IP Library Granted Patent US 9,452,250
Granted Patent B2
US 9,452,250 · App. 13/380,165 · Granted Sep 27, 2016

Device for pumping blood in an extracorporeal circuit

Inventors: Ottmar Penka (München, DE); Johann Schreyer (München, DE); Erwin Knott (Poing, DE)
Assignee: Sorin Group Deutschland GmbH
A61M1/101A61M1/1029A61M1/1086A61M1/122A61M1/3639A61M1/3663A61M2205/3331A61M2205/3351F04B2205/02
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Quick Facts
Patent No.
US 9,452,250
App. No.
13/380,165
Granted
Sep 27, 2016
Kind
B2
Abstract

A device for pumping blood in an extracorporeal circuit includes a centrifugal pump that suctions the blood to be pumped via a venous hose line connected to a suction side of the pump and releases it via an arterial hose line connected to a release side of the pump. The device includes a flow sensor that detects a released quantity on the release side of the pump and emits a measurement signal corresponding to the released quantity, a pressure sensor that detects the pressure on the release side of the pump and emits a measurement signal corresponding to the pressure, and an evaluation unit to which the measurement signals of the sensors are fed and which determines a value corresponding to the pressure on the suction side of the pump, taking into consideration the two measurements signals and the rotational speed of the centrifugal pump.

Claims (33)

1. A device for pumping blood in an extracorporeal circulation system, the device comprising:

a centrifugal pump having a suction side and a discharge side, the pump configured to receive blood from a venous hose line connected to the suction side and to discharge blood via an arterial hose line connected to the discharge side;

a flow sensor configured to detect a discharged quantity on the discharge side of the pump and output a flow measurement signal corresponding to the discharged quantity;

a discharge side pressure sensor configured to detect discharge side pressure of the pump and output a discharge side pressure measurement signal corresponding to the discharge side pressure;

a rotational speed sensor configured to detect a rotational speed of the centrifugal pump and output a rotational speed signal corresponding to the rotational speed of the centrifugal pump; and

an evaluation unit to which the flow measurement signal of the flow sensor, the discharge side pressure measurement signal, and the rotational speed signal of the rotational speed sensor are supplied, the evaluation unit configured to calculate a suction side pressure value corresponding to a suction side pressure of the pump based on the flow measurement signal from the flow sensor, the discharge side pressure measurement signal from the pressure sensor on the discharge side of the pump and the rotational speed signal from the rotational speed sensor, wherein the evaluation unit generates a control signal for controlling the rotational speed of the centrifugal pump, based on the suction side pressure value.

2. A device according to claim 1 , wherein the evaluation unit accesses values of a set of characteristics of the centrifugal pump when determining the suction side pressure value corresponding to the suction side pressure, said set of characteristics being determined in advance for said centrifugal pump.

3. A device according to claim 2 , wherein the values of the set of characteristics of the centrifugal pump are stored in a memory in the evaluation unit.

4. A device according to claim 1 , further comprising a display means, the evaluation unit being connected to the display means for displaying at least the suction side pressure value of the suction side pressure and/or for alerting an operator.

5. A device according to claim 1 , wherein the evaluation unit functions as a control device for the centrifugal pump.

6. A device according to claim 5 , wherein the evaluation unit reduces the rotational speed of the pump when a predetermined value for the suction side pressure is reached.

7. A device according to claim 5 , wherein the evaluation unit reduces the rotational speed of the pump when the evaluation unit calculates the suction side pressure to be indicative of an excessive vacuum.

8. A device according to claim 1 , wherein the evaluation unit is integrated into a control device for the centrifugal pump such that the control signal for controlling the rotational speed of the centrifugal pump can be supplied to the centrifugal pump.

