IP Library Granted Patent US 8,840,581
Granted Patent B2
US 8,840,581 · App. 12/864,322 · Granted Sep 23, 2014

Disposable components for fluid line autoconnect systems and methods

Inventors: David W. McGill (Alpharetta, GA); Jacob W. Scarpaci (Manchester, NH); James D. Dale (Nashua, NH); Simon C. Helmore (Somerville, MA); Jason A. Demers (Manchester, NH)
Assignee: DEKA Products Limited Partnership
A61M39/20A61M1/281A61M2205/12A61M1/288A61M39/105A61M39/1011A61M1/28A61M2205/3379A61M2209/08
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Quick Facts
Patent No.
US 8,840,581
App. No.
12/864,322
Granted
Sep 23, 2014
Kind
B2
Abstract

Components for a medical infusion fluid handling system, such as an APD system, in which one or more lines (such as solution lines), spikes or other connection ports may be automatically capped and/or de-capped. This feature may provide advantages, such as a reduced likelihood of contamination since no human interaction is required to de-cap and connect the lines, spikes or other connection ports. For example, a fluid handling cassette may include one or more caps that cover a corresponding spike and include a raised and/or recessed feature to assist in removal of the one or more caps from the cassette. A solution line cap may include a hole and recess, groove or other feature to engage with a spike cap and enable removal of the spike cap.

Claims (44)

1. A fluid handling cassette for use in a peritoneal dialysis system, the cassette comprising:

a body removably mountable in a peritoneal dialysis base unit and having two pump chambers, each formed as a depression in a first side of the body, and also having a plurality of flowpaths for one or more fluids;

a patient line port located at a first end of the body arranged for connection to a patient line, the patient line port being in valved fluid communication with each pump chamber via a first flowpath;

a plurality of solution line ports located at a second end of the body opposite the first end, each of the solution line ports being in valved fluid communication with each pump chamber via the first flowpath;

a drain line port located at the first end of the body and arranged for connection to a drain line, the drain line port being in valved fluid communication with each pump chamber via a second flowpath;

a fluid heating port located at the first end of the body and arranged for connection to a fluid heating line, the fluid heating port being in valved fluid communication with each pump chamber via the second flowpath;

a plurality of valves associated with the first and second flowpaths, wherein a number of valves associated with the first flowpath is equal to a number of ports plus a number of pump chambers associated with the first flowpath, and a number of valves associated with the second flowpath is equal to a number of ports plus a number of pump chambers associated with the second flowpath; and

a flexible membrane attached to the first side of the body over the pump chambers, a portion of the membrane over each pump chamber being arranged to be movable for movement of the one or more fluids in each pump chamber.

2. The fluid handling cassette of claim 1 , wherein the first flowpath in a first valving configuration is arranged to provide fluid communication between one or more solution line ports and at least one pump chamber, and in a second valving configuration is arranged to provide fluid communication between the patient line port and at least one pump chamber.

3. The fluid handling cassette of claim 2 , wherein each pump chamber has a first pump port and a second pump port, the first pump port being in valved fluid communication with the first flowpath.

4. The fluid handling cassette of claim 1 , wherein the second flowpath in a first valving configuration is arranged to provide fluid communication between the drain line port and at least one pump chamber, and in a second valving configuration is arranged to provide fluid communication between the fluid heating port and at least one pump chamber.

5. The fluid handling cassette of claim 4 , wherein each pump chamber has a first pump port and a second pump port, the second pump port being in valved fluid communication with the second flowpath.

6. The fluid handling cassette of claim 1 , wherein each pump chamber has a first pump port and a second pump port, the first pump port being in valved fluid communication with the patient line port or the solution line ports, and the second pump port is in valved fluid communication with the drain line port or the fluid heating port.

7. The fluid handling cassette of claim 1 , wherein the first flowpath is vertically below the second flowpath when the fluid handling cassette is placed in an operational position.

8. The fluid handling cassette of claim 1 , further comprising a fluid heating bag and line attached to the fluid heating port.

