IP Library Granted Patent US 12,685,549
Granted Patent B2
US 12,685,549 · App. 18/156,944 · Granted Jul 21, 2026

Clot treatment systems with dilator locking mechanisms, and associated devices and methods

Inventors: Joshua Garrett Long (Mission Viejo, CA); Mikayla Ann Barkley (Newport Beach, CA); Benjamin Edward Merritt (San Clemente, CA)
Assignee: Stryker Corporation
A61B17/221A61M25/0075
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Quick Facts
Patent No.
US 12,685,549
App. No.
18/156,944
Filed
Jan 19, 2023
Granted
Jul 21, 2026
Kind
B2
Art Unit
3771
USPC
606/159
Abstract

Disclosed herein are vascular access systems with dilator locking mechanisms, and associated devices and methods. In some embodiments, the dilator locking mechanisms include a first cap coupled to a dilator component and a second cap coupled to the vascular access system. The first cap can include one or more locking members. The second cap can include one or more locking features, each configured to be releasably coupled to one of the locking members. In operation, the dilator component can be inserted into the vascular access system, and at least a portion of one or more of the locking members can be aligned with and inserted into the corresponding locking feature to, e.g., couple the first cap and the second cap. The interaction between first and second caps when coupled can at least partially prevent the dilator from moving relative to the vascular access system.

Claims (62)

1 . A cap assembly for a catheter, the cap assembly comprising:

a first cap including a locking member, wherein the locking member includes an end portion and a tab positioned proximate the end portion; and

a second cap defining a longitudinal axis and including a locking feature, wherein the locking feature includes a slot extending at least partially through the second cap and an axial removal surface positioned proximate the slot, sloped relative to the longitudinal axis, and extending at least partially around the longitudinal axis, and wherein

the first cap is configured to be secured to the second cap in a locked position,

in the locked position, the second cap is configured to receive the locking member through the slot such that the tab engages a portion of the second cap to inhibit movement of the first cap relative to the second cap, and

the first cap is configured to rotate relative to the second cap to (i) move the tab out of engagement with the portion of the second cap and thereby move the first cap from the locked position to an unlocked position and to (ii) translate the tab along at least a portion of the axial removal surface to drive the first cap longitudinally away from the second cap.

2 . The cap assembly of claim 1 wherein the first cap includes an upper surface, and wherein the locking member extends from the upper surface in a direction generally perpendicular to the upper surface, and wherein the end portion of the locking member is opposite the upper surface.

3 . The cap assembly of claim 1 wherein the tab extends perpendicularly from the locking member.

4 . The cap assembly of claim 1 wherein the tab defines a retaining surface positioned to contact at least a portion of the second cap when the first cap is coupled to the second cap.

5 . The cap assembly of claim 1 wherein the locking member is flexible, and wherein the second cap is configured to bend the locking member when the first cap moves between the unlocked position and the locked position.

6 . The cap assembly of claim 1 wherein the locking feature includes a locking surface positioned to at least partially contact the tab of the locking member when the first cap is coupled to the second cap.

7 . The cap assembly of claim 1 wherein the locking feature includes an angled insertion surface positioned to engage and deflect the locking member when the first cap moves from the unlocked position toward the locked position.

8 . The cap assembly of claim 7 wherein the cap assembly includes a longitudinal axis, and where the insertion surface is angled to bend the locking member inward toward the longitudinal axis.

9 . The cap assembly of claim 1 wherein the locking feature includes a radial removal surface, and wherein the radial removal surface is angled to deflect the tab inward when the first cap is rotated relative to the second cap.

10 . The cap assembly of claim 1 wherein:

the first cap includes an upper surface, and the locking member extends from the upper surface in a direction perpendicular to the upper surface;

the locking member is flexible and configured to deflect when the first cap moves between the unlocked position and the locked position;

the tab defines a retaining surface positioned to contact at least a portion of the second cap in the locked position; and

the locking feature includes

a locking surface positioned to at least partially contact the retaining surface of the tab in the locked position,

an insertion surface positioned to be at least partially aligned with the locking member and angled to deflect the locking member inward when the first cap moves from the unlocked position toward the locked position, and

a radial removal surface positioned proximate the tab of the locking member in the locked position, wherein the radial removal surface is angled to move the tab radially inward when the first cap moves from the locked position toward the unlocked position.

11 . The cap assembly of claim 1 wherein the locking member is a first locking member, wherein the locking feature is a first locking feature, wherein the first cap includes one or more second locking members, wherein the second cap includes one or more second locking features, and wherein individual ones of the second locking members are configured to receive and secure corresponding ones of the second locking members in the locked position.

12 . The cap assembly of claim 1 wherein the locking feature is configured to be rotationally agnostic such that rotation of the first cap relative to the second cap in a first direction and a second direction opposite the first direction moves the tab out of engagement with the second cap to move the first cap from the locked position to the unlocked position.

