IP Library Granted Patent US 9,795,731
Granted Patent B2
US 9,795,731 · App. 14/446,609 · Granted Oct 24, 2017

Blood treatment air purging methods

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Quick Facts
Patent No.
US 9,795,731
App. No.
14/446,609
Granted
Oct 24, 2017
Kind
B2
Abstract

An air purging method includes: (a) detecting a low fluid level in a blood circuit indicating a high amount of air in the blood circuit; (b) stopping a blood pump; (c) closing a venous patient line; (d) opening a blood circuit air vent valve and a drain valve; and (e) running the blood pump to meter air through the air vent valve and the drain valve to a drain.

Claims (82)

1. A blood treatment air purging method comprising:

(a) detecting a low fluid level in a blood circuit indicating a high amount of air in the blood circuit;

(b) stopping a blood pump and a dialysate pump;

(c) closing a venous patient line;

(d) opening a blood circuit air vent valve and a drain valve; and

(e) running the blood pump to meter air through the blood circuit air vent valve and the drain valve to a drain.

2. The blood treatment air purging method of claim 1 , which includes:

(f) detecting a high fluid level in the blood circuit;

(g) stopping the blood pump;

(h) closing the blood circuit air vent valve and the drain valve;

(i) opening the venous patient line; and

(j) running the blood pump to lower the fluid level in the blood circuit.

3. The blood treatment air purging method of claim 1 , which includes restarting the dialysate pump upon detecting an overfill at a blood leak detector.

4. The blood treatment air purging method of claim 1 , which includes detecting the low fluid level at an air trap in fluid communication with the blood circuit air vent valve.

5. The blood treatment air purging method of claim 1 , which includes:

(f) detecting a low fluid level in a dialysate circuit, indicating a high amount of air in the dialysate circuit;

(g) stopping the dialysate pump;

(h) opening a dialysate circuit air vent valve; and

(i) running the dialysate pump to meter air through the dialysate circuit air vent valve and the drain valve to the drain.

6. The blood treatment air purging method of claim 1 , which includes closing a saline valve and a heparin valve.

7. The blood treatment air purging method of claim 1 , which includes opening the blood circuit air vent valve while a second blood circuit air vent valve remains closed, and thereafter closing the blood circuit air vent valve while the second blood circuit air vent valve is open to prevent outside air from contacting blood.

8. A blood treatment air purging method comprising:

stopping a blood pump;

stopping a dialysate pump;

closing a venous patient line;

opening a blood circuit air vent valve and a drain valve; and

running the blood pump to meter air through the blood circuit air vent valve and the drain valve to a drain.

9. The blood treatment air purging method of claim 8 , which includes:

detecting a high fluid level in the blood circuit;

stopping the blood pump;

closing the blood circuit air vent valve and the drain valve;

opening the venous patient line; and

running the blood pump to lower the fluid level in the blood circuit.

10. The blood treatment air purging method of claim 8 , which includes detecting a low fluid level at an air trap in fluid communication with the blood circuit air vent valve.

11. The blood treatment air purging method of claim 8 , which includes:

detecting a low fluid level in a dialysate circuit indicating a high amount of air in the dialysate circuit;

stopping the dialysate pump;

opening a dialysate circuit air vent valve; and

running the dialysate pump to meter air through the dialysate circuit air vent valve and the drain valve to the drain.

12. The blood treatment air purging method of claim 8 , which includes closing a saline valve and a heparin valve.

13. The blood treatment air purging method of claim 8 , which includes opening the blood circuit air vent valve while a second blood circuit air vent valve remains closed, and thereafter closing the blood circuit air vent valve while the second blood circuit air vent valve is open to prevent outside air from contacting blood.

14. A blood treatment air purging method comprising:

detecting a low fluid level in a blood circuit indicating a high amount of air in the blood circuit;

stopping a blood pump;

closing a venous patient line;

opening a blood circuit air vent valve and a drain valve;

running the blood pump to meter air through the blood circuit air vent valve and the drain valve to a drain;

detecting a low fluid level in a dialysate circuit indicating a high amount of air in the dialysate circuit;

stopping a dialysate pump;

opening a dialysate circuit air vent valve; and

running the dialysate pump to meter air through the dialysate circuit air vent valve and the drain valve to the drain.

15. The blood treatment air purging method of claim 14 , which includes:

detecting a high fluid level in the blood circuit;

stopping the blood pump;

closing the blood circuit air vent valve and the drain valve;

opening the venous patient line; and

running the blood pump to lower the fluid level in the blood circuit.

16. The blood treatment air purging method of claim 14 , which includes stopping the dialysate pump upon detecting the low fluid level in the blood circuit.

17. The blood treatment air purging method of claim 14 , which includes detecting the low fluid level in the blood circuit at an air trap in fluid communication with the blood circuit air vent valve.

18. The blood treatment air purging method of claim 14 , which includes closing a saline valve and a heparin valve.

19. The blood treatment air purging method of claim 14 , which includes opening the blood circuit air vent valve while a second blood circuit air vent valve remains closed, and thereafter closing the blood circuit air vent valve while the second blood circuit air vent valve is open to prevent outside air from contacting blood.

20. A blood treatment air purging method comprising:

detecting a low fluid level in a blood circuit indicating a high amount of air in the blood circuit;

stopping a blood pump;

closing a venous patient line;

opening a blood circuit air vent valve and a drain valve;

running the blood pump to meter air through the blood circuit air vent valve and the drain valve to a drain; and

leaving the blood circuit air vent valve open while a second blood circuit air vent valve remains closed, and thereafter closing the blood circuit air vent valve while the second blood circuit air vent valve is open to prevent outside air from contacting blood.

21. The blood treatment air purging method of claim 20 , which includes:

detecting a high fluid level in the blood circuit;

stopping the blood pump;

closing the blood circuit air vent valve and the drain valve;

opening the venous patient line; and

running the blood pump to lower the fluid level in the blood circuit.

22. The blood treatment air purging method of claim 20 , which includes stopping a dialysate pump upon detecting the low fluid level.

23. The blood treatment air purging method of claim 20 , which includes detecting the low fluid level at an air trap in fluid communication with the blood circuit air vent valve.

24. The blood treatment air purging method of claim 20 , which includes:

detecting a low fluid level in a dialysate circuit indicating a high amount of air in the dialysate circuit;

stopping a dialysate pump;

opening a dialysate circuit air vent valve; and

running the dialysate pump to meter air through the dialysate circuit air vent valve and the drain valve to the drain.

25. The blood treatment air purging method of claim 20 , which includes closing a saline valve and a heparin valve.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2025
From: BAXTER INTERNATIONAL INC.
To: VANTIVE US HEALTHCARE LLC
Reel/Frame 073413/0198 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2025
From: BAXTER HEALTHCARE SA
To: VANTIVE HEALTH GMBH
Reel/Frame 074046/0342 →
SECURITY INTEREST Recorded Jan 31, 2025
From: VANTIVE US HEALTHCARE LLC; GAMBRO RENAL PRODUCTS, INC.
To: ARES CAPITAL CORPORATION
Reel/Frame 070076/0701 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2015
From: KELLY, THOMAS D.; MINKUS, MARC S.; BERNARDO, ANGELITO A.; BURNS, WILLIAM P.; CHILDERS, ROBERT W.; MALIEKKAL, SHINCY J.; MULLER, MATTHEW R.; ROHDE, JUSTIN B.; HOGARD, MICHAEL E.
To: BAXTER INTERNATIONAL INC.; BAXTER HEALTHCARE S.A.
Reel/Frame 036879/0583 →