IP Library › Granted Patent US 12,629,169
Granted Patent B2
US 12,629,169 · App. 18/415,780 · Granted May 19, 2026

High pressure protection for jet aspiration catheter

Inventors: Alyssa Madej (Minnetonka, MN); Michael P Schrom (Forest Lake, MN); Anthony Frank Tassoni, Jr. (Andover, MN); Breanne Retherford (Minneapolis, MN)
Assignee: BOSTON SCIENTIFIC SCIMED, INC.
A61B17/32037A61M25/0023A61M25/005
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 12,629,169
App. No.
18/415,780
Granted
May 19, 2026
Kind
B2
Abstract

Thrombectomy catheter and high-pressure protection systems for protecting a catheter shaft from high-pressure fluid jets. An illustrative thrombectomy catheter may comprise a catheter body including a catheter lumen extending therethrough. A high-pressure fluid supply tube extends through the catheter lumen from the catheter body proximal end region toward the catheter body distal end region. The high-pressure fluid supply tube is configured for communication with a fluid source near the catheter body proximal end region. The high-pressure fluid supply tube includes jet orifices for expelling fluid jets from the high-pressure fluid supply tube within the catheter lumen. Reinforcement members are disposed within the catheter lumen such that fluid jets expelled from the jet orifices impinge against the reinforcement members.

Claims (37)

1 . A thrombectomy catheter, comprising:

a catheter body extending from a proximal end region to a distal end region and including an inner surface defining a catheter lumen extending between the proximal end region and the distal end region;

a high-pressure fluid supply tube extending through the catheter lumen from the catheter body proximal end region toward the catheter body distal end region, the high-pressure fluid supply tube configured for communication with a fluid source near the catheter body proximal end region;

at least one jet orifice for expelling at least one fluid jet from said high-pressure fluid supply tube within the catheter lumen;

an entrainment inflow orifice positioned at the distal end region of the catheter body; and

at least one reinforcement member disposed within the catheter lumen;

wherein the at least one fluid jet expelled from the at least one jet orifice is configured to impinge directly against the at least one reinforcement member.

2 . The thrombectomy catheter of claim 1 , wherein the at least one reinforcement member comprises a generally tubular body including a plurality of slots extending through a sidewall of the generally tubular body.

3 . The thrombectomy catheter of claim 2 , wherein the plurality of slots each have a length that extends circumferentially about the generally tubular body.

4 . The thrombectomy catheter of claim 2 , wherein the plurality of slots are longitudinally spaced about a length of the generally tubular body.

5 . The thrombectomy catheter of claim 2 , wherein the generally tubular body includes at least one region free from the plurality of slots.

6 . The thrombectomy catheter of claim 5 , wherein the at least one region free from the plurality of slots is positioned adjacent to the at least one jet orifice for impingement of the at least one fluid jet thereagainst.

7 . The thrombectomy catheter of claim 1 , wherein the at least one reinforcement member comprises a braided tubular body.

8 . The thrombectomy catheter of claim 7 , wherein the braided tubular body includes regions of a lower pic count alternating with regions of a higher pic count along a length of the braided tubular body.

9 . The thrombectomy catheter of claim 1 , wherein the at least one reinforcement member comprises a tubular collar and a wing portion extending longitudinally from the collar.

10 . The thrombectomy catheter of claim 9 , wherein the wing portion is configured to extend less than 270° about an inner circumference of the catheter body.

11 . The thrombectomy catheter of claim 1 , wherein the at least one reinforcement member is secured to the inner surface of the catheter body.

12 . The thrombectomy catheter of claim 1 , wherein the at least one reinforcement member is secured to the high-pressure fluid supply tube.

13 . The thrombectomy catheter of claim 12 , wherein the at least one reinforcement member comprises a plurality of reinforcement members secured to the high-pressure fluid supply tube and axially spaced apart from one another along a length of the high-pressure fluid supply tube.

14 . The thrombectomy catheter of claim 1 , wherein the at least one reinforcement member comprises polyimide, polyether-ether-ketone (PEEK), stainless steel, or nitinol.

15 . The thrombectomy catheter of claim 1 , wherein the at least one reinforcement member comprises a generally tubular body secured to the high-pressure fluid supply tube.

16 . A thrombectomy catheter, comprising:

a catheter body extending from a proximal end region to a distal end region and including an inner surface defining a catheter lumen extending between the proximal end region and the distal end region;

a high-pressure fluid supply tube extending through the catheter lumen from the catheter body proximal end region toward the catheter body distal end region, the high-pressure fluid supply tube configured for communication with a fluid source near the catheter body proximal end region;

a plurality of jet orifices for expelling a plurality of fluid jets from said high-pressure fluid supply tube within the catheter lumen, the plurality of jet orifices spaced along a length of the high-pressure fluid supply tube;

an entrainment inflow orifice positioned at the distal end region of the catheter body; and

a reinforcement member disposed within the catheter lumen and secured to the inner surface of the catheter body, the reinforcement member comprising a tubular body having an inner surface, wherein the inner surface of the tubular body of the reinforcement member comprises an impingement location for impingement of one of the plurality of fluid jets thereagainst.

