IP Library › Granted Patent US 10,561,339
Granted Patent B2
US 10,561,339 · App. 13/994,545 · Granted Feb 18, 2020

System and method for determining carbon dioxide excreted during non-invasive ventilation

Inventor: Joseph Allen Orr (Park City, UT)
Assignee: Koninklijke Philips N.V.
A61B5/082A61B5/087A61B5/4836A61B5/72A61M16/0066A61M16/0434A61M16/0666A61M16/0875A61M16/20
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Quick Facts
Patent No.
US 10,561,339
App. No.
13/994,545
Granted
Feb 18, 2020
Kind
B2
Abstract

A system is configured to perform capnometry/capnography, and/or other compositional analysis on a non-invasively ventilated subject. As such, the system determines amounts of a molecular species of gas (e.g., carbon dioxide, oxygen, etc.) excreted by the subject on a per-breath basis. Determinations of amounts of the molecular species of gas excreted are adjusted to reflect amounts of the molecular species of gas leaked from the non-invasive interface used to communicate with the airway of the subject.

Claims (34)

1. A system configured to determine a volume of carbon dioxide excreted by a subject during respiration, the system comprising:

one or more gas parameter sensors configured for placement at or near an airway of the subject and configured to generate first output sensor signals conveying information related to pressure and/or flow in a respiratory circuit;

a volumetric capnometer configured for placement at or near the airway of the subject and configured to generate second output sensor signals conveying information related to a concentration of carbon dioxide present in the respiratory circuit;

one or more physical computer processors configured by computer-readable instructions to:

determine the concentration of carbon dioxide in gas expired from the airway of the subject during expiration based on (i) the second output sensor signals and (ii) a volume of the respiratory circuit between the airway of the subject and the volumetric capnometer;

estimate gas leakage from the respiratory circuit during respiration based on the first output sensor signals; and

determine volumes of carbon dioxide excreted by the subject during individual breaths based on (i) the determined concentration of carbon dioxide and (ii) the estimated gas leakage from the respiratory circuit.

2. The system of claim 1 , wherein the one or more processors are further configured to estimate gas leakage from the respiratory circuit as a function of pressure in the respiratory circuit based on the first output sensor signals.

3. The system of claim 1 , wherein the one or more processors are further configured such that determination of the carbon dioxide concentration in gas expired from the airway of the subject comprises an adjustment to a measured concentration of carbon dioxide to account for a volume of the respiratory circuit between the airway of the subject and the volumetric capnometer.

4. The system of claim 1 , wherein the one or more processors are further configured to estimate carbon dioxide volume leaked during expiration based on (i) the determined concentration of carbon dioxide and (ii) the estimated gas leakage from the respiratory circuit.

5. The system of claim 1 , wherein the one or more processors are further configured to estimate carbon dioxide volume leaked during inspiration based on (i) the determined concentration of carbon dioxide and (ii) the estimated gas leakage from the respiratory circuit by the one or more processors.

6. The system of claim 1 , wherein the one or more processors are configured such that the concentration of carbon dioxide in gas expired from the airway of the subject during expiration is correlated with the concentration of carbon dioxide present in the respiratory circuit by a correlation coefficient of 1−e −[Vexp/Vcircuit] , wherein V exp corresponds to a volume of gas expired by the subject determined via the one or more gas parameter sensors, and wherein V circuit corresponds to the volume of the respiratory circuit between the airway of the subject and the volumetric capnometer.

7. A method of determining a volume of carbon dioxide excreted by a subject during respiration, the method comprising:

generating, by one or more first sensors at or near an airway of the subject, first output signals conveying information related to pressure and/or flow in a respiratory circuit;

generating, by a volumetric capnometer at or near the airway of the subject, second output signals conveying information related to a concentration of carbon dioxide present in the respiratory circuit;

determining, by one or more physical computer processors, the concentration of carbon dioxide in gas expired from the airway of the subject during expiration based on the second output sensor signals and a volume of the respiratory circuit between the airway of the subject and the volumetric capnometer;

estimating, by the one or more processors, gas leakage from the respiratory circuit during respiration based on the first output sensor signals; and

determining, by the one or more processors, volumes of carbon dioxide excreted by the subject during individual breaths based on (i) the determined concentration of carbon dioxide in gas expired from the airway of the subject and (ii) the estimated gas leakage from the respiratory circuit.

