IP Library › Granted Patent US 8,668,682
Granted Patent B2
US 8,668,682 · App. 12/779,776 · Granted Mar 11, 2014

Vacuum regulators with VAP features

Inventors: Michael Andrew Krupa (Northampton, PA); Jeremy Charnegie (Emmaus, PA)
Assignee: Precision Medical, Inc.
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Quick Facts
Patent No.
US 8,668,682
App. No.
12/779,776
Granted
Mar 11, 2014
Kind
B2
Abstract

A vacuum regulator apparatus for continuous subglottic aspiration is provided. In one version, the regulator apparatus attaches to a standard vacuum regulator and shares the same vacuum supply outlet as the standard vacuum regulator. Sufficient airflow is provided through the regulator apparatus and calibrated bleed orifice to provide proper continuous subglottic aspiration. Vacuum levels to maintain the airflow are in a range suitable to provide patient comfort. A ball flow indicator provides visual indication of flow through a subglottic tube interface port of the regulator apparatus. A direct flow channel can be momentarily opened causing flow to bypass the regulator module in for clearing blockages affecting the subglottic tube interface port.

Claims (54)

1. A vacuum regulator apparatus, comprising:

an internal vacuum flow channel;

a vacuum source port in communication with the internal vacuum flow channel;

a subglottic tube interface port in communication with the internal vacuum flow channel;

a regulator module in communication with the internal vacuum flow channel; and

an orifice to ambient pressure in communication with the internal vacuum flow channel, wherein the orifice is configured to provide increased flow through the subglottic tube interface port for a selected vacuum.

2. The vacuum regulator apparatus of claim 1 , wherein the vacuum source port is configured for a piggyback connection to a facility vacuum supply along with at least one other vacuum device.

3. The vacuum regulator apparatus of claim 1 , wherein the increased flow is between about 20 and about 40 liters per minute for a corresponding selected vacuum of between about 20 and about 60 mmHg.

4. The vacuum regulator apparatus of claim 1 , wherein the orifice has a diameter of about between 0.039 inches and 0.045 inches.

5. The vacuum regulator apparatus of claim 1 , comprising:

a flow indicator ball disposed in communication with the subglottic tube interface port, wherein the flow indicator ball is visibly held in an elevated position by an airflow from a subglottic tube through the subglottic tube interface port.

6. The vacuum regulator apparatus of claim 5 , wherein the indicator ball is configured to be held in the elevated position when said airflow is sufficient for proper subglottic aspiration.

7. The vacuum regulator apparatus of claim 1 , comprising:

a direct flow channel between the vacuum source port and the subglottic tube interface port;

wherein the direct flow channel is normally closed; and

a momentary actuator in communication with the direct flow channel, the momentary actuator configured to open the direct flow channel causing flow to bypass the regulator module in response to a momentary manipulation by a user for clearing blockages affecting the subglottic tube interface port.

8. The vacuum regulator apparatus of claim 7 , wherein the momentary actuator comprises a spring biased push button valve.

9. A vacuum regulator apparatus, comprising:

a vacuum source port in communication with an internal vacuum flow channel;

a subglottic tube interface port in communication with the internal vacuum flow channel;

a regulator module in communication with the internal vacuum flow channel, the regulator module selectively reducing vacuum to the subglottic tube interface port;

an orifice to ambient pressure in communication with the internal vacuum flow channel, wherein the orifice is configured to increase flow to the subglottic tube interface port for a selected vacuum;

a flow indicator ball disposed in communication with the subglottic tube interface port, wherein the flow indicator ball is visibly held in an elevated position by an airflow from a subglottic tube through the subglottic tube interface port;

a direct flow channel between the vacuum source port and the subglottic tube interface port; wherein the direct flow channel is normally closed; and

a momentary actuator in communication with the direct flow channel, the momentary actuator configured to open the direct flow channel causing flow to bypass the regulator module in response to a momentary manipulation by a user for clearing blockages affecting the subglottic tube interface port.

10. The apparatus of claim 9 , wherein the vacuum source port is configured for a piggyback connection to a facility vacuum supply along with at least one other vacuum device.

11. A method for providing improved subglottic aspiration to a medical patient, comprising:

connecting a regulator apparatus between a facility vacuum supply and a subglottic tube being used on the medical patient;

applying vacuum through a vacuum source port in communication with an internal vacuum flow channel;

selectively controlling vacuum through a regulator module in communication with the internal vacuum flow channel; and

bleeding external air through an orifice into the internal vacuum flow channel to provide increased flow through the subglottic tube interface port for a selected vacuum.

12. The method of claim 11 , comprising:

configuring the vacuum source port in a piggyback connection to the facility vacuum supply along with at least one other vacuum device.

13. The method of claim 11 , comprising:

reducing the flow in the subglottic tube interface port to between about 20 and about 40 liters per minute for a corresponding selected vacuum of between about 20 and about 60 mmHg.

14. The method of claim 1 , wherein the orifice has a diameter of about between 0.039 inches and 0.045 inches.

15. The method of claim 11 , comprising:

monitoring a flow indicator ball in communication with the subglottic tube interface port, wherein the flow indicator ball is visibly held in an elevated position by an airflow from a subglottic tube through the subglottic tube interface port.

16. The method of claim 15 , comprising:

configuring the indicator ball to be held in the elevated position when said airflow provides subglottic aspiration.

17. The method of claim 11 , comprising:

opening a direct flow channel between the vacuum source port and the subglottic tube interface port;

wherein the direct flow channel is normally closed by actuating a momentary actuator in communication with the direct flow channel, the momentary actuator configured to open the direct flow channel causing flow to bypass the regulator module in response to a momentary manipulation by a user for clearing blockages affecting the subglottic tube interface port.

18. The method of claim 17 , wherein the momentary actuator comprises a spring biased push button valve.

19. The method of claim 11 comprising, connecting the vacuum supply port of the regulator apparatus to a standard medical vacuum regulator in communication with the facility vacuum supply, the standard vacuum regulator being concurrently accessible for use by other vacuum devices.

20. The method of claim 19 , comprising, periodically clearing the subglottic tube interface port by actuating the momentary actuator.

21. A subglottic tube vacuum regulator, comprising:

an internal vacuum flow channel;

a vacuum source port in communication with the internal vacuum flow channel;

a subglottic tube interface port in communication with the internal vacuum flow channel;

a bleed orifice in the internal vacuum flow channel to provide increased flow through the subglottic tube interface port for a reduced vacuum in the internal vacuum flow channel; and

wherein airflow at the vacuum source port is in a direction opposite to airflow at the bleed orifice.

22. The subglottic tube vacuum regulator of claim 21 , comprising:

a flow indicator ball in communication with the subglottic tube interface port, wherein the flow indicator ball is configured to be visibly held in an elevated position by airflow through the subglottic tube interface port.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2010
From: KRUPA, MICHAEL ANDREW; CHARNEGIE, JEREMY
To: PRECISION MEDICAL, INC.
Reel/Frame 025022/0833 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2010
From: KRUPA, MICHAEL ANDREW
To: PRECISION MEDICAL, INC.
Reel/Frame 024516/0479 →
Continuity (1)
Related Publication 20110282326A1 · Nov 17, 2011