IP Library Patent Application 16088398
Patent Application
App. No. 16/088,398

HELICAL ULTRA LOW FORESHORTENING STENT

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Patent No.
US None
App. No.
16/088,398
Abstract

Various embodiments for an endovascular implantable device (and variations thereof) that virtually eliminates the problem of stent foreshortening phenomena in which the length of a stent or prosthesis shortens as the prosthesis is expanded in the biological vessel.

Claims (44)

1 . An implantable prosthesis comprising:

a. a first framework circumscribing in a first helical path about a longitudinal axis proximate a first end to proximate a second end of the prosthesis, the first framework including a plurality of struts disposed in a first sinusoidal pattern along the first helical path with a primary apex portion connected for every pair of struts;

b. a second framework spaced from the first framework, the second framework circumscribing a second helical path about the longitudinal axis proximate the first end to proximate the second end, the second framework including a plurality of struts disposed in a second sinusoidal pattern along the second helical path with a secondary apex portion connected to a pair of struts for every pair of struts; and

c. a plurality of connectors, each connector is connected to proximate a primary apex portion of the first framework and to proximate a secondary apex portion of the secondary framework.

2 . An implantable prosthesis comprising

a. a first framework circumscribing in a first helical path about a longitudinal axis proximate a first end to proximate a second end of the prosthesis, the first framework including a plurality of struts disposed in a first sinusoidal pattern along the first helical path with a primary apex portion connected for every pair of struts;

b. a second framework spaced from the first framework, the second framework circumscribing a second helical path about the longitudinal axis proximate the first end to proximate the second end, the second framework including a plurality of struts disposed in a second sinusoidal pattern along the second helical path with a secondary apex portion connected to a pair of struts for every pair of struts; and

c. a plurality of connectors, each connector is connected to proximate a primary apex portion of the first framework and a secondary apex portion of the secondary framework; and

d. in which each primary apex portion is connected via the connector to each secondary apex portion circumferentially offset to such primary apex portion so that the connector defines an angle with respect to the longitudinal axis.

3 . An implantable prosthesis comprising

a. a first framework circumscribing in a first helical path about a longitudinal axis proximate a first end to proximate a second end of the prosthesis, the first framework including a plurality of struts disposed in a first sinusoidal pattern along the first helical path with a primary apex portion connected for every pair of struts;

b. a second framework spaced from the first framework, the second framework circumscribing a second helical path about the longitudinal axis proximate the first end to proximate the second end, the second framework including a plurality of struts disposed in a second sinusoidal pattern along the second helical path with a secondary apex portion connected to a pair of struts for every pair of struts; and

c. a plurality of connectors, each connector is connected to proximate a primary apex portion of the first framework and a secondary apex portion of the secondary framework; and

d. in which each primary apex portion is connected via the connector to each secondary apex portion circumferentially offset to such primary apex portion by one secondary apex portion so that the connector defines an angle with respect to the longitudinal axis.

4 . A implantable prosthesis for vascular implantation, the implantable prosthesis comprising:

i. a first framework that includes a repeating sequence of two struts connected to a vertex such that adjacent vertices are spaced along a longitudinal axis extending from a first end to a second end of the first framework, the first framework circumscribing the longitudinal axis in a helical path along the longitudinal axis to define a first helix;

ii. a second framework spaced from the first framework, the second framework includes a repeating sequence two struts connected to a vertex such that adjacent vertices are spaced along a longitudinal axis extending from a first end to a second end of the second framework, the second framework circumscribing the longitudinal axis in a helical path along the longitudinal axis to define a second helix; and

iii. a plurality of connector portions, a first connector portion connects at least one vertex of the first framework to at least one vertex of the second framework, in which the vertex of the second framework is offset circumferentially from the vertex of the first framework, and a second connector portion connects at least one other vertex of the second framework to at least one other vertex of the first framework, in which the vertex of the second framework is circumferentially offset from the vertex of the first framework so that the first and second connector portions define a third helix with respect to the longitudinal axis.

5 . An implantable prosthesis comprising:

a. a first framework circumscribing in a first helical path about a longitudinal axis proximate a first end to proximate a second end of the prosthesis, the first framework including a plurality of struts disposed in a first pattern along the first helical path with a primary apex portion connected for every pair of struts;

b. a second framework spaced from the first framework, the second framework circumscribing a second helical path about the longitudinal axis proximate the first end to proximate the second end, the second framework including a plurality of struts disposed in a second pattern along the second helical path with a secondary apex portion connected to a pair of struts for every pair of struts; and

c. a plurality of connectors, each connector is connected to proximate a primary apex portion of the first framework and to proximate a secondary apex portion of the secondary framework such that when the prosthesis is in an uncompressed configuration, its length from the first end to the second end along the longitudinal axis is at least 80% of the length of the prosthesis in its compressed or crimped configuration.

