IP Library Granted Patent US 12,156,671
Granted Patent B2
US 12,156,671 · App. 18/052,955 · Granted Dec 3, 2024

Axial lengthening thrombus capture system

Inventors: Thanh Van Nguyen (Anaheim, CA); Duy Nguyen (Anaheim, CA); Tung Hoang Ngo (Anaheim, CA)
Assignee: Vascular Medcure, Inc.
A61B17/221A61B17/320758A61F2/013A61B2017/00867A61B2017/00871A61B2017/00893A61B2017/00938A61B2017/00942A61B2017/22038A61B2017/22079A61B2017/22081A61B2017/22084A61B2017/2212A61B2017/2217A61B2017/320052A61B2017/320716A61B2017/320775A61F2/011A61F2002/016
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Quick Facts
Patent No.
US 12,156,671
App. No.
18/052,955
Granted
Dec 3, 2024
Kind
B2
Abstract

In some examples, a capture assembly configured to remove material of interest, including blood clots, from a body region, including but not limited to the circulatory system, includes a body configured to receive the material of interest. The body can be configured to axially lengthen and shorten.

Claims (47)

1. A material capture system comprising:

a first shaft defining a central lumen;

a second shaft comprising a distal tip, the second shaft configured to be positioned within the central lumen of the first shaft; and

a body comprising a first end, a second end, and a fold point between the first and second ends, wherein the first end defines a proximal-facing opening and is attached to the first shaft, and wherein the second end is attached to the second shaft,

wherein the body is configured to be transformed between a first configuration in which the first end is expanded and a first axial distance separates the fold point and the distal tip and a second configuration in which the first end is expanded and a second axial distance separates the fold point and the distal tip, the second axial distance being different than the first axial distance, and

wherein the body is configured to transform from the first configuration to the second configuration in response to maintaining the second shaft in a constant position while the first shaft moves proximally with respect to the distal tip.

2. The material capture system of claim 1 , wherein when the body is configured such that as the body is transformed from the first configuration to the second configuration, the proximal-facing opening moves proximally.

3. The material capture system of claim 1 , wherein the second axial distance is greater than the first axial distance.

4. The material capture system of claim 1 , wherein a reserve length of the body is compressed between the first shaft and the second shaft.

5. The material capture system of claim 1 , wherein the body is configured such that the fold point moves proximally when the body is transformed from the first configuration to the second configuration.

6. The material capture system of claim 1 , wherein the fold point is not attached to the first shaft or the second shaft.

7. The material capture system of claim 1 further comprising a ring-shaped member attached to the proximal-facing opening of the body.

8. The material capture system of claim 1 , wherein in the first configuration, a first expanded axial length of the body separates the fold point and the proximal-facing opening of the body, and wherein in the second configuration, a second expanded axial length of the body separates the fold point and the proximal-facing opening of the body, the second expanded axial length being different than the first expanded axial length.

9. The material capture system of claim 8 , wherein the second expanded axial length is greater than the first expanded axial length.

10. The material capture system of claim 8 , wherein when the body transforms between the first configuration and the second configuration, the first expanded axial length of the body and the second expanded axial length of the body maintain a substantially constant diameter.

11. The material capture system of claim 1 , wherein the second end of the body is attached to the second shaft at a second end attachment point, wherein in the first configuration, the second end attachment point is proximal of the proximal-facing opening of the body, and wherein in the second configuration, the second end attachment point is distal of the proximal-facing opening of the body.

12. The material capture system of claim 1 , wherein the second end of the body is attached to the second shaft at a second end attachment point, wherein in the first configuration, a first compressed axial length of the body separates the fold point and the second end attachment point, and wherein in the second configuration, a second compressed axial length of the body separates the fold point and the second end attachment point, the second compressed axial length of the body being different than the first compressed axial length of the body.

13. The material capture system of claim 12 , wherein the second compressed axial length of the body is less than the first compressed axial length of the body.

14. The material capture system of claim 12 , wherein the second compressed axial length of the body is a minority of an overall length of the body.

15. A material capture system comprising:

a first shaft defining a central lumen;

a second shaft comprising a distal tip, the second shaft configured to be positioned within the central lumen of the first shaft; and

a body comprising a first end, a second end, and a dynamic fold point between the first and second ends, wherein the first end defines a proximal-facing opening and is attached to the first shaft, and wherein the second end is attached to the second shaft proximal the distal tip,

wherein the body is configured to be transformed between a first configuration in which the first end is expanded and a first axial distance separates the dynamic fold point and the distal tip and a second configuration in which the first end is expanded and a second axial distance separates the dynamic fold point and the distal tip, the second axial distance being greater than the first axial distance,

wherein in the first configuration, a first expanded axial length of the body separates the dynamic fold point and the proximal-facing opening of the body, and wherein in the second configuration, a second expanded axial length of the body separates the dynamic fold point and the proximal-facing opening of the body, the second expanded axial length being greater than the first expanded axial length.

