PERITONEAL DIALYSIS CASSETTE WITH A BUBBLE DETECTOR
Systems, components, and methods are provided for detection of air bubbles in a fluid moving through a peritoneal dialysis cassette. The systems, components and methods include a sensor capable of detecting air bubbles in the fluid positioned complementary to an air bubble sensing region of the peritoneal dialysis cassette.
1 . A peritoneal dialysis cassette; comprising:
a first flexible surface and a second surface;
a plurality of fluid passages fluidly connecting a plurality of inlet/outlet ports, the plurality of fluid passages being disposed between the first flexible surface and the second surface;
a diaphragm pump comprising a first pump chamber and a second pump chamber, the diaphragm pump fluidly connected to the plurality of fluid passages; and
at least one air bubble sensing region.
2 . The peritoneal dialysis cassette of claim 1 , wherein the second surface is a flexible surface; the peritoneal dialysis cassette further comprising a rigid body between the first flexible surface and the second surface.
3 . The peritoneal dialysis cassette of claim 1 , wherein the second surface is a rigid surface.
4 . The peritoneal dialysis cassette of claim 3 ; wherein the air bubble sensing region comprises a transparent portion of the second surface.
5 . The peritoneal dialysis cassette of claim 1 ; wherein the plurality of fluid passages include closable fluid openings from a first side of the peritoneal dialysis cassette to a second side of the peritoneal dialysis cassette.
6 . The peritoneal dialysis cassette of claim 3 , wherein the air bubble sensing region comprises a membrane over a portion of the second surface.
7 . The peritoneal dialysis cassette of claim 3 , wherein the air bubble sensing region comprises a rigid cover over a portion of the second surface.
8 . A system, comprising:
the peritoneal dialysis cassette of claim 1 ;
a peritoneal dialysis cycler;
the peritoneal dialysis cycler comprising an optical sensor;
the optical sensor positioned complementary to the air bubble sensing region when the peritoneal dialysis cassette is engaged to the cycler.
9 . The system of claim 8 , further comprising a processor in communication with the optical sensor; the processor programmed to determine an amount of air bubbles present in the bubble sensing region.
10 . The system of claim 9 , the processor programmed to drain fluid in the peritoneal dialysis cassette if air bubbles are present in the bubble sensing region.
11 . The system of claim 8 , wherein the second surface is a rigid surface, and wherein the air bubble sensing region is a transparent portion of the second surface.
12 . The system of claim 11 , wherein the bubble sensing region comprises a flat membrane over a portion of the second surface.
13 . The system of claim 11 , wherein the air bubble sensing region comprises a transparent rigid cover over a portion of the second surface.
14 . The system of claim 8 , wherein the air bubble sensing region is a transparent portion of the first flexible surface.
15 . The system of claim 14 , wherein the air bubble sensing region comprises a flat membrane over a portion of the first flexible surface.
16 . The system of claim 14 , wherein the air bubble sensing region comprises a transparent membrane over a portion of the first flexible surface.
17 . The system of claim 8 , wherein the plurality of fluid passages include closable fluid openings from a first side of the peritoneal dialysis cassette to a second side of the peritoneal dialysis cassette.
18 . The system of claim 17 , further comprising a processor; the processor programmed to operate one or more pinch clamps to occlude or open the closable fluid openings.
19 . A system, comprising:
the peritoneal dialysis cassette of claim 1 ;
a peritoneal dialysis cycler; the peritoneal dialysis cycler comprising at least one ultrasonic sensor;
wherein the at least one ultrasonic sensor is positioned complementary to the air bubble sensing region when the peritoneal dialysis cassette is engaged to the cycler.
20 . The system of claim 19 , wherein the at least one ultrasonic sensor is at least three ultrasonic sensors in series.