IP Library Granted Patent US 9,005,265
Granted Patent B2
US 9,005,265 · App. 12/977,194 · Granted Apr 14, 2015

Stent having radially expandable main body

Inventors: Daniel Lootz (Rostock, DE); Bettina Surber (Duebendorf, CH); Daniel Wintsch (Zurich, CH); Johannes Riedmuller (Nuremberg, DE)
Assignee: BIOTRONIK VI Patent AG
A61F2/91A61F2/915A61F2/958A61F2002/91533A61F2002/91575A61F2002/91591A61F2002/9505A61F2250/0071A61F2250/0098A61F2230/0013
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Quick Facts
Patent No.
US 9,005,265
App. No.
12/977,194
Granted
Apr 14, 2015
Kind
B2
Abstract

A stent made of a material having a low strength and having a main body circumscribing a cylindrical shape and radially expandable from a contracted starting position into a dilated support position, comprising a) a plurality of support segments disposed around the circumference and arrayed on one another in the axial direction each segment being formed by a strut meandering in its coarse structure in its contracted starting position and having alternately opposing meandering curves expandable into the support position made of flexible material; b) a plurality of axial connectors connecting between zenith points of at least a part of the meandering curves in the axial-parallel direction of the support segments; (c) a plurality of x-ray marker projections, and d) at least one stabilizer for stabilizing the strut coarse structure in its contracted starting position against radial expansion and being automatically detachable upon radial expansion.

Claims (32)

1. A stent, having a main body circumscribing a cylindrical shape having an axis and radially expandable from a contracted starting position into a dilated support position, comprising:

(a) a plurality of flexible support segments, spaced around the circumference of the main body and arrayed in an axial direction, each support segment being formed by a strut meandering in its coarse structure in its contracted starting position, and having alternately opposing meandering curve sections expandable into the dilated support state;

(b) a plurality of axial connectors each connecting between a zenith point of one meandering curve section and a second meandering curve section in the axial-parallel direction of the support segments; and

(c) a plurality of stabilizer elements for stabilizing the main body in a contracted starting state against undesired radial expansion the plurality of stabilizer elements comprising:

a plurality of x-ray marker projections connected to the struts and projecting from a terminal one of the flexible support segments of the main body and spaced around the circumference of the main body, the x-ray marker projections being coated with marker polymer, the marker polymer forming a ring projecting from the terminal one of the flexible support segments of the main body connecting the x-ray marker projections in the contracted state and automatically detachable upon radial expansion of the stent into the dilated support position.

2. The stent of claim 1 , wherein the x-ray marker projections comprise a plurality of radially oriented transverse connection elements attached to a base.

3. The stent of claim 2 , wherein the radially oriented transverse connection elements are T-shaped or I-shaped.

4. The stent of claim 1 , wherein the x-ray marker projections are in non-interlocking contact in the contracted state.

5. The stent of claim 1 , wherein the x-ray marker projections are C-shaped.

6. A stent, having a main body circumscribing a cylindrical shape having an axis and radially expandable from a contracted starting position into a dilated support position, comprising:

(a) a plurality of flexible support segments, spaced around the circumference of the main body and arrayed in an axial direction, each support segment being formed by a strut meandering in its coarse structure in its contracted starting position, and having alternately opposing meandering curve sections expandable into the dilated support state;

(b) a plurality of axial connectors each connecting between a zenith point of one meandering curve section and a second meandering curve section in the axial-parallel direction of the support segments; and

(c) a plurality of stabilizer elements for stabilizing the main body in a contracted starting state against undesired radial expansion the plurality of stabilizer elements comprising:

a plurality of x-ray marker projections connected to the struts and projecting from a terminal one of the flexible support segments of the main body and spaced around the circumference of the main body, the x-ray marker projections being coated with marker polymer, the marker polymer forming a ring connecting the x-ray marker projections in the contracted state, the x-ray marker projections being in non-interlocking contact in the contracted state, and automatically detachable upon radial expansion of the stent into the dilated support position.

7. The stent of claim 6 , wherein the x-ray marker projections comprise a plurality of radially oriented transverse connection elements attached to a base.

8. The stent of claim 7 , wherein the radially oriented transverse connection elements are T-shaped or I-shaped.

9. The stent of claim 6 , wherein the x-ray marker projections are C-shaped.

10. A stent, having a main body circumscribing a cylindrical shape having an axis and radially expandable from a contracted starting position into a dilated support position, comprising:

(a) a plurality of flexible support segments, spaced around the circumference of the main body and arrayed in an axial direction, each support segment being formed by a strut meandering in its coarse structure in its contracted starting position, and having alternately opposing meandering curve sections expandable into the dilated support state;

(b) a plurality of axial connectors each connecting between a zenith point of one meandering curve section and a second meandering curve section in the axial-parallel direction of the support segments; and

(c) a plurality of stabilizer elements for stabilizing the main body in a contracted starting state against undesired radial expansion the plurality of stabilizer elements comprising:

a plurality of x-ray marker projections connected to the struts at an end of the main body and spaced around the circumference of the main body, the x-ray marker projections being coated with marker polymer, a peripheral ring attached to the x-ray marker projections in the contracted state.

11. The stent of claim 10 , wherein the peripheral ring covers a portion of the circumference of the main body.

12. The stent of claim 10 , wherein the peripheral ring covers the entire the circumference of the main body.

13. The stent of claim 10 , wherein the peripheral ring is attached to the x-ray marker projections using the marker polymer.

14. The stent of claim 10 , wherein the peripheral ring is embedded in the marker polymer.

15. The stent of claim 10 , wherein the peripheral ring comprises a rigid material.

16. The stent of claim 10 , wherein the peripheral ring comprises magnesium.

17. The stent of claim 10 , wherein the x-ray marker projections comprise a plurality of radially oriented transverse connection elements connected to a base.

18. The stent of claim 17 , wherein the radially oriented transverse connection elements are either T-shaped or I-shaped.

19. The stent of claim 10 , wherein the x-ray marker projections are in non-interlocking contact in the contracted state.

20. The stent of claim 10 , wherein the x-ray marker projections are C-shaped.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2018
From: BIOTRONIK VI PATENT AG
To: BIOTRONIK AG
Reel/Frame 047166/0462 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2011
From: KLOCKE, BJOERN; DIENER, TOBIAS; FRINGES, MATTHIAS; HARDER, CLAUS
To: BIOTRONIK VI PATENT AG
Reel/Frame 025862/0156 →
Priority Claims (1)
DE 10 2007 015 670 · Mar 31, 2007 · national
Continuity (2)
Division 12057806 · Mar 28, 2008
Related Publication 20110093061A1 · Apr 21, 2011