IP Library Granted Patent US 11,324,939
Granted Patent B2
US 11,324,939 · App. 17/307,766 · Granted May 10, 2022

Methods and devices for vascular access

Inventors: Clint Solomon (Morgan Hill, CA); Vincent Leskowich (Oakhurst, NJ); Thomas Sutton (Summit, NJ); James Hale (Los Osos, CA); Jacob Hentzler (Morgan Hill, CA)
Assignee: I-V Access Technology, Inc.
A61M39/26A61M25/0606A61M25/0625A61M39/045A61M39/1011A61M25/0097A61M25/0631A61M29/00A61M39/06A61M2025/0687A61M2039/0036
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 11,324,939
App. No.
17/307,766
Granted
May 10, 2022
Kind
B2
Abstract

Valve assemblies having improved ability to selectively control flow of fluids through the catheter and prevent leakage of fluids from the proximal end of a catheter that is positioned within a patient. Such improved catheter valve assemblies also prevent leakage of fluids after repeated insertion and removal of medical instruments through the valve.

Claims (44)

1. A valve assembly configured for use with a male luer having a distal end, a lateral surface and a connector portion, the valve assembly comprising:

a hub configured to receive the male luer in a proximal end:

a valve coupled to a chamber within the hub and comprising a barrier layer at a far end and a wall portion;

the wall portion extending proximally from the barrier layer towards a near end of the valve, the wall portion defining a valve cavity therein, the barrier layer having at least one slit extending therethrough;

wherein an offset distance, measured between a surface of the wall portion in the valve cavity and a surface of the chamber adjacent to the barrier layer at the far end of the valve, is less than a thickness of the barrier layer;

where the valve is configured for positioning in the hub such that the wall portion engages the surface of the chamber within the hub; and

wherein the barrier layer is configured to deform by elastic deformation rather than fluid pressure such that insertion of the male luer into the valve cavity causes the distal end of the male luer to deform the barrier layer and open the at least one slit to permit fluid flow through the barrier layer, while the lateral surface of the male luer engages the wall portion at an interior of the valve cavity causing the wall portion to engage the surface of the chamber.

2. The valve assembly of claim 1 , wherein the at least one slit forms a plurality of leaflets in the barrier layer.

3. The valve assembly of claim 2 , wherein a perimeter of the at least one slit is limited to the barrier layer such that the plurality of leaflets do not extend into the wall portion.

4. The valve assembly of claim 2 , wherein the at least one slit is branched such that the plurality of leaflets comprises at least three leaflets.

5. The valve assembly of claim 2 , wherein a thickness of each of the plurality of leaflets is the same.

6. The valve assembly of claim 1 , wherein an entire outer surface of the wall portion contacts the surface of the chamber.

7. The valve assembly of claim 1 , wherein an entire outer surface of the wall portion comprises a cylindrical shape having a uniform outer diameter.

8. The valve assembly of claim 1 , further comprising a flange portion at the near end of the valve.

9. The valve assembly of claim 8 , wherein the flange portion comprises a raised surface on an exterior surface of the valve.

10. The valve assembly of claim 8 , wherein a proximal end of the flange portion extends beyond the proximal end of the hub.

11. The valve assembly of claim 10 , wherein the flange portion partially covers the proximal end of the hub.

12. The valve assembly of claim 1 , wherein the valve is axially recessed within the hub.

13. The valve assembly of claim 1 , wherein the wall portion includes at least one or more gaps to form at least one or more legs.

14. The valve assembly of claim 13 , where the at least one or more legs extend partially along an axial length of the valve.

15. The valve assembly of claim 1 , wherein the near end of the valve is flush with the proximal end of the hub.

16. The valve assembly of claim 1 , further comprising an insert positioned within the valve, wherein the insert is configured to receive the male luer.

17. The valve assembly of claim 1 , further comprising a raised surface positioned within the valve, wherein upon insertion of the male luer, the raised surface is configured to be pushed by the male luer to open the valve.