13 . A vascular access system, comprising:

a valve having a proximal end and a distal end;

a catheter defining a lumen and coupled to the distal end of the valve, the catheter defining a longitudinal axis of the vascular access system;

a dilator configured to extend at least partially through the valve and the lumen; and

a cap assembly movable between a locked configuration and an unlocked configuration, wherein the cap assembly includes (i) a valve cap connected to the proximal end of the valve and including a coupling feature, and (ii) a dilator cap coupled to the dilator and including a coupling tab insertable into the coupling feature, wherein

the coupling feature includes an angled insertion surface and a slot extending from the angled insertion surface through at least a portion of the valve cap,

the angled insertion surface is positioned to engage and deflect the coupling tab as the dilator cap is moved axially toward the valve cap to transition the cap assembly from the unlocked configuration toward and/or to the locked configuration,

in the locked configuration, the coupling feature is configured to receive the coupling tab such that the coupling tab engages a portion of the valve cap through the slot to inhibit movement of the dilator relative to the valve along the longitudinal axis, and

the dilator cap is configured to rotate relative to the valve cap to move the coupling tab out of engagement with the valve cap to move the cap assembly from the locked configuration toward the unlocked configuration.

14 . The vascular access system of claim 13 wherein the coupling tab is flexible, wherein the coupling feature is configured to deflect the coupling tab toward the longitudinal axis when the cap assembly moves from the unlocked configuration toward the locked configuration.

15 . The vascular access system of claim 13 wherein the dilator cap includes a coupling member extending in a direction generally parallel to the dilator and having a distal end, and wherein the coupling tab is positioned proximate the distal end of the coupling member.

16 . The vascular access system of claim 13 wherein the valve cap has a valve cap longitudinal axis, and wherein the coupling feature is curved circumferentially at least partially about the valve cap longitudinal axis.

17 . The vascular access system of claim 13 wherein the coupling feature includes a coupling surface positioned to at least partially contact the coupling tab of the dilator cap when the cap assembly is in the locked configuration.

18 . The vascular access system of claim 17 wherein the angled insertion surface is positioned proximally from the coupling surface.

19 . The vascular access system of claim 17 wherein the angled insertion surface forms an acute interior angle relative to the coupling surface.

20 . The vascular access system of claim 13 wherein the coupling feature includes a radial removal surface configured to move the coupling tab radially inward toward the longitudinal axis when the cap assembly moves from the locked configuration toward the unlocked configuration.

21 . The vascular access system of claim 13 wherein the coupling feature includes (i) a slot configured to receive the coupling tab, and (ii) an axial removal surface positioned proximate the slot and angled to move the dilator cap away from the valve cap along the longitudinal axis when the dilator cap is rotated relative to the valve cap.

22 . The vascular access system of claim 13 wherein the coupling feature includes an outer wall and a pair of radial removal surfaces positioned on left and right sides of the outer wall, and wherein

in the locked configuration, the coupling tab is positioned between the pair of radial removal surfaces, and

rotation of the dilator cap in a left or right direction relative to the valve cap moves the cap assembly from the locked configuration toward the unlocked configuration.

23 . The vascular access system of claim 13 wherein the valve cap is integrally formed with the proximal end of the valve.

24 . The vascular access system of claim 13 wherein the valve cap is releasably coupled to the proximal end of the valve.

25 . A method of using a vascular access system, the method comprising:

aligning a first cap of the vascular access system with a second cap of the vascular access system, wherein the first cap is coupled to a dilator of the vascular access system, wherein the second cap is coupled to a catheter of the vascular access system, and wherein aligning the first cap with the second cap includes

aligning a locking member of the first cap with a locking feature of the second cap, and

aligning a tab of the locking member with an angled insertion surface of the locking feature; and

coupling the first cap to the second cap to inhibit the dilator from moving relative to the catheter of the vascular access system, wherein coupling the first cap to the second cap includes

positioning the tab of the locking member to contact the angled insertion surface of the locking feature,

moving the first cap axially toward the second cap to translate the tab across the angled insertion surface, and

inserting the locking member into the locking feature such that the locking feature drives the locking member past a locking surface of the locking feature,

wherein the locking surface is configured to engage the locking member to inhibit longitudinal movement of the first cap relative to the second cap.

26 . The method of claim 25 wherein coupling the first cap to the second cap further includes positioning the dilator at least partially within the catheter.

27 . The method of claim 25 wherein coupling the first cap to the second cap further includes inserting the dilator fully through the catheter.

28 . The method of claim 25 , further comprising rotating the first cap relative to the second cap to uncouple the first cap from the second cap after coupling the first cap to the second cap.

29 . The method of claim 28 wherein rotating the first cap includes translating at least a portion of the locking member across a radial removal surface of the locking feature, wherein the radial removal surface is angled to deflect the locking member when the first cap is rotated relative to the second cap.

30 . The method of claim 28 wherein rotating the first cap includes moving the first cap longitudinally away from the second cap.

31 . The method of claim 30 wherein moving the first cap away from the second cap includes translating the locking member across an axial removal surface of the locking feature, wherein the axial removal surface is angled to move the first cap away from the second cap as the locking member translates across the axial removal surface.

32 . The method of claim 28 wherein rotating the first cap relative to the second cap to uncouple the first cap from the second cap includes rotating the first cap in a first direction or a second direction opposite the first direction to uncouple the first cap from the second cap.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Apr 29, 2026
From: INARI MEDICAL, INC.
To: STRYKER CORPORATION
Reel/Frame 075486/0805 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2023
From: LONG, JOSHUA GARRETT; BARKLEY, MIKAYLA ANN; MERRITT, BENJAMIN EDWARD
To: INARI MEDICAL, INC.
Reel/Frame 063816/0809 →
Continuity (2)
Provisional Application 63307766 · Feb 8, 2022
Related Publication 20230248380A1 · Aug 10, 2023
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