6 . An implantable prosthesis comprising:

a first framework circumscribing in a first helical path about a longitudinal axis proximate a first end to proximate a second end of the prosthesis, a second framework circumscribing a second helical path about a longitudinal axis proximate a first end to proximate a second end of the prosthesis, the first framework being connected to predetermined portions of the second framework so that when the prosthesis is in an uncompressed configuration, its length from the first end to the second end along the longitudinal axis is at least 80% of the length of the prosthesis in its compressed or crimped configuration.

7 . The implantable prosthesis of one of claim 1 , 2 , 3 , 4 , 5 or 6 in which each of the plurality of connectors comprises a linear member.

8 . The implantable prosthesis of claim 7 , in which adjacent connectors are disposed in a generally parallel configuration.

9 . The implantable prosthesis of claim 5 , in which the first connector portion connects a vertex of the first framework to a vertex of the second frame work circumferentially offset by one vertex of the second framework.

10 . The implantable prosthesis of one of claim 1 , 2 , 3 , 4 , 5 or 6 , in which the implantable prosthesis includes a first length when crimped or compressed to have a smaller outer diameter and a second length of no less than about 80% of the first length when the implantable prosthesis is uncompressed to expand to a larger outer diameter.

11 . The implantable prosthesis of one of claim 1 , 2 , 3 , 4 , 5 or 6 , in which the first framework defines a first helical angle with respect to the longitudinal axis and the second framework defines a second helical angle with respect to the longitudinal axis when the implantable prosthesis is in an uncompressed configuration.

12 . The implantable prosthesis of claim 11 , in which the connector portions define a third helical angle with respect to the longitudinal axis when the implantable prosthesis is in an uncompressed configuration.

13 . The implantable prosthesis of claim 11 , in which the first helical angle is generally equal to the second helical angle.

14 . The implantable prosthesis of claim 11 , in which the third helical angle is different from the first helical angle or the second helical angle.

15 . The implantable prosthesis of claim 14 , in which the third helical angle is less than either of the first helical angle or the second helical angle.

16 . The implantable prosthesis of claim 15 , in which the first helical angle is about 65 degrees with respect to the longitudinal axis.

17 . The implantable prosthesis of claim 15 , in which the second helical angle is about 65 degrees with respect to the longitudinal axis.

18 . The implantable prosthesis of claim 15 , in which the third helical angle is about 30 degrees with respect to the longitudinal axis.

19 . The implantable prosthesis of claim 15 , in which the third helical angle is about half of one of the first and second helical angles.

20 . The implantable prosthesis of claim 15 , in which the implantable prosthesis includes a first length when crimped or compressed to have a smaller outer diameter and a second length of no less than about 90% of the first length when the implantable prosthesis is uncompressed to expand to a larger outer diameter.

21 . The implantable prosthesis of claim 15 , in which the first framework has a first starting location generally diametrically opposed to a second starting location of the second framework as referenced with the longitudinal axis.

22 . The implantable prosthesis of claim 20 , in which the implantable prosthesis comprises a biocompatible metal including alloys of metal.

23 . The implantable prosthesis of claim 19 , in which the implantable prosthesis comprises a biocompatible polymer.

24 . The implantable prosthesis of claim 19 , in which the implantable prosthesis comprises a combination of biocompatible metal and polymer.

25 . The implantable prosthesis of claim 19 , in which the implantable prosthesis comprises a drug coating disposed on surfaces of the implantable prosthesis.

26 . The implantable prosthesis of one of claims 5 and 6 , in which the first pattern of the first framework is the same as the second pattern of the second framework.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 1, 2025
From: CARDINAL HEALTH SWITZERLAND 515 GMBH; CARDINAL HEALTH 529, LLC; CORDIS CORPORATION; FLEXIBLE STENTING SOLUTIONS, INC
To: CORDIS US CORP
Reel/Frame 072987/0675 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2018
From: MAJERCAK, DAVID
To: CARDINAL HEALTH SWITZERLAND 515 GMBH
Reel/Frame 046974/0110 →