16. The material capture system of claim 15 , wherein the body is configured to transform from the first configuration to the second configuration in response to maintaining the second shaft in a constant position while the first shaft moves proximally with respect to the distal tip.

17. The material capture system of claim 15 , wherein the second end of the body is attached to the second shaft at a second end attachment point, wherein in the first configuration, the second end attachment point is proximal of the proximal-facing opening of the body, and wherein in the second configuration, the second end attachment point is distal of the proximal-facing opening of the body.

18. The material capture system of claim 15 further comprising a ring-shaped member attached to the proximal-facing opening.

19. A method comprising:

positioning a material capture system near an obstruction, the material capture system comprising:

a first shaft defining a central lumen;

a second shaft comprising a distal tip, the second shaft configured to be positioned within the central lumen of the first shaft; and

a body comprising a first end, a second end, and a fold point between the first and second ends, wherein the first end defines a proximal-facing opening and is attached to the first shaft, and wherein the second end is attached to the second shaft; and

transforming the material capture system between a first configuration in which the first end is expanded and a first axial distance separates the fold point and the distal tip and a second configuration in which the first end is expanded and a second axial distance separates the fold point and the distal tip, the second axial distance being different than the first axial distance,

wherein the body is configured to transform from the first configuration to the second configuration in response to maintaining the second shaft in a constant position while the first shaft moves proximally with respect to the distal tip.

20. A material capture system comprising:

a first shaft defining a central lumen;

a second shaft comprising a distal tip, the second shaft configured to be positioned within the central lumen of the first shaft; and

a body comprising a first end, a second end, and a fold point between the first and second ends, wherein the first end defines a proximal-facing opening and is attached to the first shaft, and wherein the second end is attached to the second shaft,

wherein the body is configured to be transformed between a first configuration in which the first end is expanded and a first axial distance separates the fold point and the distal tip and a second configuration in which the first end is expanded and a second axial distance separates the fold point and the distal tip, the second axial distance being different than the first axial distance, and

wherein the second end of the body is attached to the second shaft at a second end attachment point, wherein in the first configuration, the second end attachment point is proximal of the proximal-facing opening of the body, and wherein in the second configuration, the second end attachment point is distal of the proximal-facing opening of the body.

21. A material capture system comprising:

a first shaft defining a central lumen;

a second shaft comprising a distal tip, the second shaft configured to be positioned within the central lumen of the first shaft; and

a body comprising a first end, a second end, and a fold point between the first and second ends, wherein the first end defines a proximal-facing opening and is attached to the first shaft, and wherein the second end is attached to the second shaft,

wherein the body is configured to be transformed between a first configuration in which the first end is expanded and a first axial distance separates the fold point and the distal tip and a second configuration in which the first end is expanded and a second axial distance separates the fold point and the distal tip, the second axial distance being different than the first axial distance, and

wherein the second end of the body is attached to the second shaft at a second end attachment point, wherein in the first configuration, a first compressed axial length of the body separates the fold point and the second end attachment point, and wherein in the second configuration, a second compressed axial length of the body separates the fold point and the second end attachment point, the second compressed axial length of the body being different than the first compressed axial length of the body.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 7, 2022
From: NGUYEN, THANH VAN; NGUYEN, DUY; NGO, TUNG HOANG
To: KP MEDCURE, INC.
Reel/Frame 061669/0663 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 7, 2022
From: KP MEDCURE, INC.
To: VASCULAR MEDCURE, INC.
Reel/Frame 061669/0723 →
Continuity (10)
Continuation 16717345 · Dec 17, 2019
Continuation 16207768 · Dec 3, 2018
Continuation 15845086 · Dec 18, 2017
Continuation 15581272 · Apr 28, 2017
Continuation 15376448 · Dec 12, 2016
Continuation 15230109 · Aug 5, 2016
Provisional Application 62345863 · Jun 6, 2016
Provisional Application 62273418 · Dec 30, 2015
Provisional Application 62202074 · Aug 6, 2015
Related Publication 20230066304A1 · Mar 2, 2023
Cited By (2)
US 12,502,191 US 12,502,192