IP Library Granted Patent US 8,409,441
Granted Patent B2
US 8,409,441 · App. 12/549,285 · Granted Apr 2, 2013

Blood treatment systems and methods

Inventor: Michael J. Wilt (Windham, NH)
Assignee: DEKA Products Limited Partnership
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Quick Facts
Patent No.
US 8,409,441
App. No.
12/549,285
Granted
Apr 2, 2013
Kind
B2
Abstract

Dialysis systems comprising actuators that cooperate to perform dialysis functions and sensors that cooperate to monitor dialysis functions are disclosed. According to one aspect, such a hemodialysis system comprises a user interface model layer, a therapy layer, below the user interface model layer, and a machine layer below the therapy layer. The user interface model layer is configured to manage the state of a graphical user interface and receive inputs from a graphical user interface. The therapy layer is configured to run state machines that generate therapy commands based at least in part on the inputs from the graphical user interface. The machine layer is configured to provide commands for the actuators based on the therapy commands.

Claims (14)

1. A method for returning blood to a patient in the event of a power failure condition in a dialysis system that uses compressed air to actuate pumps and/or valves during a dialysis process, wherein the dialysis system comprises a dialyzer having a membrane that separates a blood flow path from a dialysate flow path, the method comprising:

identifying a power failure condition in a dialysis system;

in response to the identification of a power failure condition, releasing compressed air from a reservoir associated with the dialysis system; and

using the released compressed air, increasing a pressure in the dialysate flow path to cause blood in the blood flow path to return to the patient.

2. In an extracorporeal treatment system, a method for returning extracorporeal blood to a patient using a source of compressed gas in the event of a power failure, wherein the extracorporeal treatment system comprises a filter having a semi-permeable membrane that separates a blood flow path from an electrolyte solution flow path, the compressed gas is in valved communication with an electrolyte solution container, and the electrolyte solution container is in valved communication with the electrolyte solution flow path, the method comprising:

in response to a termination of electrical power to one or more electrically actuated valves that control a distribution of compressed gas or a distribution of electrolyte solution flow in the extracorporeal treatment system:

causing one or more first electrically actuated valves to open a first fluid pathway between the compressed gas and the electrolyte solution container;

causing one or more second electrically actuated valves to open a second fluid pathway between said electrolyte solution container and said filter;

causing one or more third electrically actuated valves to close an alternate fluid pathway in said electrolyte solution flow path if said alternate fluid pathway diverts electrolyte solution away from said filter; and

using the compressed gas to increase pressure in the electrolyte solution flow path to cause blood in the blood flow path to return to the patient.

3. In an extracorporeal treatment system, a method for returning extracorporeal blood to a patient using a source of compressed gas in the event of a power failure, wherein the extracorporeal treatment system comprises a filter having a semi-permeable membrane that separates a blood flow path from an electrolyte solution flow path, the compressed gas is in valved communication with an electrolyte solution container, and the electrolyte solution container is in valved communication with the electrolyte solution flow path, the method comprising:

in response to a termination of electrical power to one or more electrically actuated valves that control a distribution of compressed gas or a distribution of electrolyte solution flow in the extracorporeal treatment system:

causing one or more electrically actuated valves to open a fluid pathway between the compressed gas and the electrolyte solution container; and

using the compressed gas, causing flow of an electrolyte solution from the electrolyte solution container through the filter to cause blood in the blood flow path to return to the patient.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE SERIAL NO. 11/549,285 PREVIOUSLY RECORDED ON REEL 024057 FRAME 0328. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded May 31, 2013
From: LEONARD, SCOTT A.
To: DEKA PRODUCTS LIMITED PARTNERSHIP
Reel/Frame 030550/0337 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2010
From: LEONARD, SCOTT A.
To: DEKA PRODUCTS LIMITED PARTNERSHIP
Reel/Frame 024057/0328 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2010
From: KAMEN, DEAN; WILT, MICHAEL J.; DEMERS, JASON A.; BALLANTYNE, TODD A.; GRAY, LARRY B.
To: DEKA PRODUCTS LIMITED PARTNERSHIP
Reel/Frame 024057/0412 →
Continuity (6)
Continuation In Part 12199452 · Aug 27, 2008
Continuation In Part 12072908 · Feb 27, 2008
Provisional Application 60903582 · Feb 27, 2007
Provisional Application 60904024 · Feb 27, 2007
Provisional Application 61092239 · Aug 27, 2008
Related Publication 20100192686A1 · Aug 5, 2010