Methods and systems for operating an aerosol generator
View Patent ↗A system for intermittent delivery of an aerosolized medicament is disclosed. The system may include an aerosol generator, a controller and a conduit. The aerosol generator may be configured to aerosolize a medicament. The controller may be configured to receive physiological characteristic information about a patient, and control the aerosol generator based at least in part on the physiological characteristic information. The conduit may be configured to supply the aerosolized medicament to the patient's airway.
1. A system for intermittent delivery of an aerosolized medicament, the system comprising:
an aerosol generator that aerosolizes a medicament;
a controller, that:
receives physiological characteristic information about a patient;
receives information about the type of medicament being delivered;
stores at least some of the physiological characteristic information;
selects a mode of operation from a plurality of modes based at least in part on the type of medicament being delivered, each mode prescribing a respective first condition for determining when within the patient's breathing cycle aerosolization is started and a respective second condition for determining when within the patient's breathing cycle aerosolization is stopped; and
controls the aerosol generator based at least in part on the stored physiological characteristic information and according to the selected mode of operation; and
a conduit through which the aerosolized medicament is supplied to the patient's airway.
2. The system of claim 1 , wherein the physiological characteristic information comprises data representative of breathing.
3. The system of claim 1 , wherein the aerosol generator comprises:
an aerosolization element defining a plurality of apertures; and
a vibratory element that vibrates the aerosolization element.
4. The system of claim 3 , wherein the aerosolization element has a first side and a second side, and wherein when the aerosolization element is vibrated, a liquid medicament at the first side moves through the apertures and is ejected as aerosolized medicament from the second side.
5. The system of claim 1 , wherein the physiological characteristic information comprises breathing characteristic information, and wherein the controller activates the aerosol generator once a threshold level of inhalation has been achieved.
6. The system of claim 1 , wherein the controller further:
stores at least one aerosol generator operation program; and
controls the aerosol generator based at least in part on the aerosol generator operation program.
7. The system of claim 6 , wherein the aerosol generator operation program comprises at least two instructions selected from a group consisting of:
(i) activate the aerosol generator at a predetermined point in an inhalation phase of the patient, and deactivate the aerosol generator at a predetermined point in the inhalation phase of the patient;
(ii) activate the aerosol generator at a predetermined point in the inhalation phase of the patient, and deactivate the aerosol generator at a predetermined point in an exhalation phase of the patient;
(iii) activate the aerosol generator at a predetermined point in the exhalation phase of the patient, and deactivate the aerosol generator at a predetermined point in the exhalation phase of the patient; and
(iv) activate the aerosol generator at a predetermined point in the exhalation phase of the patient, and deactivate the aerosol generator at a predetermined point in the inhalation phase of the patient.
8. The system of claim 6 , wherein the conduit comprises a ventilator circuit, and wherein:
the physiological characteristic information is received from the ventilator circuit; and
the aerosol generator operation program comprises at least two instructions selected from a group consisting of:
(i) activate the aerosol generator at a predetermined point in an output phase of the ventilator circuit, and deactivate the aerosol generator at a predetermined point in the output phase of the ventilator circuit;
(ii) activate the aerosol generator at a predetermined point in the output phase of the ventilator circuit, and deactivate the aerosol generator at a predetermined point in a non-output phase of the ventilator circuit;
(iii) activate the aerosol generator at a predetermined point in the non-output phase of the ventilator circuit, and deactivate the aerosol generator at a predetermined point in the non-output phase of the ventilator circuit; and
(iv) activate the aerosol generator at a predetermined point in the non-output phase of the ventilator circuit, and deactivate the aerosol generator at a predetermined point in the output phase of the ventilator circuit.
9. The system of claim 1 , wherein the system further comprises a sensor that monitors and transmits physiological characteristic information.
10. The system of claim 9 , wherein the sensor comprises a pressure sensor that senses pressure changes in the conduit.
11. The system of claim 1 , wherein the conduit comprises a ventilator circuit.
12. The system of claim 11 , wherein the controller activates the aerosol generator once a threshold level of respiratory gas is supplied by the ventilator circuit.
13. The system of claim 1 , wherein:
when the information about the type of medicament delivered indicates that the type of medicament is a steroid, the controller controls the aerosol generator such that the medicament is delivered towards the end of an inhalation phase of a breath; and
when the information about the type of medicament delivered indicates that the type of medicament is an antibiotic, the controller controls the aerosol generator such that aerosol generation occurs at the beginning of a breath and stops after a predetermined percentage of inhalation has occurred.