8. The method of claim 7 , wherein estimates of gas leakage are determined as a function of pressure in the respiratory circuit based on the first output sensor signals.

9. The method of claim 7 , wherein determination of the carbon dioxide concentration in gas expired from the airway of the subject comprises an adjustment to a measured concentration of carbon dioxide to account for a volume of the respiratory circuit between the airway of the subject and the volumetric capnometer.

10. The method of claim 7 , further comprising estimating carbon dioxide volume leaked during expiration based on (i) the determined concentration of carbon dioxide in gas expired from the airway of the subject and (ii) the estimated gas leakage from the respiratory circuit.

11. The method of claim 7 , further comprising estimating carbon dioxide volume leaked during inspiration based on (i) the determined concentration of carbon dioxide in gas expired from the airway of the subject and (ii) the estimated gas leakage from the respiratory circuit.

12. The method of claim 7 , wherein the concentration of carbon dioxide in gas expired from the airway of the subject during expiration is correlated with the concentration of carbon dioxide present in the respiratory circuit by a correlation coefficient of 1−e −[Vexp/Vcircuit] , wherein V exp corresponds to a volume of gas expired by the subject determined via the one or more first sensors, and wherein V circuit corresponds to the volume of the respiratory circuit between the airway of the subject and the volumetric capnometer.

13. A system for determining a volume of carbon dioxide excreted by a subject during respiration, the system comprising:

means for generating first output sensor signals conveying information related to pressure and/or flow in a respiratory circuit, the means for generating the first output signals configured for placement at or near an airway of the subject;

means for generating second output sensor signals conveying information related to a concentration of carbon dioxide present in the respiratory circuit, the means for generating second output sensor signals configured for placement at or near the airway of the subject;

means for determining the concentration of carbon dioxide in gas expired from the airway of the subject during expiration based on the second output sensor signals and a volume of the respiratory circuit between the airway of the subject and the means for generating second output sensor signals;

means for estimating gas leakage from the respiratory circuit during respiration based on the first output sensor signals; and

means for determining volumes of carbon dioxide excreted by the subject during individual breaths based on (i) the determined concentration of carbon dioxide in gas expired from the airway of the subject and (ii) the estimated gas leakage from the respiratory circuit.

14. The system of claim 13 , wherein estimates of gas leakage are determined as a function of pressure in the respiratory circuit based on the first output sensor signals.

15. The system of claim 13 , wherein determination of the carbon dioxide concentration in gas expired from the airway of the subject comprises an adjustment to a measured concentration of carbon dioxide to account for a volume of the respiratory circuit between the airway of the subject and the means for generating the second output signals.

16. The system of claim 13 , further comprising means for estimating carbon dioxide volume leaked during expiration based on (i) the determined concentration of carbon dioxide in gas expired from the airway of the subject and (ii) the estimated gas leakage from the respiratory circuit.

17. The system of claim 13 , further comprising means for estimating carbon dioxide volume leaked during inspiration based on (i) the determined concentration of carbon dioxide in gas expired from the airway of the subject and (ii) the estimated gas leakage from the respiratory circuit.

18. The system of claim 13 , wherein the concentration of carbon dioxide in gas expired from the airway of the subject during expiration is correlated with the concentration of carbon dioxide present in the respiratory circuit by a correlation coefficient of 1−e −[Vexp/Vcircuit] , wherein V exp corresponds to a volume of gas expired by the subject determined via the means for generating first output sensor signals, and wherein V circuit corresponds to the volume of the respiratory circuit between the airway of the subject and the means for generating second output sensor signals.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 14, 2013
From: ORR, JOSEPH ALLEN
To: KONINKLIJKE PHILIPS ELECTRONICS N.V.
Reel/Frame 030617/0767 →
Continuity (3)
Provisional Application 61555911 · Nov 4, 2011
Provisional Application 61425559 · Dec 21, 2010
Related Publication 20130267863A1 · Oct 10, 2013