IP Library › Granted Patent US 11,471,637
Granted Patent B2
US 11,471,637 · App. 16/502,784 · Granted Oct 18, 2022

Patient interfaces with condensation reducing or compensating arrangements

Inventors: Andrew John Partington (Auckland, NZ); Peter Kenneth Graham (Auckland, NZ); Mark John Arrowsmith (Auckland, NZ); Christopher Earl Nightingale (Auckland, NZ); Vitaly Kapelevich (Auckland, NZ)
Assignee: FISHER & PAYKEL HEALTHCARE LIMITED
A61M16/0808A61M16/0057A61M16/06A61M16/0605A61M16/0611A61M16/0622A61M16/0816A61M16/0875A61M16/1045A61M16/1095A61M2205/14A61M2205/3653
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Quick Facts
Patent No.
US 11,471,637
App. No.
16/502,784
Granted
Oct 18, 2022
Kind
B2
Abstract

Mask assemblies, breathing circuits and related components include configurations for reducing condensation within the mask and/or inhibiting or preventing condensation from coming into contact with a user of the mask. The mask assemblies can incorporate heating elements (such as heating coils), insulating spaces or barrier layers.

Claims (23)

1. A patient interface comprising:

a body adapted to form a seal with a user's face, the body comprising:

an inner layer;

an outer layer;

an insulation space defined by a space between the inner layer and outer layer; and

a phase change material in the insulation space; and

a coupling for fluid connection to a gas delivery system that, in use, provides a humidified air to the body;

wherein the insulation space is sealed from an interior and an exterior of the patient interface;

wherein a phase change temperature of the phase change material is, in use, configured to warm the humidified air in the body to reduce condensation within the body.

2. The patient interface of claim 1 , further comprising a vent that allows a flow of gases from an interior of the body to an exterior of the body.

3. The patient interface of claim 2 , wherein the vent is recessed and disposed adjacent the inner layer.

4. The patient interface of claim 1 , wherein the inner layer and the outer layer are formed of a plastic material.

5. The patient interface of claim 1 , wherein the outer layer forms an airtight seal with the inner layer.

6. The patient interface of claim 1 , wherein the gas delivery system is configured to deliver heated and humidified air.

7. The patient interface of claim 1 , wherein the phase change material in the insulation space includes a hydrated salt or salt-based solution.

8. The patient interface of claim 1 , wherein the phase change temperature is above a temperature of the humidified air and below an uncomfortably hot temperature for the user.

9. The patient interface of claim 1 , wherein the phase change temperature is within the range of 29 to 35 degrees Celsius.

10. The patient interface of claim 1 , wherein, in use, the phase change temperature is not uncomfortably hot for the user.

11. The patient interface of claim 1 , wherein the outer layer includes an insulation layer to slow heat loss to an environment.

12. The patient interface of claim 1 , wherein the phase change material changes between a solid phase and a liquid phase at the phase change temperature.

13. The patient interface of claim 1 , wherein the insulation space includes an air gap to accommodate an increased volume of the phase change material above the phase change temperature.

14. The patient interface of claim 1 , further comprising an accumulator in fluid communication with the insulation space to accommodate an increased volume of the phase change material above the phase change temperature.

15. The patient interface of claim 1 , wherein insulation space contains sufficient amounts of the phase change material to remain at or above the phase change temperature for at least 6 hours.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2022
From: PARTINGTON, ANDREW JOHN; GRAHAM, PETER KENNETH; ARROWSMITH, MARK JOHN; NIGHTINGALE, CHRISTOPHER EARL; KAPELEVICH, VITALY
To: FISHER & PAYKEL HEALTHCARE LIMITED
Reel/Frame 061080/0416 →
Continuity (3)
Continuation 14772765
Provisional Application 61772432 · Mar 4, 2013
Related Publication 20200061326A1 · Feb 27, 2020
Cited By (1)
US 12,594,395