IP Library Granted Patent US 11,458,270
Granted Patent B2
US 11,458,270 · App. 15/134,900 · Granted Oct 4, 2022

High flow therapy device utilizing a non-sealing respiratory interface and related methods

Inventors: Robert M Landis (Mountainside, NJ); Charles A Lewis (Carrabelle, FL); Louis Javier Collazo (Pompano Beach, FL); Chris Agami (Coral Springs, FL)
A61M16/0666A61J7/0053A61M16/0066A61M16/049A61M16/0488A61M16/0677A61M16/085A61M16/0858A61M16/107A61M16/1075A61M16/122A61M16/16A61M16/161A61B5/087A61B5/0816A61B5/14551A61J17/001A61M16/0816A61M16/105A61M16/109A61M2016/0021A61M2016/0027A61M2016/0039A61M2016/103A61M2016/1025A61M2202/0208A61M2205/18A61M2205/3334A61M2205/3368A61M2205/50A61M2205/502A61M2230/42
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Quick Facts
Patent No.
US 11,458,270
App. No.
15/134,900
Granted
Oct 4, 2022
Kind
B2
Abstract

A high flow therapy system for delivering heated and humidified respiratory gas to an airway of a patient, the system including a respiratory gas flow pathway for delivering the respiratory gas to the airway of the patient by way of a non-sealing respiratory interface; wherein flow rate of the pressurized respiratory gas is controlled by a microprocessor.

Claims (47)

1. A high flow therapy system for delivering heated and humidified respiratory gas to an airway of a patient, the high flow therapy system comprising:

a high flow therapy device including a microprocessor;

a first inlet configured to receive a first gas;

a valve in electrical communication with the microprocessor, the valve coupled to the first inlet and configured to adjust an amount of the first gas that flows from the first inlet;

a second inlet configured to receive a second gas;

a blower coupled to the second inlet;

a respiratory gas flow pathway for delivering the respiratory gas to the airway of the patient by way of a non-sealing respiratory interface, wherein flow rate of the respiratory gas is controlled by the microprocessor of the high flow therapy device adjusting the speed of the blower as the second gas flows toward the blower from the second inlet;

a mixing area for mixing the first gas and the second gas in the respiratory gas flow pathway;

a humidification area configured for humidifying respiratory gas in the respiratory gas flow pathway; and

a heated delivery conduit for minimizing condensation of humidified respiratory gas,

wherein the high flow therapy device is adapted to affect temperature within the humidification area and temperature within the heated delivery conduit.

2. The high flow therapy system of claim 1 , further comprising a drive pressure sensor.

3. The high flow therapy system of claim 1 , further comprising a relief valve.

4. The high flow therapy system of claim 1 , wherein the system is configured to allow for measurement of oxygen concentration of the respiratory gas.

5. The high flow therapy system of claim 1 , further comprising an outlet filter operationally coupled to the respiratory gas flow pathway.

6. The high flow therapy system of claim 1 , further comprising a safety component coupled to an outlet of the high flow therapy device.

7. The high flow therapy system of claim 1 , wherein the humidification area is configured to impede water from entering the high flow therapy device.

8. The high flow therapy system of claim 1 , wherein the humidification area is configured to impede water from entering the heated delivery conduit.

9. The high flow therapy system of claim 1 , wherein the humidification area is configured to allow for automatic filling of water.

10. The high flow therapy system of claim 1 , wherein at least one of respiration rate, tidal volume, and minute volume are calculated by the microprocessor.

11. The high flow therapy system of claim 1 , wherein the microprocessor is configured to control at least one of temperature of the gas, humidity of the gas, mixture of the gas, the flow rate of the gas, and volume of the gas delivered to the patient.

12. The high flow therapy system of claim 1 , wherein the system is configured to control the flow rate of the respiratory gas delivered to the patient based on a respiratory phase of the patient during use.

13. The high flow therapy system of claim 1 , wherein the system is configured to deliver the respiratory gas to the patient at different airway pressures based on a respiratory phase of the patient during use.

14. A high flow therapy system for delivering heated and humidified respiratory gas to an airway of a patient, the system comprising:

a high flow therapy device including a microprocessor;

a first inlet configured to receive a first gas;

a valve in electrical communication with the microprocessor, the valve coupled to the first inlet and configured to adjust an amount of the first gas that flows from the first inlet;

a second inlet configured to receive a second gas;

a blower coupled to the second inlet;

a respiratory gas flow pathway for delivering the respiratory gas to the airway of the patient by way of a non-sealing respiratory interface, wherein flow rate of the respiratory gas is controlled by the microprocessor of the high flow therapy device adjusting the speed of the blower as the second gas flows toward the blower from the second inlet;

a mixing area for mixing the first gas and the second gas in the respiratory gas flow pathway;

a humidification area configured for humidifying respiratory gas in the respiratory gas flow pathway;

a heated delivery conduit for minimizing condensation of humidified respiratory gas; and

a touchscreen adapted to allow an operator to make inputs to the high flow therapy device.

15. The high flow therapy system of claim 14 , wherein the touchscreen is coupled with a display that can be rotated.

16. The high flow therapy system of claim 14 , wherein the touchscreen is coupled with a display that can tilted.

17. The high flow therapy system of claim 14 , wherein the touchscreen is coupled with a display that is removable.

18. A high flow therapy system for delivering heated and humidified respiratory gas to an airway of a patient, the system comprising:

a high flow therapy device including a microprocessor;

a first inlet configured to receive a first gas;

a proportional valve in electrical communication with the microprocessor, the proportional valve coupled to the first inlet and configured to adjust an amount of the first gas that flows from the first inlet;

a second inlet configured to receive a second gas;

a blower coupled to the second inlet;

a respiratory gas flow pathway for delivering the respiratory gas to the airway of the patient by way of a non-sealing respiratory interface, wherein flow rate of the respiratory gas is controlled by the microprocessor of the high flow therapy device adjusting the speed of the blower as the second gas flows toward the blower from the second inlet;

a mixing area for mixing the first gas and the second gas in the respiratory gas flow pathway;

a humidification area configured for humidifying respiratory gas in the respiratory gas flow pathway; and a heated delivery conduit for minimizing condensation of humidified respiratory gas,

wherein the respiratory gas exits the humidification area without reentering the high flow therapy device.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2021
From: MERGENET MEDICAL, INC.
To: RESMED PTY LTD
Reel/Frame 055546/0981 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 3, 2020
From: LEWIS, CHARLES A; LANDIS, ROBERT M; AGAMI, CHRISTOPHER; COLLAZO, LOUIS JAVIER
To: MERGENET MEDICAL, INC.
Reel/Frame 053702/0300 →
Continuity (5)
Continuation In Part 14016042 · Aug 30, 2013
Continuation 11999675 · Dec 6, 2007
Continuation In Part 11638981 · Dec 14, 2006
Continuation 11520490 · Sep 12, 2006
Related Publication 20160367779A1 · Dec 22, 2016
Cited By (2)
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