable material.

3. The stent according to claim 1 , wherein all of the struts of the stent have at least one longitudinal section that does not run parallel to the longitudinal axis of the stent.

4. The stent according to claim 1 , wherein the at least one strut at the first end region is separated from the at least one strut at the second end region by at least one innermost strut having an inner surface lacking a rounded shape, wherein each of the first and second end regions extends over 20-30% of the length of the stent, starting from each stent end.

5. The stent according to claim 1 , wherein the at least one strut at the first end region is separated from the at least one strut at the second end region by an innermost strut comprising a greater thickness than each of the at least one strut of the first and second end regions.

6. A stent, comprising a tube-like lattice structure comprising individual struts, wherein the stent has at least one strut, positioned at a first end region of the stent, and at least one strut, positioned at a second end region of the stent opposing the first end region, wherein each of the at least one strut at the first and second end regions have at least one longitudinal section that does not run parallel to a longitudinal axis of the stent, wherein the outside surface of each of the at least one strut at the first and second end regions is curved about the longitudinal axis of the stent, and wherein the inner surface of each of the at least one strut at the first and second end regions is of an asymmetric convex shape defined by a plane of asymmetry perpendicular to the longitudinal axis of the stent and longitudinally aligned at a middle of the at least one strut, further wherein the asymmetric convex shape of the at least one strut at the first end region is a mirror image of the asymmetric convex shape of the at least one strut at the second end region, defined by a plane of mirror symmetry perpendicular to the longitudinal axis of the stent, thereby providing the stent with a fluidically optimized proximal end that is independent of implantation orientation.

7. The stent according to claim 6 , wherein the stent comprises a biodegradable material.

8. The stent according to claim 6 , wherein the at least one strut at the first end region is separated from the at least one strut at the second end region by at least one innermost strut having an inner surface lacking a rounded shape, wherein each of the first and second end regions extends over 20-30% of the length of the stent, starting from each stent end.

9. The stent according to claim 6 , wherein the at least one strut at the first end region is separated from the at least one strut at the second end region by an innermost strut comprising a greater thickness than each of the at least one strut of the first and second end regions.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2018
From: BIOTRONIK VI PATENT AG
To: BIOTRONIK AG
Reel/Frame 045853/0610 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 27, 2009
From: HARDER, CLAUS, DR.
To: BIOTRONIK VI PATENT AG
Reel/Frame 023011/0305 →
Priority Claims (1)
DE 10 2008 038 367 · Aug 19, 2008 · national
Continuity (1)
Related Publication 20100049300A1 · Feb 25, 2010
Cited By (1)
US 12,419,764