9. The fluid handling cassette of claim 1 , wherein the solution line ports comprise solution line spikes.

10. A fluid handling cassette for use in a peritoneal dialysis system, the cassette comprising:

a body configured to be removably interposed between a control surface and a door of a peritoneal dialysis apparatus, the body having two pump chambers, each formed as a depression in a first side of the body and a plurality of flowpaths for one or more fluids;

a flexible membrane attached to the first side of the body over the pump chambers, a portion of the membrane over each pump chamber being arranged to be movable for movement of the one or more fluids in each pump chamber;

a plurality of valves comprising port valves, each port valve operatively associated with one of a plurality of fluid ports on the body, and comprising pump valves operatively associated with each pump chamber;

the fluid ports comprising:

a patient line port arranged for connection to a patient line, the patient line port being in valved fluid communication with each pump chamber via a first flowpath;

a plurality of solution line ports, each of the solution line ports being in valved fluid communication with each pump chamber via the first flowpath;

a drain line port arranged for connection to a drain line, the drain line port being in valved fluid communication with each pump chamber via a second flowpath; and

a fluid heating port arranged for connection to a fluid heating line, the fluid heating port being in valved fluid communication with each pump chamber via the second flowpath;

wherein a total number of valves included on the body is no greater than a sum of a total number of fluid ports plus twice a number of pump chambers.

11. The fluid handling cassette of claim 10 , wherein each pump chamber has a first pump port and a second pump port, the first pump port being in valved fluid communication with the patient line port or the solution line ports, and the second pump port being in valved fluid communication with the drain line port or the fluid heating port.

12. The fluid handling cassette of claim 10 , wherein each pump chamber has a first pump port and a second pump port, the first pump port being in valved fluid communication with the first flowpath.

13. The fluid handling cassette of claim 10 , wherein each pump chamber has a first pump port and a second pump port, the second pump port being in valved fluid communication with the second flowpath.

14. The fluid handling cassette of claim 10 , wherein each pump chamber has a first pump port and a second pump port, the first pump port being in valved fluid communication with the first flowpath, and the second pump port is in valved fluid communication with the second flowpath.

15. A fluid handling cassette for use in a peritoneal dialysis system, the cassette comprising:

a rigid body having two pump chambers, each formed as a depression in a first side of the body and a plurality of flowpaths for one or more fluids;

a flexible membrane attached to the first side of the body over the pump chambers, a portion of the membrane over each pump chamber being arranged to be movable for movement of the one or more fluids in each pump chamber;

a plurality of valves comprising port valves, each port valve operatively associated with one of a plurality of fluid ports on the body, and comprising at least one pump valve operatively associated with each pump chamber;

the fluid ports comprising:

a patient line port located at a first end of the body arranged for connection to a patient line, the patient line port being in valved fluid communication with each pump chamber via a first flowpath;

a plurality of solution line ports located at a second end of the body opposite the first end, each of the solution line ports being in valved fluid communication with each pump chamber via the first flowpath;

a drain line port located at the first end of the body and arranged for connection to a drain line, the drain line port being in valved fluid communication with each pump chamber via a second flowpath; and

a fluid heating port located at the first end of the body and arranged for connection to a fluid heating line, the fluid heating port being in valved fluid communication with each pump chamber via the second flowpath;

wherein the valves included on the body are limited to one valve associated with each fluid port and up to two valves associated with each pump chamber.

16. The fluid handling cassette of claim 15 , wherein each pump chamber has a first pump port and a second pump port, the first pump port being in valved fluid communication with the patient line port or the solution line ports, and the second pump port is in valved fluid communication with the drain line port or the fluid heating port.

17. The fluid handling cassette of claim 15 , wherein each pump chamber has a first pump port and a second pump port, the first pump port being in valved fluid communication with the first flowpath.

18. The fluid handling cassette of claim 15 , wherein each pump chamber has a first pump port and a second pump port, the second pump port being in valved fluid communication with the second flowpath.

19. The fluid handling cassette of claim 15 , wherein each pump chamber has a first pump port and a second pump port, the first pump port being in valved fluid communication with the first flowpath, and the second pump port is in valved fluid communication with the second flowpath.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2010
From: MCGILL, DAVID W.; SCARPACI, JACOB W.; DALE, JAMES D.; HELMORE, SIMON C.; DEMERS, JASON A.
To: DEKA PRODUCTS LIMITED PARTNERSHIP
Reel/Frame 025384/0177 →
Continuity (3)
Provisional Application 61011967 · Jan 23, 2008
Provisional Application 61058469 · Jun 3, 2008
Related Publication 20110125085A1 · May 26, 2011