IP Library Granted Patent US 10,232,140
Granted Patent B2
US 10,232,140 · App. 11/959,295 · Granted Mar 19, 2019

Anti-occlusion catheter adapter

Inventor: Austin Jason McKinnon (Herriman, UT)
Assignee: BECTON, DICKINSON AND COMPANY
A61M25/0014A61M25/0097A61M39/10
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Quick Facts
Patent No.
US 10,232,140
App. No.
11/959,295
Granted
Mar 19, 2019
Kind
B2
Abstract

A support device for preventing an occlusion of a catheter's root region including an extended, flexible member extending from an end of a catheter adapter. The flexible extension is tapered such that additional support is provided to the portions of the root region most susceptible to an occlusion. Additionally, the flexible extension provides shielding to the root region thereby preventing contamination of the same. Finally, the flexible extension provides a marking function whereby the technician may insert the catheter tube until such a point that the flexible extension contacts the patient thereby preventing over insertion of the catheter tube.

Claims (17)

1. An anti-occlusion catheter device comprising:

a catheter adapter having a first, distal end, a second, proximal end, and a lumen that extends between the first and second ends, wherein the catheter adapter has a generally cylindrical shape, wherein the first end has a first outer diameter;

a flexible extension that extends from a distal-most surface of the first end of the catheter adapter, wherein the flexible extension and the first end of the catheter adapter are constructed of a same material and are monolithically formed as a single piece, the flexible extension including an outer and an inner surface that extend from a proximal end of the flexible extension to a distal end of the flexible extension, the proximal end of the flexible extension being proximate the distal-most surface of the first end of the catheter adapter, a distance between the outer and inner surface being greater at the proximal end of the flexible extension than at the distal end of the flexible extension, the outer surface of the proximal end of the flexible extension having a second outer diameter that is less than the first outer diameter of the first end, the flexible extension being radially centered on the distal-most surface thereby forming a step between the distal-most surface and the flexible extension;

an over-the-needle catheter tube for insertion into a patient, the catheter tube having a proximal end positioned within the lumen and a distal end that is positioned outside of the flexible extension such that a root region of the catheter tube is positioned within the flexible extension, the catheter tube being formed of a flexible material such that both the flexible extension and the root region of the catheter tube are flexible;

a tubing insert that is contained entirely within the catheter adapter and positioned within the lumen, the tubing insert having a distal end that inserts into the proximal end of the catheter tube to secure the catheter tube within the lumen in a fluidtight manner; and

a hypodermic needle disposed within the catheter tube and configured to initially puncture skin of the patient to thereby insert the distal end of the catheter tube into the patient's vasculature and to then be retracted from the catheter tube through the proximal end of the catheter adapter, wherein a gauge of the hypodermic needle approximates an inner diameter of the catheter tube;

wherein the flexible extension is configured such that, after the distal end of the catheter tube is inserted into the patient's vasculature and the needle is withdrawn from the catheter tube, the flexibility of the flexible extension enables the flexible extension to arch to accommodate arching of the root region of the catheter tube that occurs as the catheter tube transitions from the catheter adapter to the patient's vasculature to thereby buttress the arched root region and prevent the arched root region from becoming occluded.

2. The catheter device of claim 1 , wherein the flexible extension is molded as part of the catheter adapter.

3. The catheter device of claim 2 , wherein the flexible extension is formed by allowing an amount of flash to extend beyond the first end in an injection mold.

4. The catheter device of claim 1 , wherein the inner surface has a diameter that approximates an outer surface diameter of the catheter tube wherein the inner surface diameter is slightly greater than the outer surface diameter of the catheter tube such that an air gap is maintained between the two surfaces.

5. The catheter device of claim 1 , wherein a Luer lock is positioned annularly on an outer surface of the second end.

6. The catheter device of claim 1 , wherein the flexible extension prevents over insertion of the catheter tube.

7. The catheter device of claim 1 , wherein the distal end of the tubing insert is positioned proximal to the proximal end of the flexible extension.

8. The catheter device of claim 1 , wherein the lumen is tapered at the first, distal end and an outer diameter of the distal end of the tubing insert is also tapered to thereby cause the proximal end of the catheter tube to be secured between the tapered first, distal end of the lumen and the tapered distal end of the tubing insert.

9. The catheter device of claim 1 , wherein the flexible extension is configured to arch approximately 30 degrees relative to a longitudinal axis of the catheter adapter.

10. The catheter device of claim 1 , wherein the catheter adapter includes a gripping feature.

11. The catheter device of claim 1 , wherein the first end of the catheter adapter is configured to function as a fulcrum over which a proximal end of the root region bends.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2007
From: MCKINNON, AUSTIN JASON
To: BECTON, DICKINSON AND COMPANY
Reel/Frame 020264/0877 →
Continuity (1)
Related Publication 20090157007A1 · Jun 18, 2009
Cited By (3)
US 12,194,250 US 12,496,434 US 12,599,324