9. A device for pumping blood in an extracorporeal circulation system, the device comprising:

a centrifugal pump having a suction side and a discharge side, the pump configured to receive blood from a venous hose line connected to the suction side and to discharge blood via an arterial hose line connected to the discharge side;

a flow sensor configured to detect a discharged quantity on the discharge side of the pump and output a flow measurement signal corresponding to the discharged quantity;

a discharge side pressure sensor configured to detect discharge side pressure of the pump and output a discharge side pressure measurement signal corresponding to the discharge side pressure;

a rotational speed sensor configured to detect a rotational speed of the centrifugal pump and output a rotational speed signal corresponding to the rotational speed of the centrifugal pump; and

an evaluation unit to which the flow measurement signal of the flow sensor, the discharge side pressure measurement signal, and the rotational speed signal of the rotational speed sensor are supplied, the evaluation unit configured to calculate a suction side pressure value corresponding to a suction side pressure of the pump based on the flow measurement signal from the flow sensor, the discharge side pressure measurement signal from the pressure sensor on the discharge side of the pump, and the rotational speed signal from the rotational speed sensor,

wherein the evaluation unit functions as a control device for the centrifugal pump and accesses values of a set of characteristics of the centrifugal pump when determining the suction side pressure value corresponding to the suction side pressure on the suction side of the pump, said set of characteristics being determined in advance for said centrifugal pump, and the evaluation unit reduces the rotational speed of the centrifugal pump upon reaching a predetermined value for the suction side pressure.

10. A device according to claim 9 , wherein the values of the set of characteristics of the centrifugal pump are stored in a memory in the evaluation unit.

11. A device according to claim 9 , further comprising a display means, the evaluation unit being connected to the display means for displaying at least the suction side pressure value of the suction side pressure and/or for alerting an operator.

12. A device according to claim 9 , wherein the evaluation unit is integrated into a control device for the centrifugal pump such that a control signal determining the rotational speed of the centrifugal pump can be supplied to the centrifugal pump.

13. A device for pumping blood in an extracorporeal circulation system, the device comprising:

a centrifugal pump having a suction side and a discharge side, the pump configured to receive blood from a venous hose line connected to the suction side and to discharge blood via an arterial hose line connected to the discharge side;

a flow sensor configured to detect a discharged quantity on the discharge side of the pump and output a flow measurement signal corresponding to the discharged quantity;

a discharge side pressure sensor configured to detect discharge side pressure of the pump and output a discharge side pressure measurement signal corresponding to the discharge side pressure;

a rotational speed sensor configured to detect a rotational speed of the centrifugal pump and output a rotational speed signal corresponding to the rotational speed of the centrifugal pump;

an evaluation unit to which the flow measurement signal of the flow sensor, the discharge side pressure measurement signal, and the rotational speed signal of the rotational speed sensor are supplied, the evaluation unit configured to calculate a suction side pressure value corresponding to a suction side pressure of the pump based on the flow measurement signal from the flow sensor, the discharge side pressure measurement signal from the pressure sensor on the discharge side of the pump, and the rotational speed signal from the rotational speed sensor, wherein the evaluation unit generates a control signal for controlling the rotational speed of the centrifugal pump, based on the suction side pressure value, and supplies the control signal to the evaluation unit; and

a display means, the evaluation unit being connected to the display means for displaying at least the suction side pressure value of the suction side pressure and/or for alerting an operator.

14. A device according to claim 13 , wherein the evaluation unit accesses values of a set of characteristics of the centrifugal pump when determining the suction side pressure value corresponding to the suction side pressure, said set of characteristics being determined in advance for said centrifugal pump.

15. A device according to claim 14 , wherein the values of the set of characteristics of the centrifugal pump are stored in a memory in the evaluation unit.

16. A device according to claim 13 , wherein the evaluation unit is integrated into a control device for the centrifugal pump such that the control signal determining the rotational speed of the centrifugal pump can be supplied to the centrifugal pump.

Assignments (2)
CHANGE OF NAME Recorded Nov 6, 2020
From: SORIN GROUP DEUTSCHLAND GMBH
To: LIVANOVA DEUTSCHLAND GMBH
Reel/Frame 054349/0132 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 29, 2012
From: PENKA, OTTMAR; SCHREYER, JOHANN; KNOTT, ERWIN
To: SORIN GROUP DEUTSCHLAND GMBH
Reel/Frame 027784/0689 →
Priority Claims (1)
DE 10 2009 027 195 · Jun 25, 2009 · national
Continuity (1)
Related Publication 20120150089A1 · Jun 14, 2012