IP Library Granted Patent US 9,402,947
Granted Patent B2
US 9,402,947 · App. 14/579,270 · Granted Aug 2, 2016

Portable fluid delivery system for the nasal and paranasal sinus cavities

Inventor: William J. Flickinger (Medina, OH)
Assignee: MEDINVENT, LLC
A61M3/025A61M3/0279A61M11/06A61M15/08A61M16/0063A61M2205/583A61M2205/75A61M2205/8206A61M2210/0618
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Quick Facts
Patent No.
US 9,402,947
App. No.
14/579,270
Granted
Aug 2, 2016
Kind
B2
Abstract

A pressurized air supply source for a portable nasal irrigator houses an airflow regulating system, instead of external bulky, heavy components, to power the atomization of fluid for irrigation of nasal passages. The airflow regulating system is made up of a pump, a motor to drive the pump, a filter with an inlet air manifold connected to the pump to eliminate additional tubing within the pressurized air supply source, and an optionally rechargeable battery to drive the motor. An external AC/DC power supply may charge the battery or operate the device when the battery is in a discharged state. A canister for holding fluid attaches on top of the pressurized air supply source and an insert fits that over a fluid channel in the canister to create a venturi effect and draw the fluid out. The pressurized air supply source creates a clinically effective airflow despite its small size.

Claims (20)

1. A portable nasal irrigator, comprising:

(a) a main canister comprising at least one air exit port, wherein the air exit port extends beyond a rim of the canister; and

(b) an insert with a base that fits within the canister, wherein the insert comprises at least one fluid channel that fits over the air exit port, and further wherein the fluid channel is larger in diameter than the air exit port, thereby providing a small space between the outer surface of the air exit port and the inner surface of the fluid channel, wherein the insert comprises an extension protruding outwardly to the canister, wherein the fluid channel comprises a groove extending vertically along the exterior of the fluid channel to an aperture in the extension, said aperture creating a channel to the canister; and

(c) a pressurized air supply source contiguously attached without tubing to the canister for introducing pressurized air through the air exit port such that the fluid is expelled as a mist through an exit hole in the fluid channel, said pressurized air supply source comprising therein an airflow regulating system comprising: an air outlet, a pump, a motor, a filter for filtering incoming air, and a circuit board to control the motor; the pump in communication with the main canister and the motor, and the filter connecting to the pump, wherein the motor is driven by one of: a battery contained within the pressurized air supply source or an external power supply source.

2. The portable nasal irrigator of claim 1 wherein the mist expelled through the exit hole comprises air and fluid particles, 100% of the fluid particles being greater than 5 microns in diameter, the mist expelled under a pressure of 1-15 psi with a fluid delivery rate of 1-20 ml per minute, and an airflow of 3-8 liters per minute, thereby creating an air column that drives the mist past the nasal valve and antrum of the nose to coat a nasal cavity and paranasal sinus cavities without introducing the mist into the lungs.

3. The portable nasal irrigator of claim 1 wherein the air outlet comprises an air outlet elbow connected to an air inlet of the main canister.

4. The portable nasal irrigator of claim 3 wherein the air outlet elbow comprises an angle sufficient to circumvent the motor within the pressurized air supply source.

5. The portable nasal irrigator of claim 4 wherein the air outlet elbow comprises an outlet tubing on an end opposite the connection to the air inlet to circumvent the motor within the pressurized air supply source.

6. The portable nasal irrigator of claim 4 wherein the outlet tubing connects to a pump outlet of the pump.

7. The portable nasal irrigator of claim 1 wherein the air outlet is located within a concave opening of the pressurized air supply source.

8. The portable nasal irrigator of claim 1 wherein filter is housed within an air inlet manifold that rests on the pump, the air inlet manifold connecting to and sealing against a pump air inlet post of the pump.

9. The portable nasal irrigator of claim 1 wherein the battery is rechargeable.

10. The portable nasal irrigator of claim 1 comprising a switch for control of the irrigator.

11. The portable nasal irrigator in claim 1 wherein the canister is positively held to the pressurized air supply source by a locking mechanism, the locking mechanism comprising at least one tab on the canister that interfaces with a mating portion that captures the tab and presses the canister into a seal that seals an air channel between the canister and the pressurized air supply source.

12. The portable nasal irrigator in claim 1 wherein the pressurized air supply source comprises an indicator light source and a switch integrated into a single membrane.

13. The portable nasal irrigator of claim 11 wherein the indicator light source comprises a light pipe to transmit light to an external side of the pressurized air supply source.

14. The portable nasal irrigator of claim 1 wherein the canister is reusable.

15. The portable nasal irrigator of claim 1 wherein the canister is disposable.

16. The portable nasal irrigator of claim 1 comprising a cap without holes therethrough, said cap substantially covering the fluid channel of the insert and comprising a sealing plug for the discharge port.

17. The portable nasal irrigator of claim 1 comprising an AC/DC power supply.

Assignments (3)
MERGER AND CHANGE OF NAME Recorded May 19, 2022
From: NASONEB, INC.; MONAGHAN MEDICAL CORPORATION
To: MONAGHAN MEDICAL CORPORATION
Reel/Frame 059962/0461 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 9, 2018
From: MEDINVENT, LLC
To: NASONEB, INC.
Reel/Frame 045480/0767 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 22, 2014
From: FLICKINGER, WILLIAM J.
To: MEDINVENT, LLC
Reel/Frame 034570/0940 →
Continuity (4)
Continuation In Part 13414439 · Mar 7, 2012
Continuation In Part 13404623 · Feb 24, 2012
Continuation In Part 12829198 · Jul 1, 2010
Related Publication 20150126927A1 · May 7, 2015