IP Library Granted Patent US 8,757,150
Granted Patent B2
US 8,757,150 · App. 11/300,052 · Granted Jun 24, 2014

Condensation reduction and management systems in a gas flow delivery system

Inventors: Doug L. Davidowski (Champaign, IL); Peter Chi Fai Ho (Pittsburgh, PA); Lance Busch (Trafford, PA); Richard J. Lordo (Butler, PA); Jerome Matula, Jr. (Monroeville, PA)
Assignee: RIC Investments, LLC
A61M16/0875A61M2016/0883
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Quick Facts
Patent No.
US 8,757,150
App. No.
11/300,052
Granted
Jun 24, 2014
Kind
B2
Abstract

Condensation management techniques for a gas flow delivery system. The techniques include providing a radiant barrier associated with patient circuit and/or a patient interface, providing a water trap and/or an absorbent insert in the patient interface device, or a combination of these techniques. The radiant barrier prevents condensation from forming in the patient circuit and/or the patient interface. The water trap and absorbent insert in the patient interface control condensation that reaches or forms in the interior of the patient interface to prevent it from interfering the user of the gas delivery system.

Claims (7)

1. A patient circuit adapted to deliver a flow of breathing gas to an airway of a patient, the patient circuit comprising:

a flexible conduit having a first end portion, a second end portion, and a lumen defined therein from the first end portion to the second end portion, wherein the conduit is configured to deliver a pressurized flow of breathable gas from a pressure generating device to a patient interface appliance that is configured to deliver the pressurized flow of breathable gas from the conduit to the airway of the patient; and

a radiant barrier integrated with the conduit such that the radiant barrier is disposed between an ambient environment and the lumen, wherein the radiant barrier is a low emissivity material, wherein the radiant barrier and conduit are configured and arranged so as to minimize heat loss from within the lumen to ambient atmosphere resulting from radiation of energy from within the lumen by reflecting such radiation back into the lumen, and wherein the conduit and the radiant barrier are sufficiently flexible so as to be bendable by the patient, wherein the radiant barrier is disposed inside of the conduit.

2. The patient circuit of claim 1 , further comprising a thermal insulation layer disposed between the radiant barrier and the conduit.

3. A patient circuit adapted to deliver a flow of breathing gas to an airway of a patient, the patient circuit comprising:

a flexible conduit having a first end portion, a second end portion, and a lumen defined therein from the first end portion to the second end portion, wherein the conduit is configured to deliver a pressurized flow of breathable gas from a pressure generating device to a patient interface appliance that is configured to deliver the pressurized flow of breathable gas from the conduit to the airway of the patient; and

a radiant barrier integrated with the conduit such that the radiant barrier is disposed between an ambient environment and the lumen, wherein the radiant barrier is a low emissivity material, wherein the radiant barrier and conduit are configured and arranged so as to minimize heat loss from within the lumen to ambient atmosphere resulting from radiation of energy from within the lumen by reflecting such radiation back into the lumen, and wherein the conduit and the radiant barrier are sufficiently flexible so as to be bendable by the patient, wherein the radiant barrier is formed as a coating disposed on a surface of the conduit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2006
From: DAVIDOWSKI, DOUG L.; HO, PETER CHI FAI; BUSCH, LANCE; LORDO, RICHARD J.; MATULA, JR., JEROME
To: RIC INVESTMENTS, LLC.
Reel/Frame 017274/0122 →
Continuity (2)
Provisional Application 60637339 · Dec 17, 2004
Related Publication 20060144399A1 · Jul 6, 2006