IP Library Granted Patent US 10,856,963
Granted Patent B2
US 10,856,963 · App. 16/303,072 · Granted Dec 8, 2020

Inferior vena cava filter of bidirectional controlled placement

Inventors: Tingchao Zhang (Zhejiang, CN); Yang Li (Zhejiang, CN)
Assignee: HANGZHOU WEI QIANG MEDICAL TECHNOLOGY CO., LTD.
A61F2/01A61F2002/016A61F2230/005A61F2230/0093
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Quick Facts
Patent No.
US 10,856,963
App. No.
16/303,072
Granted
Dec 8, 2020
Kind
B2
Abstract

An inferior vena cava filter capable of bidirectional controlled placement is provided. The inferior vena cava filter includes a filter portion and a support portion. The filter portion is configured as a mesh-like structure of a plurality of struts cross-linked. The support portion includes a first support portion and a second support portion disposed on opposite sides of the filter portion, and the first support portion and the second support portion have openings extending in opposite directions. The first support portion extends outwardly radially with respect to a center point of the inferior vena cava filter in a positive direction and then curls inwardly radially in a reverse direction.

Claims (47)

1. An inferior vena cava filter, capable of bidirectional controlled placement, comprising:

a filter portion, configured as a mesh-like structure of a plurality of struts cross-linked; and

a support portion, comprising a first support portion and a second support portion disposed on opposite sides of the filter portion, and the first support portion and the second support portion having openings extending in opposite directions, wherein

the plurality of struts of the filter portion are cross-linked and form cross-linked nodes, wherein one of the cross-linked nodes formed at a center point of the filter portion is defined as a central cross-linked node, and other of the cross-linked nodes formed at an outermost side of the filter portion are defined as terminal cross-linked nodes; and

the first support portion extends outwardly radially from the central cross-linked node in a positive direction and then curls inwardly radially in a reverse direction, and the second support portion extends, from the terminal cross-linked nodes, outwardly radially in the positive direction.

2. The inferior vena cava filter of claim 1 , wherein the first support portion and the second support portion are supported on a blood vessel wall by point contact.

3. The inferior vena cava filter of claim 1 , wherein the first support portion, the second support portion, and the filter portion are configured as an integral structure; the first support portion comprises a plurality of first support struts extending outwardly from the central cross-linked node of the filter portion and curling inwardly in the reverse direction; the second support portion comprises a plurality of second support struts extending outwardly from the terminal cross-linked nodes of the filter in the positive direction.

4. The inferior vena cava filter of claim 1 , wherein the first support portion, the second support portion, and the filter portion are configured as a separate assembly structure; one of the first support portion and the second support portion is configured as a separate structure, and another one is configured as an integral structure with the filter portion; the first support portion of the separate structure comprises a plurality of first support struts; and the second support portion of the separate structure comprises a plurality of second support struts.

5. The inferior vena cava filter of claim 1 , wherein the first support portion, the second support portion, and the filter portion are configured as a separate assembly structure; the first support portion, the second support portion, and the filter portion are configured as separate structures and fixedly connected together; the first support portion comprises a plurality of first support struts; the second support portion comprises a plurality of second support struts; and the filter portion is configured as a structure in a funnel shape, a hollow mesh spherical shape, a mesh disc shape, or a mesh plate shape.

6. The inferior vena cava filter of claim 3 , wherein

the first support struts or the second support struts, and the struts of the filter portion are staggered along a central axis of the inferior vena cava filter; or

at least one of the first support struts of the plurality of first support struts and at least one of the second support struts of the plurality of second support struts are formed integrally with the strut of the filter portion, and the first support struts and the second support struts being staggered along the central axis.

7. The inferior vena cava filter of claim 3 , wherein

the plurality of first support struts of the first support portion comprises at least three first support struts arranged symmetrically about a central axis of the inferior vena cava filter, the at least three first support struts being supported on a blood vessel wall by point contact; and

the plurality of second support struts of the second support portion comprises at least three second support struts arranged symmetrically about the central axis, the at least three second support struts being supported on the blood vessel wall by point contact.

8. The inferior vena cava filter of claim 3 , wherein at least one of the first support struts of the plurality of first support struts and the second support struts of the plurality of second support struts comprises an anchoring portion configured to anchor in the inner vessel wall.

9. The inferior vena cava filter of claim 3 , wherein the second support struts are configured as curved struts or straights struts.

10. The inferior vena cava filter of claim 3 , wherein

an end of at least one of the first support struts of the plurality of first support struts or a tangent of the end of the at least one of the first support struts of the plurality of first support struts, and a central axis of the first support portion define an angel therebetween, and the angle being greater than or equal to 180°; and

a maximum outer diameter of the first support portion is substantially coincident with an inner diameter of the blood vessel such that the first support struts are supported on the inner vessel wall by point contact.

