IP Library Granted Patent US 9,993,257
Granted Patent B2
US 9,993,257 · App. 15/614,053 · Granted Jun 12, 2018

Clot retrieval device for ischemic stroke treatment

Inventors: Michael Losordo (San Juan Capistrano, CA); Jianlu Ma (Irvine, CA)
Assignee: NeuroVarc Technologies Inc.
A61B17/221A61B2017/2215A61B2017/22081
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Quick Facts
Patent No.
US 9,993,257
App. No.
15/614,053
Granted
Jun 12, 2018
Kind
B2
Abstract

A clot removal device has a segment that has two main struts that serve as a frame for holding a plurality of secondary struts. Each of the two main struts has a proximal end that is connected at a proximal point of the segment and extends along a generally circumferential path, with each main strut terminating at a separate connecting point that is distal from the proximal point. The connecting points are connected to each other to form a generally tubular structure defining an inner lumen. The plurality of secondary struts forms a lattice of cells, with each cell surrounded by four secondary struts. Two generally straight distal struts are connected to the lattice of cells at a distal end of the segment, and are connected to each other to form a distal point. A distal opening is defined by the cells adjacent the distal struts, the distal opening communicating with the lumen and terminating at the proximal point.

Claims (28)

1. A method for removing a clot or embolus from a blood vessel, comprising:

providing a clot removal device, comprising a plurality of segments that includes at least a first segment and a second segment, each segment having two main struts that serve as a supporting frame that is connected to a plurality of secondary struts, wherein:

the plurality of secondary struts form a lattice of cells for each segment;

the two main struts of the first segment having proximal ends that are connected to each other at a proximal point of the first segment, and distal ends terminating at separate connecting points that are distal from the proximal point, with the connecting points being connected to each other to form a generally tubular structure defining an inner lumen for the first segment; and

the two main struts of the second segment having proximal ends, each being connected to a separate one of the distal ends of the two main struts of the first segment at the connecting points, and the main struts of the second segment also having distal ends that are connected to each other in the second segment;

delivering the clot removal device to a location at or adjacent to a clot or embolus in the blood vessel;

expanding the plurality of segments at or adjacent the location of the clot or embolus;

catching or engaging the clot or embolus with at least one of the plurality of segments or between two adjacent segments; and

withdrawing the plurality of segments with the engaged clot or embolus.

2. The method of claim 1 , further including the step of providing the first segment with two generally straight distal struts are connected to the lattice of cells at a distal end of the segment, and are connected to each other to form a distal point, thereby defining a first segment distal opening by the cells adjacent the distal struts, with the first segment distal opening communicating with the lumen and terminating at the proximal point.

3. The method of claim 1 , further including the step of providing each secondary strut with a straight section having opposite ends that are slightly curved in opposite directions so as to form an S-shape, with the secondary struts joined at connection points to form the cells.

4. The method of claim 3 , wherein the cells have a tear-drop-like shape.

5. The method of claim 2 , wherein the second segment comprises two generally straight second segment distal struts extending distally from a distal end of the second segment to define a second segment distal opening, wherein the first segment distal opening and second segment distal opening are axially offset by 180 degrees.

6. A method for removing a clot or embolus from a blood vessel, comprising:

providing a clot removal device, comprising a plurality of segments that includes at least a first segment, a second segment and a third segment, each segment having two main struts that serve as a supporting frame that is connected to a plurality of secondary struts, wherein:

the plurality of secondary struts form a lattice of cells for each segment;

the two main struts of the first segment having proximal ends that are connected to each other at a proximal point of the first segment, and distal ends terminating at separate first segment connecting points that are distal from the proximal point, with the first segment connecting points being connected to each other to form a generally tubular structure defining an inner lumen for the first segment;

the two main struts of the second segment having proximal ends, each being connected to a separate one of the distal ends of the two main struts of the first segment at the first segment connecting points, and the main struts of the second segment also having distal ends that are connected to each other in the second segment; and

the two main struts of the third segment having proximal ends that are connected to each other at a proximal point of the third segment, and to the distal ends of the two main struts of the second segment, the two main struts of the third segment also having distal ends terminating at separate third segment connecting points that are distal from the proximal point, with the third segment connecting points being connected to each other to form a generally tubular structure defining an inner lumen for the third segment;

delivering the clot removal device to a location at or adjacent to a clot or embolus in the blood vessel;

expanding the plurality of segments at or adjacent the location of the clot or embolus;

catching or engaging the clot or embolus with at least one of the plurality of segments or between two adjacent segments; and

withdrawing the plurality of segments with the engaged clot or embolus.

7. The method of claim 6 , further including the step of providing the first segment with two generally straight distal struts are connected to the lattice of cells at a distal end of the segment, and are connected to each other to form a distal point, thereby defining a first segment distal opening by the cells adjacent the distal struts, with the first segment distal opening communicating with the lumen and terminating at the proximal point.

8. The method of claim 6 , further including the step of providing each secondary strut with a straight section having opposite ends that are slightly curved in opposite directions so as to form an S-shape, with the secondary struts joined at connection points to form the cells.

9. The method of claim 8 , wherein the cells have a tear-drop-like shape.

10. The method of claim 7 , wherein the second segment comprises two generally straight second segment distal struts extending distally from a distal end of the second segment to define a second segment distal opening, wherein the first segment distal opening and second segment distal opening are axially offset by 180 degrees.

11. The method of claim 6 , wherein the plurality of segments further includes a fourth segment having the two main struts, each having proximal ends that are connected to a separate one of the distal ends of the two main struts of the third segment at the third segment connecting points, and the main struts of the fourth segment also having distal ends that are connected to each other in the fourth segment.

Assignments (2)
SECURITY INTEREST Recorded Jan 19, 2021
From: NEUROVASC TECHNOLOGIES INC.
To: WEIGAO HOLDING COMPANY LIMITED
Reel/Frame 055019/0379 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2017
From: LOSORDO, MICHAEL; MA, JIANLU
To: NEUROVASC TECHNOLOGIES, INC.
Reel/Frame 042601/0622 →
Continuity (2)
Provisional Application 62384678 · Sep 7, 2016
Related Publication 20180064454A1 · Mar 8, 2018