IP Library › Granted Patent US 10,881,775
Granted Patent B2
US 10,881,775 · App. 15/771,366 · Granted Jan 5, 2021

Dialysis machine and ultrafiltration

Inventor: Mark Wallace (Warwickshire, GB)
Assignee: QUANTA DIALYSIS TECHNOLOGIES LTD.
A61M1/1647A61M1/16A61M1/1637A61M1/1649A61M1/267A61M1/341A61M2205/12A61M2205/128
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Quick Facts
Patent No.
US 10,881,775
App. No.
15/771,366
Granted
Jan 5, 2021
Kind
B2
Abstract

The invention relates to a dialysis machine capable of performing ultrafiltration without the need for a dedicated ultrafiltration pump. The system uses a pair of membrane flow balance pumps wherein the operation and/or the volume flow rate of the pumps can be modified during operation to bring about a net movement of dialysate either into or from the dialyser. The direction of flow of the dialysate in the dialyzer is reversible and the dialyzer can comprise two dialysate inlets, one at each end, and two dialysate outlets, one at each end.

Claims (55)

1. A dialysis machine for ultrafiltration, co p sing:

a dialyser; and

a first pump and a second pump,

wherein:

each pump is adapted to deliver a fresh dialysate solution to the dialyser and remove a spent dialysate solution from the dialyser,

at least one of the first and second pumps comprising a cartridge and a platen,

the cartridge comprising a plurality of chambers and conduits covered by a flexible membrane,

the platen and cartridge further defining a membrane valve comprising a channel with an opening covered by the flexible membrane a valve cavity;

a volume flow rate of the first pump is different from a volume flow rate of the second pump; and

operation of at least one of the first pump and the second pump is configured to at least one of:

remove excess fluid from the dialyser and deliver excess fluid to the dialyser,

the dialysis machine being configured to vary the volume of the valve cavity by controlling the pressure differential across the flexible membrane of the membrane valve in order to change the shape of the flexible membrane when the membrane valve is in a closed configuration so as to effect at least one of the removal of excess fluid from the dialyser and delivery of excess fluid to the dialyser.

2. A dialysis machine for ultrafiltration comprising:

a dialyser;

a first pump adapted to deliver a fresh dialysate solution to the dialyser; and

a second pump adapted to remove a spent dialysate solution from the dialyser;

wherein

at least one of the first and second pumps comprising a cartridge and a platen,

the cartridge comprising a plurality of chambers and conduits covered by a flexible membrane,

the platen and cartridge defining a membrane valve comprising a valve cavity and a channel with an opening covered by the flexible membrane;

a volume flow rate of at least one of the first pump and the second pump is variable;

the volume flow rate of at least one of the first pump and the second pump are configured to at least one of remove excess fluid from the dialyser and deliver excess fluid to the dialyser;

and

the dialyser being configured to vary the volume of the valve cavity, by controlling the pressure differential across the flexible membrane of the membrane valve in order to change the shape of the flexible membrane when the membrane valve is in a closed configuration.

3. A dialysis machine according to claim 2 , wherein the volume of at least one of the pumps is variable.

4. The dialysis machine of claim 3 , wherein the volume of the first pump and the volume of the second pump are variable.

5. The dialysis machine of claim 4 , wherein the volume of the first pump is different from the volume of the second pump.

6. The dialysis machine of claim 5 , wherein the first pump and the second pump are operated at a different frequency.

7. The dialysis machine of claim 6 , wherein an operation of the first pump and/or the second pump is configured to remove excess fluid from the dialyser.

8. The dialysis machine of claim 7 , wherein the dialysis machine does not comprise a separate ultrafiltration pump.

9. The dialysis machine of claim 8 , wherein the first pump and/or the second pump are flow balance pumps.

10. The dialysis machine of claim 9 , wherein the first pump and/or the second pump comprise a pump chamber, a volume of the pump chamber of at least one of the first pump and/or the second pump is variable.

11. The dialysis machine of claim 10 , wherein the pump cavity comprises a base including one or more deployable protrusions.

12. The dialysis machine of claim 11 ; wherein a difference between the volume flow rate of the first pump and the volume flow rate of the second pump is at least 1%.

13. The dialysis machine of claim 12 , wherein a difference between the volume flow rate of the first pump and the volume flow rate of the second pump ranges from about to about 50%.

14. A method of operating the dialysis machine for ultrafiltration comprising:

providing a dialysis machine comprising a dialyser, a first pump, and a second pump, wherein:

a volume flow rate of the first pump is different from a volume flow rate of the second pump;

the first pump and the second pump each comprising a cartridge and a platen,

the cartridge comprising a plurality of chambers and conduits covered by a flexible membrane,

the platen and cartridge further defining a membrane valve comprising a channel with an opening covered by the flexible membrane a valve cavity;

and

an operation of at least one of the first pump and the second pump is configured to remove excess fluid from the dialyser and/or deliver excess fluid to the dialyser,

for at least one of the first pump and the second pump, varying the volume of the valve cavity by controlling a pressure differential across the flexible membrane of the membrane valve in order to change the shape of the flexible membrane when the membrane valve is in a closed configuration in order to effect the removal of excess fluid from the dialyser and/or delivery of excess fluid to the dialyser.

15. A method of operating a dialysis machine for ultrafiltration comprising:

providing a dialysis machine comprising a dialyser, a first pump adapted to deliver a fresh dialysate solution to the dialyser, and a second pump adapted to remove a spent dialysate solution from the dialyser;

wherein:

at least one of the first and second pumps comprising a cartridge and a platen,

the cartridge comprising a plurality of chambers and conduits covered by a flexible membrane,

the platen and cartridge defining a membrane valve comprising a valve cavity and a channel with an opening covered by the flexible membrane;

a volume flow rate of at least one of the first pump and the second pump:

is variable; and

configured to at least one of remove excess fluid from the dialyser and deliver excess fluid to the dialyser;

and

for at least one of the first pump and the second pump; varying the volume of the valve cavity by controlling a pressure differential across the flexible membrane of the membrane valve in order to change the shape of the flexible membrane when the membrane valve is in a closed configuration.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 25, 2019
From: WALLACE, MARK
To: QUANTA DIALYSIS TECHNOLOGIES LIMITED
Reel/Frame 050824/0993 →
Priority Claims (1)
GB 1519084.6 · Oct 28, 2015 · national
Continuity (1)
Related Publication 20180344915A1 · Dec 6, 2018
Cited By (5)
US 1,070,090 US 12,251,504 US 12,357,738 US 12,475,997 US 12,674,448