Ventilator
Abstract
This invention provides ventilators that provide superior air-oxygen mixing and gas delivery. The ventilators that supply a gas mixture to the lungs of a subject. The gas mixture comprises a first gas (e.g. oxygen) and a second gas (e.g. ambient air). The ventilators comprise a first gas inlet, a second gas inlet, flow modulator of the first gas, a flow modulator of the second gas, a junction configured to mix the first gas and the second gas, a patient interface configured to deliver the gas mixture to a subject, a pressure sensor, a plurality of flow sensors comprising at least a first flow sensor and a second flow sensor, and at least one controller configured for obtaining data from the pressure sensor and flow sensors and controlling the flow modulators to provide a gas mixture having a target pressure and a target oxygen content.
Claims
exact text as granted — not AI-modified1 . A ventilator system comprising:
an air inlet connected to a first gas line; an oxygen inlet connected to a second gas line; an air pump connected to a third gas line downstream of a junction of the first gas line, the second gas line and the third gas line; an oxygen control valve and an oxygen flow sensor both connected to the second gas line upstream of the junction and downstream of the oxygen inlet; a mixed gas flow sensor and a mixed gas pressure sensor both connected to the third gas line downstream of the pump and upstream of a patient interface; and a controller operably connected to the air pump and the oxygen control valve, and further configured to receive measurement signals from the oxygen flow sensor, the mixed gas flow sensor and the mixed gas pressure sensor.
2 . The ventilator system of claim 1 , wherein the controller is configured to modulate a control signal for the oxygen control valve based on measurement signals received from the oxygen flow sensor and the mixed gas pressure sensor.
3 . The ventilator system of claim 1 , wherein the controller is configured to modulate a control signal for the pump based on measurement signals received from the oxygen flow sensor and the mixed gas pressure sensor.
4 . The ventilator system of claim 1 , wherein the controller is configured to modulate a control signal for the oxygen control valve based on measurement signals received from the oxygen flow sensor, the mixed gas pressure sensor and the mixed gas flow sensor.
5 . The ventilator system of claim 1 , wherein the controller is configured to modulate a control signal for the pump based on measurement signals received from the oxygen flow sensor, the mixed gas pressure sensor and the mixed gas flow sensor.
6 . The ventilator system of claim 1 , wherein an exhalation valve is connected to the third gas line downstream of the pump and upstream of the patient interface.
7 . The ventilator system of claim 6 , wherein the controller is configured to modulate a control signal for the exhalation valve based on measurement signals received from at least one of the mixed gas pressure sensor and the mixed gas flow sensor.
8 . The ventilator system of claim 7 , wherein the controller is configured to identify an inhalation phase and an exhalation phase based on the measurement signals, and the controller is configured to modulate a control signal for the exhalation valve so that it closes the exhalation valve during an inhalation phase, and opens the exhalation valve during an exhalation phase.
9 . The ventilator system of claim 1 , wherein the controller is configured to receive a target pressure.
10 . The ventilator system of claim 9 , wherein the target pressure is manually set by a user.
11 . The ventilator system of claim 9 , wherein the target pressure is calculated based on a preset pressure and a pressure measured from the mixed gas pressure sensor.
12 . The ventilator system of claim 9 , wherein the controller is configured to calculate a pressure error based on a difference between the target pressure and the pressure measured from the mixed gas pressure sensor.
13 . The ventilator system of claim 12 , wherein the pressure error is used to modulate a control signal of at least one of the pump and the oxygen control valve.
14 . The ventilator system of claim 1 further comprising:
a bacteria filter positioned in the third gas line downstream of the pump and upstream of the patient interface.
15 . The ventilator system of claim 1 further comprising:
a pressure regulator connected to the second gas line between the oxygen inlet and the junction.
16 . The ventilator system of claim 1 further comprising:
a high pressure oxygen source connected to the oxygen inlet.
17 . The ventilator system of claim 1 further comprising:
a low pressure air source connected to the air inlet.
18 . The ventilator system of claim 1 , wherein the pump is a low pressure variable speed blower.
19 . The ventilator system of claim 1 , wherein the pump is configured to pressurize downstream gas to a pressure of no more than 140 mbar.
20 . The ventilator system of claim 1 , wherein the pump is configured to pressurize downstream gas to a pressure of no more than 70 mbar.
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