IP Library Granted Patent US 10,335,297
Granted Patent B2
US 10,335,297 · App. 15/247,714 · Granted Jul 2, 2019

Stent and stent delivery device

Inventors: Shirley Vong (West Covina, CA); Priscilla Tsai (Rancho Santa Margarita, CA); Cang Lam (Tustin, CA); Ross Soltanian (Glendale, CA); Greg Bak-Boychuk (San Clemente, CA); Tai D. Tieu (Fountain Valley, CA); Ponaka Pung (Signal Hill, CA); Arnold Tuason (Claremont, CA); Heather Griffith (Orange, CA)
Assignee: Terumo Corporation
A61F2/852A61F2/844A61F2/885A61F2/90A61F2/966A61F2002/823A61F2002/9522A61F2002/9528A61F2002/9665A61F2210/0014A61F2210/0076A61F2230/005A61F2230/0021A61F2230/0058A61F2230/0067A61F2250/0018A61F2250/0023A61F2250/0039A61F2250/0098A61F2310/00131
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Quick Facts
Patent No.
US 10,335,297
App. No.
15/247,714
Granted
Jul 2, 2019
Kind
B2
Abstract

In one embodiment according to the present invention, a stent is described having a generally cylindrical body formed from a single woven nitinol wire. The distal and proximal ends of the stent include a plurality of loops, some of which include marker members used for visualizing the position of the stent. In another embodiment, the previously described stent includes an inner flow diverting layer.

Claims (29)

1. An implant device comprising:

a first tubular layer having a first porosity and being woven from at least one wire composed of a shape memory metal; and,

a second tubular layer having a second porosity and being woven from at least one wire composed of a shape memory metal; said second tubular layer being located in said first tubular layer; and,

a connecting member woven through both said first tubular layer and said second tubular layer;

wherein said first tubular layer and said second tubular layer have substantially the same pitch and substantially no clearance between the layers.

2. The implant device of claim 1 , wherein said second tubular layer is connected to said first tubular layer via a plurality of attachment members.

3. The implant device of claim 2 , wherein said attachment members are tantalum wire.

4. The implant device of claim 1 , wherein said second tubular layer is connected to said first tubular layer at a plurality of locations along a length of said implant device.

5. The implant device of claim 1 , wherein said second tubular layer is connected to said first tubular layer at a proximal end and a distal end of said implant device.

6. The implant device of claim 1 , wherein said second tubular layer is connected to said first tubular layer at a proximal end, a distal end, and a middle of said implant device.

7. The implant device of claim 1 , wherein said second tubular layer is connected to said first tubular layer at said plurality of locations via said connecting member, which comprises a first helically woven wire.

8. The implant device of claim 7 , further comprising a second helically woven wire and a third helically woven wire that are each connected to said first tubular layer and said second tubular layer.

9. The implant device of claim 1 , wherein said connecting member comprises a support wire woven to connect said first layer to said second layer.

10. The implant device of claim 1 , wherein said second tubular layer is braided and heat-set to have a diameter equal to an inner diameter of said first tubular layer.

11. The implant device of claim 1 , wherein said first tubular layer and said second tubular layer expand at substantially the same rate and foreshorten by substantially the same amount.

12. The implant device of claim 1 , wherein the first tubular layer and second tubular layers are discrete, such that the first tubular layer and second tubular layers are not interwoven within each other and the connecting member is interwoven through both layers so as to bind the two layers together.

13. An implant device comprising:

a first woven layer having a tubular shape with a space therethrough and being woven from at least one shape memory metal wire;

a second woven layer having a tubular shape and being woven from at least one shape memory metal wire; said second tubular layer being located in said first tubular layer within said space within said first woven layer; and,

a connecting member woven through both said first woven layer and said second woven layer;

wherein said first woven layer and said second woven layer have substantially the same pitch and substantially no clearance between the layers.

14. The implant device of claim 13 , wherein said connecting member comprises one or more helical support wires woven between said first woven layer and said second woven layer.

15. The implant device of claim 13 , wherein said second woven layer is connected to said first woven layer at a proximal end and a distal end of said implant device.

16. The implant device of claim 13 , further comprising one or more attachment members composed of tantalum wire.

17. An implant device comprising:

a first woven layer formed from at least one shape memory wire having a first porosity and forming a tubular shape with a space therethrough;

a second woven layer having a second porosity that is lower than said first porosity; said second layer located within said space within said tubular shape; and

a connecting member woven through both layers;

wherein the first and second layers have substantially the same pitch and substantially no clearance between the layers.

Continuity (5)
Continuation 13843342 · Mar 15, 2013
Provisional Application 61667895 · Jul 3, 2012
Provisional Application 61618375 · Mar 30, 2012
Provisional Application 61612158 · Mar 16, 2012
Related Publication 20160361180A1 · Dec 15, 2016
Cited By (1)
US 12,642,640