SYSTEMS AND METHODS FOR MEASUREMENT OF GAS CONCENTRATION DIFFERENCE BETWEEN INHALATION AND EXHALATION
A system including a first sampling portion configured to sample inhalation gas made up of a first gaseous mixture, a second sampling portion configured to sample exhalation gas made up of a second gaseous mixture, a gas analyzer configured to measure gas concentrations, a switching valve that controls flow of the sampled inhalation gas and the sampled exhalation gas to the gas analyzer so as to alternately measure concentration of gaseous components within the first and second gaseous mixtures, a humidity control system that maintains humidity within the first and second gaseous mixtures to a predetermined humidity level, and a calculation section configured to calculate concentration differences of the gaseous components between the first and second gaseous mixtures.
1 . A system comprising:
a first sampling portion configured to sample inhalation gas made up of a first gaseous mixture;
a second sampling portion configured to sample exhalation gas made up of a second gaseous mixture;
a gas analyzer configured to measure gas concentrations;
a switching valve that controls flow of the sampled inhalation gas and the sampled exhalation gas to the gas analyzer so as to alternately measure concentration of gaseous components within the first and second gaseous mixtures;
a humidity control system that maintains humidity within the first and second gaseous mixtures to a predetermined humidity level; and
a calculation section configured to calculate concentration differences of the gaseous components between the first and second gaseous mixtures.
2 . The system of claim 1 , wherein the first gas sampling portion is connected to an inhalation gas circuit of a mechanical ventilator, and the second gas sampling portion is connected to an exhaust port or an exhalation gas circuit of the mechanical ventilator.
3 . The system of claim 1 , wherein the first gas sampling portion is connected to an inhalation gas circuit of a breathing mask with a first one-way valve, and the second gas sampling portion is connected to an exhalation gas circuit of the breathing mask with a second one-way valve.
4 . The system of claim 1 , wherein the humidity control system comprises at least one of a membrane dryer unit, a refrigerating dryer unit or a desiccant.
5 . The system of claim 4 , wherein the humidity control system is a membrane dryer unit, and purge gas used for the membrane dryer unit is at least one of dry gas from a gas supplying system, dry gas from a gas tank or dry gas as dried by a desiccant.
6 . The system of claim 4 , wherein the humidity control system is a refrigerating unit, and the refrigerating unit lower temperature of the first and second gaseous mixtures to −20° C. or below.
7 . The system of claim 1 , wherein the gas analyzer measures at least oxygen concentration and carbon dioxide concentration, and the first calculation section is configured to calculate oxygen concentration differences and carbon dioxide concentration differences.
8 . The system of claim 7 , wherein the calculation section is further configured to calculate respiratory quotient (RQ) based on the calculated concentration differences.
9 . The system of claim 7 , further comprising a flow sensor that measures flow rate of at least one of the inhalation gas or the exhalation gas, wherein the calculation section is further configured to calculate oxygen consumption (VO 2 ) and carbon dioxide generation (VCO 2 ) based on the measured concentration differences and the flow rate.
10 . The system of claim 9 , wherein the flow sensor comprises a thermal sensor, a hygrometer and a pressure sensor.
11 . The system of claim 1 , wherein the first gas sampling portion comprises a first gas mixing chamber and the second gas sampling portion comprises a second gas mixing chamber.
12 . A method for measuring biological information, comprising:
sampling inhalation gas made up of a first gaseous mixture;
sampling exhalation gas made up of a second gaseous mixture;
controlling flow of the sampled inhalation gas and the sampled exhalation gas to a gas analyzer so as to alternately measure concentration of gaseous components within the first and second gaseous mixtures;
maintaining humidity within the first and second gaseous mixtures to a predetermined humidity level prior to measurement of the concentration of the gaseous components; and
calculating concentration differences of the gaseous components between the first and second gaseous mixtures.
13 . The method of claim 12 , further comprising the steps of:
connecting the first gas sampling portion to an inhalation gas circuit of a mechanical ventilator; and
connecting the second gas sampling portion to an exhaust port or an exhalation gas circuit of the mechanical ventilator.
14 . The method of claim 12 , further comprising the steps of:
connecting the first gas sampling portion to an inhalation gas circuit of a breathing mask with a first one-way valve; and
connecting the second gas sampling portion to an exhalation gas circuit of the breathing mask with a second one-way valve.
15 . The method of claim 12 , wherein the humidity is maintained by a humidity control system comprising at least one of a membrane dryer unit, a refrigerating dryer unit or a desiccant.
16 . The method of claim 15 , wherein the humidity control system is a membrane dryer unit, and purge gas used for the membrane dryer unit is at least one of dry gas from a gas supplying system, dry gas from a gas tank or dry gas as dried by a desiccant.
17 . The method of claim 15 , wherein the humidity control system is a refrigerating unit, and the refrigerating unit lower temperature of the first and second gaseous mixtures to −20° C. or below.
18 . The method of claim 12 , wherein the gas analyzer measures at least oxygen concentration and carbon dioxide concentration, and the method further comprises the step of calculating oxygen concentration differences and carbon dioxide concentration differences.
19 . The method of claim 18 , further comprising the step of calculating respiratory quotient (RQ) based on the calculated concentration differences.
20 . The method of claim 18 , further comprising the steps of:
measuring flow rate of at least one of the inhalation gas or the exhalation gas; and
calculating oxygen consumption (VO 2 ) and carbon dioxide generation (VCO 2 ) based on the measured concentration differences and the flow rate.