17 . A thrombectomy catheter, comprising:

a catheter body extending from a proximal end region to a distal end region and including an inner surface defining a catheter lumen extending between the proximal end region and the distal end region;

a high-pressure fluid supply tube extending through the catheter lumen from the catheter body proximal end region toward the catheter body distal end region, the high-pressure fluid supply tube configured for communication with a fluid source near the catheter body proximal end region;

a plurality of jet orifices for expelling a plurality of fluid jets from said high-pressure fluid supply tube within the catheter lumen, the plurality of jet orifices spaced along a length of the high-pressure fluid supply tube;

an entrainment inflow orifice positioned at the distal end region of the catheter body; and

a reinforcement member disposed within the catheter lumen, the reinforcement member comprising a generally tubular body having a concave inner surface defining a lumen extending through the tubular body;

wherein the high-pressure fluid supply tube extends through the lumen of the tubular body and is secured to the concave inner surface of the tubular body;

wherein the fluid jet expelled from one of the plurality of jet orifices is configured to impinge directly against the concave inner surface of the tubular body.

18 . The thrombectomy catheter of claim 17 , wherein the high-pressure fluid supply tube extends along the concave inner surface of the tubular body.

19 . The thrombectomy catheter of claim 17 , wherein the tubular body is welded to the high-pressure fluid supply tube.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2024
From: MADEJ, ALYSSA; SCHROM, MICHAEL P; TASSONI, ANTHONY FRANK, JR.; RETHERFORD, BREANNE
To: BOSTON SCIENTIFIC SCIMED, INC.
Reel/Frame 066232/0470 →
Continuity (2)
Provisional Application 63440249 · Jan 20, 2023
Related Publication 20240245422A1 · Jul 25, 2024
References Cited (103)
US 2568566A · Edward · 1951 [cited by applicant]
US 5370609A · Drasler et al. · 1994 [cited by applicant]
US 5425723A · Wang · 1995 [cited by applicant]
US 5785675A · Drasler et al. · 1998 [cited by applicant]
US 5976103A · Martin · 1999 [cited by applicant]
US 5989210A · Morris et al. · 1999 [cited by applicant]
US 5989271A · Bonnette et al. · 1999 [cited by applicant]
US 6096001A · Drasler et al. · 2000 [cited by applicant]
US 6129697A · Drasler et al. · 2000 [cited by applicant]
US 6224570B1 · Le et al. · 2001 [cited by applicant]
US 6258061B1 · Drasler et al. · 2001 [cited by applicant]
US 6368316B1 · Jansen · 2002 [cited by examiner]
US 6471683B2 · Drasler et al. · 2002 [cited by applicant]
US 6544209B1 · Drasler et al. · 2003 [cited by applicant]
US 6558366B1 · Drasler et al. · 2003 [cited by applicant]
US 6676627B1 · Bonnette et al. · 2004 [cited by applicant]
US 6676637B1 · Bonnette et al. · 2004 [cited by applicant]
US 6719718B2 · Bonnette et al. · 2004 [cited by applicant]
US 6755803B1 · Le et al. · 2004 [cited by applicant]
US 6764483B1 · Bonnette et al. · 2004 [cited by applicant]
US 6805684B2 · Bonnette et al. · 2004 [cited by applicant]
US 6875193B1 · Bonnette et al. · 2005 [cited by applicant]
US 6926726B2 · Drasler et al. · 2005 [cited by applicant]
US 6932828B2 · Bonnette et al. · 2005 [cited by applicant]
US 6945951B1 · Bonnette et al. · 2005 [cited by applicant]
US 6984239B1 · Drasler et al. · 2006 [cited by applicant]
US 7220269B1 · Ansel et al. · 2007 [cited by applicant]
US 7226433B2 · Bonnette et al. · 2007 [cited by applicant]
US 7486175B2 · Suzuki et al. · 2009 [cited by applicant]
US 7572244B2 · Weisel et al. · 2009 [cited by applicant]
US 7615031B2 · Bonnette et al. · 2009 [cited by applicant]
US 7842010B2 · Bonnette et al. · 2010 [cited by applicant]
US 7846175B2 · Bonnette et al. · 2010 [cited by applicant]
US 7879022B2 · Bonnette et al. · 2011 [cited by applicant]
