Saliva management system with continuous flow through oral device
Systems for maintaining a vacuum in a patient's oral cavity comprises an oral device, a vacuum control system, and an assembly including first and second tubes for connecting the vacuum control system to the oral device. The oral device has an internal plenum, and a vacuum is drawn in the plenum by a vacuum pump connected by a first tube of the tubular assembly. The vacuum is maintained by an air source which is connected to the plenum by the second tube of the tubular assembly. By maintaining a constant circulating air bleed through the oral device and the connecting tubes, saliva may be removed from the system and collected in a saliva trap located before the vacuum pump.
1. A method for drawing a vacuum in a patient's oral cavity, said method comprising:
placing an oral device in the patient's oral cavity, said device having an inlet, an outlet, a plenum there between, and at least one vacuum port on a posterior region of the plenum;
drawing a vacuum on the outlet to establish air flow into the inlet, through the plenum, and out from the outlet;
restricting the airflow into the inlet to draw a vacuum in the plenum; and
wherein at least one of the drawing of the vacuum and the restricting of the airflow into the inlet is controlled to maintain a vacuum wherein moist air will be drawn into the plenum from the patient's oral cavity.
2. A method as in claim 1 , wherein the vacuum is maintained in the range from 20 mmHg to 70 mmHg.
3. A method as in claim 1 , further comprising removing moisture from the air drawn by the vacuum.
4. A method as in claim 3 , wherein moisture is trapped in a trap placed between the device output and the vacuum pump.
5. A method as in claim 1 , wherein restricting comprises placing a fixed orifice before the device inlet.
6. A method as in claim 1 , wherein the vacuum is controlled by controlling a vacuum pump connected to the device output.
7. A method as in claim 1 , further comprising measuring pressures or flow of gas between a first point on the inlet and a second point on the outlet and comparing the measured pressures or flow of gas to determine if the system is functioning properly.