Breathing assistance apparatus
A breathing assistance apparatus and method of controlling a breathing assistance apparatus is disclosed. Particularly, the breathing assistance apparatus is controlled such that it has a drying cycle to enable drying of the tubing that supplies gases to a user and prevent the harboring of pathogens within the tube. The drying cycle is preferably operated automatically by internal controllers in the apparatus. However, it may be manually activated by pressing a button on the apparatus. The drying cycle is preferably activated at the end of a user's treatment session.
1. A breathing assistance apparatus adapted to deliver humidified gases at a desired level of humidity, flow and temperature for treatment of a patient, the apparatus comprising:
a) a gases supply arrangement providing a flow of gases, b) a humidifier having a chamber adapted to receive a volume of water and a chamber heater to heat the water in the chamber, the chamber including an inlet and an outlet,
c) a transportation pathway to convey the humidified gases from the humidifier to the patient, the transportation pathway comprising a pathway heater having a distal end and a proximal end, the proximal end being adjacent the humidifier, the pathway heater being configured to heat the transportation pathway, and
d) a controller having stored instructions to complete the following steps following a conclusion of treatment of the patient:
i) switch off power to the chamber heater,
ii) set the flow of gases from the gases supply arrangement for a predetermined time, and switch off power to the chamber heater for at least a portion of the predetermined time, and
iii) after the predetermined time, switch off the gases supply arrangement, and
e) wherein the controller includes stored instructions to determine the conclusion of treatment of the patient when a substantial increase of flow of gases is detected exiting the gas supply arrangement for a second predetermined period of time.
2. A breathing assistance apparatus according to claim 1 , wherein the flow of gases is varied during the predetermined time to create a varied gases flow such that the varied gases flow evaporates condensate from the transportation pathway.
3. A breathing assistance apparatus according to claim 2 , wherein the varied flow of gases is increased from a first gases flow to a second gases flow within a portion of the predetermined time to create an increasing gases flow such that the increasing gases flow evaporates condensate from the transportation pathway.
4. A breathing assistance apparatus according to claim 3 , wherein the first gases flow is less than the second gases flow.
5. A breathing assistance apparatus according to claim 2 , wherein the varied flow of gases comprises pulses of gases flow within at least a portion of the predetermined time to create a pulsing gas flow such that the pulsing gas flow evaporates condensate from the transportation pathway.
6. A breathing assistance apparatus according to claim 5 , wherein the controller has stored instructions to alternatively pulse gas flow and pulse the power supplied to the pathway heater such that, when the gas flow is being pulsed, no power is supplied to the pathway heater and, when the pathway heater power is being pulsed, the gas flow is off.
7. A breathing assistance apparatus according to claim 1 , wherein the flow of gases is delivered at a fixed speed through the transportation pathway to create a fixed flow such that the fixed flow evaporates condensation from the transportation pathway.
8. A breathing assistance apparatus according to claim 1 , wherein the controller includes stored instructions to determine the conclusion of treatment of the patient when the patient activates an off button connected to the controller.
9. A breathing assistance apparatus according to claim 1 further comprising:
a) an outlet temperature sensor measuring a temperature of the flow of gases at the outlet to the chamber,
b) a distal temperature sensor measuring a temperature of the flow of gases at the distal end of the transportation pathway,
c) an ambient temperature sensor measuring ambient air temperature and wherein the controller includes stored instructions to:
i) control the pathway heater over the predetermined time such that the temperature of the flow of gases at the distal end of the transportation pathway, as sensed by the distal temperature sensor, does not exceed a safe temperature level, and
ii) monitor the outlet gases temperature sensor and ambient air temperature sensor, compare the temperature of the flow of gases at the outlet and the temperature of the ambient air and, when these are substantially equal, end the predetermined time and switch off the gases supply arrangement and the pathway heater.
10. A breathing assistance apparatus according to claim 9 , wherein the outlet temperature sensor is positioned at the outlet to the chamber.
11. A breathing assistance apparatus according to claim 1 , wherein the controller has stored instructions to complete the following steps following the conclusion of the treatment of the patient:
a) pulse gas flow between a first gas flow and a second gas flow during the predetermined time; and
b) pulse the power supplied to the pathway heater during the predetermined time.
12. A breathing assistance apparatus according to claim 1 , wherein the apparatus further comprises:
a) a distal temperature sensor configured to measure a temperature of the flow of gases at the distal end of the transportation pathway,
b) an ambient temperature sensor configured to measure ambient air temperature, and
c) a chamber heater temperature sensor configured to measure the chamber heater temperature, and the controller includes stored instructions to:
i) control the pathway heater over the predetermined time such that a temperature of the gases at the distal end of the transportation pathway, as sensed by the distal temperature sensor, does not exceed a safe temperature level, and
ii) monitor the chamber heater temperature sensor and ambient air temperature sensor, compare the chamber heater temperature and the ambient air temperature and, when these are substantially equal, end the predetermined time and switch off the gases supply arrangement and pathway heater.
13. A breathing assistance apparatus according to claim 1 , wherein the controller has stored instructions to pulse power provided to the pathway heater during the predetermined time such that heat delivered by the pathway heater is pulsed during the predetermined time.