US 7935077B2 · Kneip et al. · 2011 [cited by applicant]
US 7951161B2 · Bonnette et al. · 2011 [cited by applicant]
US 7996974B2 · Kozak et al. · 2011 [cited by applicant]
US 8012117B2 · Bonnette et al. · 2011 [cited by applicant]
US 8162877B2 · Bonnette et al. · 2012 [cited by applicant]
US 8162878B2 · Bonnette et al. · 2012 [cited by applicant]
US 8303538B2 · Bonnette et al. · 2012 [cited by applicant]
US 8353858B2 · Kozak et al. · 2013 [cited by applicant]
US 8430837B2 · Jenson et al. · 2013 [cited by applicant]
US 8439878B2 · Bonnette et al. · 2013 [cited by applicant]
US 8475487B2 · Bonnette et al. · 2013 [cited by applicant]
US 8491523B2 · Scherger et al. · 2013 [cited by applicant]
US 8597238B2 · Bonnette et al. · 2013 [cited by applicant]
US 8647294B2 · Bonnette et al. · 2014 [cited by applicant]
US 8657777B2 · Kozak et al. · 2014 [cited by applicant]
US 8900179B2 · Jenson et al. · 2014 [cited by applicant]
US 8998843B2 · Bonnette et al. · 2015 [cited by applicant]
US 9078691B2 · Morris et al. · 2015 [cited by applicant]
US 9510854B2 · Mallaby · 2016 [cited by applicant]
US 9662137B2 · Jenson et al. · 2017 [cited by applicant]
US 9833257B2 · Bonnette et al. · 2017 [cited by applicant]
US 9883877B2 · Look et al. · 2018 [cited by applicant]
US 10004846B2 · Bonnette et al. · 2018 [cited by applicant]
US 10314608B2 · Jenson et al. · 2019 [cited by applicant]
US 10492805B2 · Culbert et al. · 2019 [cited by applicant]
US 10499944B2 · Mallaby · 2019 [cited by applicant]
US 10561440B2 · Look et al. · 2020 [cited by applicant]
US 10716583B2 · Look et al. · 2020 [cited by applicant]
US 11553942B2 · Bonnette · 2023 [cited by examiner]
US 20050096607A1 · Beck · 2005 [cited by applicant]
US 20060106285A1 · Boulais et al. · 2006 [cited by applicant]
US 20060129091A1 · Bonnette et al. · 2006 [cited by applicant]
US 20080188793A1 · Kozak et al. · 2008 [cited by applicant]
US 20080275383A1 · Weisel · 2008 [cited by examiner]
US 20080275393A1 · Bonnette et al. · 2008 [cited by applicant]
US 20080319386A1 · Bonnette et al. · 2008 [cited by applicant]
US 20110015564A1 · Bonnette et al. · 2011 [cited by applicant]
US 20130046282A1 · O'Day et al. · 2013 [cited by applicant]
US 20130310845A1 · Scherger, III et al. · 2013 [cited by applicant]
US 20140005699A1 · Bonnette et al. · 2014 [cited by applicant]
US 20140088610A1 · Bonnette et al. · 2014 [cited by applicant]
US 20140214060A1 · Bonnette et al. · 2014 [cited by applicant]
US 20140228869A1 · Bonnette et al. · 2014 [cited by applicant]
US 20140277006A1 · Bonnette et al. · 2014 [cited by applicant]
US 20170216503A1 · Look et al. · 2017 [cited by applicant]
US 20180207397A1 · Look et al. · 2018 [cited by applicant]
US 20180228502A1 · Shaffer et al. · 2018 [cited by applicant]
US 20190209745A1 · Hanson · 2019 [cited by examiner]
US 20190274704A1 · Jenson et al. · 2019 [cited by applicant]
US 20200015840A1 · Mallaby · 2020 [cited by applicant]
US 20200022711A1 · Look et al. · 2020 [cited by applicant]
US 20200121356A1 · Look et al. · 2020 [cited by applicant]
US 20200155178A1 · Culbert et al. · 2020 [cited by applicant]
US 20200297363A1 · Look et al. · 2020 [cited by applicant]
US 20220287766A1 · Richards et al. · 2022 [cited by applicant]
US 20220370084A1 · Quillin · 2022 [cited by applicant]
EP 2362751B1 · 2016 [cited by applicant]
EP 2120737B1 · 2020 [cited by applicant]
EP 3689274A1 · 2020 [cited by applicant]
EP 3145557B1 · 2021 [cited by applicant]
EP 3821921A1 · 2021 [cited by applicant]
EP 3570901B1 · 2022 [cited by applicant]
JP 5385155B2 · 2014 [cited by applicant]
WO 0151116A2 · 2001 [cited by applicant]
WO 2008097339A2 · 2008 [cited by applicant]
WO 2017041062A1 · 2017 [cited by applicant]
WO 2017177022A1 · 2017 [cited by applicant]
WO 2019140132A1 · 2019 [cited by applicant]
International Search Report and Written Opinion for International Application No. PCT/US2024/011915 dated Mar. 21, 2024. (12 pages). [cited by applicant]