IP Library Granted Patent US 11,337,712
Granted Patent B2
US 11,337,712 · App. 17/387,704 · Granted May 24, 2022

Aspiration thrombectomy system and methods for thrombus removal with aspiration catheter

Inventors: Scott Teigen (West Fargo, ND); Steven Loisel (Castro Valley, CA); Stephen Pons (Alameda, CA); Ben Tompkins (Danville, CA)
Assignee: Penumbra, Inc.
A61B17/22A61M1/75A61M1/76A61M1/77A61M1/774A61B17/00A61B17/32037A61B17/3498A61B90/06A61B2017/00022A61B2017/00561A61B2090/064A61B2217/005A61M39/105A61M2205/3334A61M2205/3344
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,337,712
App. No.
17/387,704
Granted
May 24, 2022
Kind
B2
Abstract

An aspiration thrombectomy system, comprising an aspiration catheter having a proximal end and a distal end, wherein the proximal end of the aspiration catheter comprises a lumen configured to accommodate fluid, a vacuum source comprising a controllable vacuum valve, and a controller configured to detect a change in a connection between the aspiration catheter and the aspiration thrombectomy system, wherein the controller is further configured to change a pulsation protocol associated with the aspiration catheter responsive to the change in the connection between the aspiration catheter and the aspiration thrombectomy system, wherein the pulsation protocol specifies pressure variations and pressure patterns to modulate the vacuum valve to change a level of vacuum at the distal end of the aspiration catheter.

Claims (23)

1. An aspiration thrombectomy system, comprising:

an aspiration catheter having a proximal end and a distal end, wherein the proximal end of the aspiration catheter comprises a lumen configured to accommodate fluid;

a vacuum source comprising a controllable vacuum valve;

a tubing connected to the aspiration catheter; and

a controller configured to detect a change in a catheter diameter corresponding to a change in the connection between the aspiration catheter and the tubing, wherein the controller is further configured to change a pulsation protocol associated with the aspiration catheter responsive to the change in the catheter diameter, wherein the pulsation protocol specifies pressure variations and pressure patterns to modulate the vacuum valve to change a level of vacuum at the distal end of the aspiration catheter.

2. The aspiration thrombectomy system of claim 1 , further comprising:

a pressure source comprising a controllable pressure valve, wherein the pressure source is configured to contain a volume of fluid, and wherein the controller is further configured to modulate the pressure valve according to the pressure variations and pressure patterns specified by the pulsation protocol.

3. The aspiration thrombectomy system of claim 2 , wherein the pulsation protocol specifies one or more time periods where both the pressure and vacuum valves are closed.

4. The aspiration thrombectomy system of claim 2 , wherein the pulsation protocol specifies a repeated cycle comprising one or more time periods of a pressure-only state in which the vacuum valve is closed and the pressure valve is open.

5. The aspiration thrombectomy system of claim 4 , wherein each of the one or more time periods of the pressure-only state is no greater than 50 ms.

6. The aspiration thrombectomy system of claim 2 , wherein the tubing acts as a common conduit for fluid communication between the aspiration catheter and the vacuum and pressure sources via the vacuum and pressure valves, respectively.

7. The aspiration thrombectomy system of claim 6 , further comprising:

an external unit, wherein the aspiration catheter is connected to the tubing through the external unit.

8. The aspiration thrombectomy system of claim 7 , wherein the external unit comprises a switch for operating the aspiration thrombectomy system, and wherein the controller is configured to carry out the pulsation protocol in response to actuation of the switch.

9. The aspiration thrombectomy system of claim 7 , wherein the external unit and tubing fluidically connect the proximal end of the aspiration catheter to an output of a valve structure in fluid communication with the pressure source and the vacuum source.

10. The aspiration thrombectomy system of claim 7 , wherein the external unit is configured to communicate, with the controller, pulsation protocol data associated with the aspiration catheter.

11. The aspiration thrombectomy system of claim 10 , wherein the pulsation protocol data is communicated with the controller responsive to the change in the catheter diameter.

12. The aspiration thrombectomy system of claim 1 , wherein the detected change in the catheter diameter corresponds to a change in the connection is between one of a plurality of aspiration catheters and the tubing.

13. The aspiration thrombectomy system of claim 1 , wherein the controller is further configured to substantially control flow in and out from the distal end of the catheter.

14. The aspiration thrombectomy system of claim 1 , wherein the controller is configured to modulate the vacuum valve according to the pressure variations and pressure patterns specified by the pulsation protocol.

15. The aspiration thrombectomy system of claim 1 , wherein the controller is an electronic controller.

16. The aspiration thrombectomy system of claim 1 , wherein the controller is separate from the vacuum source.

17. The aspiration thrombectomy system of claim 1 , wherein the controller is configured to repeatedly and periodically modulate the vacuum valve to cause the pressure variations and pressure patterns specified by the pulsation protocol.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 9, 2026
From: TEIGEN, SCOTT; LOISEL, STEVEN; PONS, STEPHEN; TOMPKINS, BEN
To: PENUMBRA, INC.
Reel/Frame 073427/0514 →
Continuity (5)
Continuation 16988556 · Aug 7, 2020
Continuation PCTUS2019043095 · Jul 23, 2019
Provisional Application 62778708 · Dec 12, 2018
Provisional Application 62702804 · Jul 24, 2018
Related Publication 20210353323A1 · Nov 18, 2021
Cited By (43)
US 1,102,447 US 1,119,865 US 12,193,736 US 12,201,311 US 12,201,506 US 12,220,139 US 12,232,838 US 12,239,777 US 12,262,903 US 12,329,397 US 12,343,024 US 12,350,443 US 12,376,904 US 12,376,928 US 12,377,206 US 12,408,933 US 12,414,784 US 12,419,703 US 12,433,702 US 12,440,289 US 12,446,979 US 12,447,317 US 12,453,564 US 12,471,937 US 12,496,076 US 12,502,185 US 12,508,093 US 12,514,456 US 12,521,132 US 12,533,147 US 12,558,175 US 12,564,414 US 12,564,458 US 12,569,308 US 12,575,844 US 12,605,523 US 12,622,715 US 12,636,022 US 12,642,542 US 12,642,543 US 12,661,193 US 12,678,249 US 12,702,509