Respiratory apparatus
US-2024342412-A1 · Oct 17, 2024 · US
US10786646B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10786646-B2 |
| Application number | US-201414184202-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 19, 2014 |
| Priority date | Jul 18, 2007 |
| Publication date | Sep 29, 2020 |
| Grant date | Sep 29, 2020 |
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A humidification canister for humidifying a breathing gas, the humidification canister includes a fluid supply configured to supply a fluid and a first gas flow path in fluid communication with the fluid supply. A first gas flow path is configured to humidify the breathing gas with the fluid. A second gas flow path at least partially surrounds the first gas flow path. A method of insulating a breathing gas in a humidification canister using a gas is also disclosed.
Opening claim text (preview).
What is claimed: 1. A humidification canister for humidifying a breathing gas, the humidification canister comprising: a fluid supply configured to supply a fluid, wherein the fluid supply has a generally circular cross section having a central opening therein; a first gas flow path in fluid communication with the fluid supply, wherein the first gas flow path is configured to humidify the breathing gas in a humidification chamber with the fluid, and wherein the first gas flow path includes a first inlet connector; and a second gas flow path concentrically surrounding the first gas flow path upstream and downstream of the humidification chamber, the second gas flow path extending through the central opening of the fluid supply, wherein the second gas flow path includes a second inlet connector upstream of the humidification chamber and coaxially aligned with the first inlet connector; wherein the first gas flow path and the second gas flow path are fluidically separate upstream of the fluid supply and downstream of the humidification chamber. 2. The humidification canister according to claim 1 , wherein the first gas flow path includes: the humidification chamber having a humidification chamber inlet in fluid communication with the first inlet connector and a humidification chamber outlet; and a first gas flow outlet in fluid communication with the humidification chamber outlet. 3. The humidification canister according to claim 2 , further comprising a heater plate adapted to heat the fluid in the humidification chamber. 4. The humidification canister according to claim 2 , further comprising a membrane disposed between the humidification chamber and the fluid supply. 5. The humidification canister according to claim 2 , wherein the fluid supply generally surrounds the humidification chamber. 6. The humidification canister according to claim 2 , wherein the fluid supply is releasably coupled to the humidification chamber. 7. The humidification canister according to claim 2 , wherein the second gas flow path includes: an insulation chamber having an insulation chamber inlet in fluid communication with the second inlet connector and an insulation chamber outlet; and a second gas flow outlet in fluid communication with the insulation chamber outlet. 8. The humidification canister according to claim 7 , wherein the insulation chamber is coupled to the fluid supply to pressurize the fluid supply. 9. The humidification canister according to claim 7 , wherein the first gas flow outlet is generally coaxially aligned with the second gas flow outlet. 10. The humidification canister according to claim 7 , wherein the first gas flow outlet and the second gas flow outlet are configured to coaxially couple to a delivery tube. 11. The humidification canister according to claim 7 , wherein the insulation chamber extends at least partially between the humidification chamber and the fluid supply. 12. The humidification canister according to claim 1 , wherein the first inlet connector and the second inlet connector are configured to coaxially couple to a source of the breathing gas. 13. The humidification canister according to claim 1 , wherein the fluid supply generally surrounds the humidification chamber. 14. The humidification canister according to claim 1 , wherein the first gas flow path extends through the central opening. 15. A method of pressurizing a supply of a humidification fluid within a humidification canister comprising the steps of: a) receiving a flow of a breathing gas along a first gas flow path, wherein the first gas flow path is defined by the humidification canister, and wherein the first gas flow path includes a first inlet connector; b) receiving a flow of an insulating gas along a second gas flow path, wherein the second gas flow path includes a second inlet connector coaxially aligned with the first inlet connector; c) providing the supply of the humidification fluid in a humidification chamber within the humidification canister to humidify the breathing gas, wherein the supply has a generally circular cross section having a central opening therein, wherein the second gas flow path concentrically surrounds the first gas flow path upstream and downstream of the humidification chamber, the second gas flow path extending through the central opening of the supply, and wherein the second inlet connector is upstream of the humidification chamber, wherein the first gas flow path and the second gas flow path are fluidically separate upstream of the supply and downstream of the humidification chamber; and d) providing fluid communication between the second gas flow path and the supply of the humidification fluid to pressurize the supply of the humidification fluid with the flow of insulating gas. 16. The method according to claim 15 , comprising a step of humidifying the breathing gas along the first gas flow path with the humidification fluid. 17. A method of insulating a breathing gas in a humidification canister using an insulating gas, the method comprising the steps of: a) supplying a fluid with a fluid supply, wherein the fluid supply has a generally circular cross section having a central opening therein; b) directing a flow of the breathing gas along a first gas flow path including a humidification chamber, wherein the first gas flow path includes a first inlet connector; and c) directing a flow of the insulating gas along a second gas flow path including an insulating chamber that at least partially surrounds the humidification chamber, wherein the insulating gas at least partially insulates the breathing gas, wherein the second gas flow path concentrically surrounds the first gas flow path upstream and downstream of the humidification chamber, the second gas flow extending through the central opening of the fluid supply, and wherein the second gas flow path includes a second inlet connector upstream of the humidification chamber and coaxially aligned with the first inlet connector, wherein the first gas flow path and the second gas flow path are fluidically separate upstream of the fluid supply and downstream of the humidification chamber. 18. The method according to claim 17 , further comprising a step of discharging the breathing gas from the humidification chamber into a delivery tube. 19. The method according to claim 17 , wherein the step b) further comprises directing the flow of the breathing gas through a humidification chamber inlet and wherein the step c) further comprises directing the flow of the insulating gas through an insulating chamber inlet, wherein the insulating chamber inlet surrounds the humidification chamber inlet. 20. The method according to claim 17 , wherein the step b) further comprises directing the flow of the breathing gas through a humidification chamber outlet and wherein the step c) further-comprises directing the flow of the insulating gas through an insulating chamber outlet, wherein the insulating chamber outlet surrounds the humidification chamber outlet. 21. A humidification canister for humidifying a flow of a breathing gas, the humidification canister comprising: means for supplying a fluid, wherein the means for supplying the fluid has a generally circular cross section having a central opening therein; means for humidifying a first gas flow with the fluid along a first gas flow path, wherein the first gas flow path includes a first inlet connector; and means for at least partially insulating the first gas flow by concentrically surroundin
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