EP1517718B1

Fluid pumping, valve and heating systems, methods and apparatuses for an automated dialysis machine

Abstract

This record has no abstract on file.

EP1517718B1, drawing sheet 1
Sheet 1 of 39

Term

Term ended

Expired 15 May 2023, 3.4 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

28 claims: 11 independent, 17 dependent

  1. 1
    A pump (20) for a dialysis system (10) comprising:a first chamber wall (216) including a first aperture (222);a second chamber wall (218) including a second aperture (219);a piston (212), at least a portion of which can move through the second aperture (219), the piston (212) including a third aperture (220);and the first and second chamber walls (216, 218) being configured to accept first and second membranes (162, 164) of a disposable unit (160) between the first and second chamber walls (216, 218), wherein a vacuum can be applied through the first aperture (222) to pull the first membrane (162) towards the first chamber wall (216) and can be applied through the third aperture (220) to pull the second membrane (164) towards the piston (212), wherein the piston (212) can thereafter move the second membrane (164), the first and second membranes (162, 164) defining a flexible fluid receptacle (172) having a fluid opening (230) allowing dialysate to enter or exit said receptacle (172).
  2. 2
    The pump (20) of Claim 1, wherein the first and second chamber walls (216, 218) include opposing surfaces of a dialysis hardware unit (110).
  3. 3
    The pump (20) of Claim 1 or 2, wherein the piston (212) includes a piston head (214) and the second membrane (164) can be pulled by the vacuum towards the piston head (214).
  4. 4
    The pump (20) of any one of Claims 1 to 3, wherein the pistons (212) is driven by a stepper motor.
  5. 5
    The pump (20) of Claims 4, wherein the stepper motor is a linear stepper motor.
  6. 6
    The pump (20) of any one of Claims 1 to 5, which includes a diaphragm (232) disposed between the first and second chamber walls (216, 218), the diaphragm (232) moveable by the piston (212).
  7. 7
    The pump (20) of Claim 6, wherein the second membrane moves (164) toward the diaphragm (232) and the piston (212) when the vacuum is applied.
  8. 8
    The pump (20) of Claim 6, wherein the diaphragm (232) is constructed from an elastomer.
  9. 9
    The pump (20) of Claim 6, wherein the diaphragm (232) is constructed from an elastomer and includes a fabric reinforcement.
  10. 10
    The pump (20) of any one of Claims 1 to 9, wherein the first and second chamber walls (216, 218) form a shell shape with substantially aligned edges and the first and second membranes (162, 164) are sealed together substantially in cooperation with the aligned edges.
  11. 11
    The pump (20) of any one of Claims 1 to 10, which includes a first vacuum chamber that communicates with the first aperture (222) and a second vacuum chamber that communicates with the third aperture (220).
  12. 13
    Apparatus (26) comprising a cam arrangement for operating a series of valves (192) and a pump (20) as claimed in Claim 1 for pumping fluid to and from a patient, the valves (192) including a supply valve, a drain valve, a from-patient valve and a to-5 patient valve, the cam arrangement comprising:a camshaft (200);and a series of cams (202) connected to the camshaft (200), the cams (202) positioned and arranged to toggle back and forth between: a first open position for the supply valve and a second open position for the drain valve, a third open position for the from-patient valve and the second open position, and the first open position and a fourth open position for the to-patient valve.
  13. 14
    The apparatus (26) of Claim 13, wherein the first open position is located between the second open position and the fourth open position.
  14. 15
    The apparatus (26) of Claim 13 or 14, wherein the cams (202) further define a plurality of positions wherein all the valves (192) are closed between each of:(i) the third open position and the second open position, (ii) the first open position and the second open position, and (iii) the first open position and the fourth open position.
  15. 16
    The apparatus (26) of any one of claims 13 to 15, wherein the cams (202) further define a fifth open position wherein all the supply valve, drain valve, from-patient valve, and to-patient valve are open.
  16. 17
    The apparatus (26) of Claim 16, wherein the fifth open position is located between the third open position and the fourth open position.
  17. 18
    The apparatus (26) of any one of Claims 13 to 17, wherein the cams (202) further define a sixth open position for a last-bag valve.
  18. 19
    The apparatus (26) of Claim 18, wherein the fourth open position is located between the first open position and the sixth open position.
  19. 20
    The apparatus (26) of Claim 18 or 19, wherein the cams (202) are further positioned and arranged to toggle back and forth between the sixth open position and the fourth open position.
  20. 21
    The apparatus (26) of any one of Claims 13 to 20, wherein the fourth open position is arranged via a plurality of the cams (202) that collectively open a flow path that cooperates with a fluid heate (16).
  21. 22
    The apparatus (26) of any one of Claims 13 to 21, wherein the pump (20) is as claimed in any one of claims 2 to 11.
  22. 23
    An automated medical fluid system (10) comprising:a pump (20) as claimed in Claim 1;a series of valves (192);a camshaft (200) carrying cams (202) that operate the valves (192);a motor (28) that drives the camshaft (200);and a controller (30) that operates with the motor (28) to: sequentially toggle the camshaft (200) between a first open position for a from-patient valve and a second open position for a drain valve to drain fluid from a patient;and sequentially toggle the camshaft (200) between a third open position for a supply valve and a fourth open position for a to-patient valve to fill the patient with fluid.
  23. 24
    An automated medical fluid system (10) comprising:a pump (20) as claimed in Claim 1 for pumping fluid to and from a patient;a series of valves (192) including a supply valve, a drain valve, a from-patient valve and a to-patient valve;a cam arrangement (26) for operating the series of valves (192) comprising a camshaft (200) and a series of cams (202) connected to the camshaft (200);a motor (28) that drives the camshaft (200);and a controller (30) that operates with the motor (28) to toggle the cams (202) back and forth between: a first open position for the supply valve and a second open position for the drain valve, a third open position for the from-patient valve and the second open position, and the first open position and a fourth open position for the to-patient valve.
  24. 25
    An automated medical fluid system (10) comprising:a pump (20) as claimed in Claim 1;and a controller (30) that operates with the pump (20) to: effect a pump member acceleration during a first portion of a pump stroke, the acceleration determined before the first portion;use a first set of factors determined during a second portion of the pump stroke to change the pump member velocity during the second portion;and use a second set of factors determined during a third portion of the pump stroke to change the pump member velocity during the third portion.
  25. 26
    The automated medical fluid system (10) of any one of Claims 23 to 25, wherein the pump (20) is as claimed in any one of claims 2 to 11.
  26. 27
    An automated dialysis system (10) comprising; a pump (20) as claimed in Claim 1 for pumping a medical fluid; a heater (16) for heating the medical fluid; and a controller (30) that operates with the medical fluid heater (16) to:determine a first heater control output based on a. number of measured inputs for the heater (16) and at least one mathematical relationship between at least two of the inputs;determine a second heater control output based on at least one fuzzy logic membership function and at least one fuzzy logic rule;and determine a third heater control output based on the first and second outputs and use the third heater control output to control the heater (16).
  27. 28
    The automated dialysis system (10) of Claim 27, wherein the pump (20) is as claimed in any one of claims. 2 to 11.
Independent claims27