IP Library Granted Patent US 10,869,977
Granted Patent B2
US 10,869,977 · App. 15/498,601 · Granted Dec 22, 2020

System and method for accurate estimation of intentional and unintentional leaks in flow generation systems

Inventors: Samuel M. Chang (Poway, CA); Nhien M. Nguyen (Santa Ana, CA)
Assignee: INVENT MEDICAL CORPORATION
A61M16/0069A61M16/0051A61M16/026A61M16/1005A61M16/1045A61M16/1055A61M16/125A61M16/16A61M16/208G01M3/26G01M3/28A61M16/0672A61M2016/0027A61M2016/0033A61M2016/0039A61M2202/0208A61M2205/15A61M2205/50A61M2230/40
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Quick Facts
Patent No.
US 10,869,977
App. No.
15/498,601
Granted
Dec 22, 2020
Kind
B2
Abstract

In one embodiment, a method for accurate leak estimation in a flow generation system includes measuring a total flow through the flow generation system, measuring a pressure in the primary flow circuit of the flow generation system, determining when the measured pressure is within a predetermined threshold of EPAP, and calculating an intentional leak flowrate and an unintentional leak flowrate based on the relationship Q FS (t)=Q IL (t)+Q UL (t) when the measured pressure is within the predetermined threshold. In another embodiment, a flow generation system includes in one embodiment an airflow generator connected in-line to a flow sensor, a pressure sensor and a patient interface connection by a first gas flow circuit, and a controller electrically coupled to the airflow generator, the flow sensor and the pressure sensor. The controller sends a control signal to the airflow generator based on a first flow value measured from the flow sensor and an unintentional leak flow value that is derived from a proportional relationship with an intentional leak flow value.

Claims (25)

1. A method for accurate leak estimation in a flow generation system comprising:

measuring, with a flow sensor, a total flow through the flow generation system;

measuring, with a pressure sensor, a pressure in a primary flow circuit of the flow generation system (P PS (t));

determining when the measured P PS (t) indicates no breathing by determining when P PS (t) is within a predetermined threshold of EPAP indicating that P PS (t)≅EPAP, when P PS (t) is within 1 cmH 2 Q from EPAP; and

calculating an intentional leak flowrate and an unintentional leak flowrate based on the relationship Q FS (t)=Q IL (t)+Q UL (t) when the measured pressure is within the predetermined threshold.

2. The method of claim 1 , wherein the total flow includes a first flow source comprising ambient air and a second flow source comprising pressurized oxygen.

3. The method of claim 2 , the total flow includes a third flow source.

4. The method of claim 1 , wherein the primary flow circuit comprises the flow sensor for measuring the total flow, an airflow generator and a patient interface connection.

5. The method of claim 1 , wherein P PS (t)≅EPAP when P PS (t) is within 0.5 cmH 2 O from EPAP.

6. The method of claim 1 , wherein P PS (t)≅EPAP when P PS (t) is within 0.2 cmH 2 O from EPAP.

7. The method of claim 1 , wherein P PS (t)≅EPAP when P PS (t) is within 0.1 cmH 2 O from EPAP.

8. The method of claim 1 further comprising:

determining the intentional leak flow rate at least partially based on a selected patient interface orifice size.

9. The method of claim 1 further comprising:

determining a flowrate of the lungs Q IL (t) by satisfying the equations:

Q FS ( t )= Q IL ( p,t )+ Q UL ( p,t )+ Q L ( t )

when P PS ( t )≅EPAP,

Q FS ( t )= Q IL ( t )+ Q UL ( t ), and

Q UL ( p,t )=∝· Q IL ( p,t ).

10. The method of claim 1 further comprising:

determining a flowrate of the lungs Q IL (t) by satisfying the equations:

Q FS ( t )= Q IL ( p,t )+ Q UL ( p,t )+ Q L ( t )

when P PS ( t )≅EPAP, and

Q FS ( t )= Q IL ( t )+ Q UL ( t ).

11. The method of claim 1 further comprising modeling an orifice equation for a total leak using an empirical equation.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 7, 2019
From: CHANG, SAMUEL M.; NGUYEN, NHIEN M.
To: INVENT MEDICAL CORPORATION
Reel/Frame 050953/0742 →
Continuity (2)
Provisional Application 62328675 · Apr 28, 2016
Related Publication 20170312463A1 · Nov 2, 2017
Cited By (1)
US 12,420,050