18. The valve assembly of claim 1 , further comprising an insert coupled to the valve, wherein the insert comprises a first material and the valve comprises a second material, wherein the first material and second material comprise different structural properties.

19. The valve assembly of claim 18 , wherein the first material comprises a first durometer and the second material comprises a second durometer being less than the first durometer such that the second material comprises a greater elasticity relative to the first material.

20. The valve assembly of claim 18 , the insert comprises a first mating surface coupled to a second mating surface of the valve, a first portion of the valve cavity adjacent to an insert cavity formed by the insert, wherein a luer surface of the valve cavity smoothly transitions from a luer surface of the insert cavity.

21. A valve assembly configured for use with a male luer having a distal end, a lateral surface and a connector portion, the valve assembly comprising:

a hub configured to receive the male luer in a proximal end:

a valve coupled to a chamber within the hub and comprising a barrier layer at a far end and a wall portion;

the wall portion extending proximally from the barrier layer towards a near end of the valve, the wall portion defining a valve cavity therein, the barrier layer having at least one slit extending therethrough, wherein an entire outer surface of the wall portion contacts an inner surface of the chamber;

wherein an offset distance, measured between an inner surface of the wall portion in the valve cavity and the inner surface of the chamber adjacent to the barrier layer at the far end of the valve is less than a thickness of the barrier layer;

where the valve is configured for positioning in the hub such that the wall portion engages the inner surface of the chamber within the hub; and

wherein insertion of the male luer into the valve cavity causes the distal end of the male luer to open the at least one slit to permit fluid flow through the barrier layer, while the lateral surface of the male luer engages the wall portion at an interior of the valve cavity causing the wall portion to engage the inner surface of the chamber.

22. The valve assembly of claim 21 , wherein the valve is axially recessed within the hub.

23. The valve assembly of claim 21 , wherein a proximal end of the valve is flush with the proximal end of the hub.

24. A valve assembly configured for use with a male luer having a distal end, a lateral surface and a connector portion, the valve assembly comprising:

a hub configured to receive the male luer in a proximal end:

a valve coupled to a chamber within the hub and comprising a barrier layer at a far end and a wall portion, wherein an entire outer surface of the wall portion comprises a cylindrical shape having a uniform outer diameter;

the wall portion extending proximally from the barrier layer towards a near end of the valve, the wall portion defining a valve cavity therein, the barrier layer having at least one slit extending therethrough;

wherein an offset distance, measured between an inner surface of the wall portion in the valve cavity and a surface of the chamber adjacent to the barrier layer at the far end of the valve is less than a thickness of the barrier layer;

where the valve is configured for positioning in the hub such that the wall portion engages the surface of the chamber within the hub; and

wherein insertion of the male luer into the valve cavity causes the distal end of the male luer to open the at least one slit to permit fluid flow through the barrier layer, while the lateral surface of the male luer engages the wall portion at an interior of the valve cavity causing the wall portion to engage the surface of the chamber.

25. The valve assembly of claim 24 , wherein the valve is axially recessed within the hub.

26. The valve assembly of claim 24 , wherein a proximal end of the valve is flush with the proximal end of the hub.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 4, 2025
From: I-V ACCESS TECHNOLOGY, INC.
To: TAYLOR FRIGON CAPITAL PARTNERS, L.P.
Reel/Frame 072162/0115 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2021
From: SOLOMON, CLINT; LESKOWICH, VINCENT; SUTTON, THOMAS; HALE, JAMES; HENTZLER, JACOB
To: I-V ACCESS TECHNOLOGY, INC.
Reel/Frame 057078/0921 →
Continuity (7)
Continuation In Part 17074231 · Oct 19, 2020
Continuation 16670291 · Oct 31, 2019
Continuation 16520813 · Jul 24, 2019
Continuation 16004970 · Jun 11, 2018
Provisional Application 63151562 · Feb 19, 2021
Provisional Application 62552663 · Aug 31, 2017
Related Publication 20210268238A1 · Sep 2, 2021
Cited By (3)
US 12,239,814 US 12,415,055 US 12,508,402