11. The vena cava filter of claim 4 , wherein

the plurality of first support struts or the plurality of second support struts, and the struts of the filter portion are staggered along a central axis of the inferior vena cava filter; or

at least one of the first support struts of the plurality of first support struts or at least one of the second support struts of the plurality of second support struts is formed integrally with the strut of the filter portion, and the first support struts and the second support struts being staggered along the central axis.

12. The vena cava filter of claim 4 , wherein

the plurality of first support struts of the first support portion comprises at least three first support struts arranged symmetrically about a central axis of the inferior vena cava filter, the at least three first support struts being supported on a blood vessel wall by point contact; and

the plurality of second support struts of the second support portion comprises at least three second support struts arranged symmetrically about the central axis, the at least three second support struts being supported on the blood vessel wall by point contact.

13. The vena cava filter of claim 4 , wherein

an end of at least one of the first support struts of the plurality of first support struts or a tangent of the end of the at least one of first support struts of the plurality of first support struts, and a central axis of the first support portion define an angel therebetween, and the angle being greater than or equal to 180°; and

a maximum outer diameter of the first support portion is substantially coincident with an inner diameter of the blood vessel such that the first support struts are supported on the inner vessel wall by point contact.

14. The vena cava filter of claim 5 , wherein

the plurality of first support struts of the first support portion comprises at least three first support struts arranged symmetrically about a central axis of the inferior vena cava filter, the at least three first support struts being supported on a blood vessel wall by point contact; and

the plurality of second support struts of the second support portion comprises at least three second support struts arranged symmetrically about the central axis, the at least three second support struts being supported on the blood vessel wall by point contact.

15. The vena cava filter of claim 5 , wherein

an end of at least one of the first support struts of the plurality of first support struts or a tangent of the end of the at least one of first support struts of the plurality of first support struts, and a central axis of the first support portion define an angel therebetween, and the angle being greater than or equal to 180°; and

a maximum outer diameter of the first support portion is substantially coincident with an inner diameter of the blood vessel such that the first support struts are supported on the inner vessel wall by point contact.

16. The inferior vena cava filter of claim 10 , wherein

each of the first support struts comprises a first support segment and a second support segment extending in sequence outwardly radially;

the first support segment or a tangent of each point of the first support segment, and the central axis of the first support segment define an angle therebetween ranging from zero to 90°; the second support segment or a tangent of each point of the second support segment, and the central axis of the first support segment define an angle being greater than or equal to 90°; an end of second support segment or a tangent of each point of the end of the second support segment, and the central axis of the first support segment define an angle being greater than or equal to 180°; the second support segment or the tangent of each point of the second support segment, and the first support segment define an angle being greater than 90°; and the second support segment of the first support strut is supported on a blood vessel wall by point contact.

17. The vena cava filter of claim 13 , wherein

each of the first support struts comprises a first support segment and a second support segment extending in sequence outwardly radially;

the first support segment or a tangent of each point of the first support segment, and the central axis of the first support segment define an angle therebetween ranging from zero to 90°; the second support segment or a tangent of each point of the second support segment, and the central axis of the first support segment define an angle being greater than or equal to 90°; an end of second support segment or a tangent of each point of the end of the second support segment, and the central axis of the first support segment define an angle being greater than or equal to 180°; the second support segment or the tangent of each point of the second support segment, and the first support segment define an angle being greater than 90°; and the second support segment of the first support strut is supported on a blood vessel wall by point contact.

18. The inferior vena cava filter of claim 3 , further comprises a retrieval portion connected with at least one of the filter portion and the support portion.

19. The inferior vena cava filter of claim 1 , wherein

the first support portion comprises a plurality of first support struts, and each of the plurality of first support struts has a first support segment, a second support segment, and a transition segment;

the first support segment extends from the central cross-linked node in a direction toward the filter portion;

the transition segment is connected between the first support segment and the second support segment; and

the second support segment extends from the transition segment in a direction away from the filter portion and curls in a direction away from the filter portion toward the central cross-linked node.

Assignments (2)
CHANGE OF NAME Recorded Apr 8, 2022
From: HANGZHOU WEI QIANG MEDICAL TECHNOLOGY CO., LTD.
To: HANGZHOU ENDONOM MEDTECH CO., LTD
Reel/Frame 059548/0780 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2018
From: ZHANG, TINGCHAO; LI, YANG
To: HANGZHOU WEI QIANG MEDICAL TECHNOLOGY CO., LTD.
Reel/Frame 047547/0837 →
Priority Claims (1)
CN 2017 1 0233723 · Apr 11, 2017 · national
Continuity (1)
Related Publication 20190216588A1 · Jul 18, 2019