IP Library Granted Patent US 9,199,021
Granted Patent B2
US 9,199,021 · App. 14/378,837 · Granted Dec 1, 2015

Blood pump

Inventor: Clive Buckberry (Warwick, GB)
Assignee: Quanta Fluid Solutions Ltd.
A61M1/1087A61M1/106A61M1/1046
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Quick Facts
Patent No.
US 9,199,021
App. No.
14/378,837
Granted
Dec 1, 2015
Kind
B2
Abstract

A blood pump 2 comprising: a cartridge 4 having a concave recess 8 therein having a surface, and a flexible membrane 0 covering said recess, the concave recess and flexible membrane forming a pump chamber 12 having an inlet 14 and an outlet 16 wherein: said flexible membrane is movable between a first position, separated from said surface wherein in such position the pump chamber has a maximum volume, and a second position, substantially adjacent said surface such that in said second position the pump chamber has a minimum volume, a pump driver mechanism 18 arranged to interface with the cartridge, said driver operable to move the flexible membrane in a first direction into the recess to, in use, pump blood from the chamber and operable to move the flexible membrane in a second direction away from the recess to, in use, draw blood into said chamber; and wherein the pump driver controls the movement of the flexible membrane in the first direction such that the speed at which it is moving reduces as it approaches the surface of the concave recess.

Claims (20)

1. A blood pump comprising:

a cartridge having a concave recess therein having a surface, and a flexible membrane covering said recess, the concave recess and flexible membrane forming a pump chamber, said pump chamber having an inlet and an outlet wherein: said flexible membrane is movable between a first position, separated from said surface wherein in such position the pump chamber has a maximum volume, and a second position, substantially adjacent said surface such that in said second position the pump chamber has a minimum volume,

a pump driver mechanism arranged to interface with the cartridge, said driver operable to move the flexible membrane in a first direction into the recess to, in use, pump blood from the chamber and operable to move the flexible membrane in a second direction away from the recess to, in use, draw blood into said chamber; and

wherein the pump driver controls the movement of the flexible membrane in the first direction such that the speed at which it is moving reduces as it approaches the surface of the concave recess.

2. The blood pump according to claim 1 wherein:

the pump driver controls the movement of the membrane in the second direction such that the speed of the membrane is reduced as it approaches the first position.

3. The blood pump according to claim 1 wherein:

the pump driver controls the movement of the membrane in the first direction such that the speed of the membrane is gradually increased from static in the first position.

4. The blood pump according to claim 1 wherein:

the pump driver controls the movement of the membrane in the second direction such that the speed of the membrane is gradually increased from static in the second position.

5. The blood pump according to claim 1 further comprising a controller, configured to control the pump driver to control the movement of the membrane.

6. The blood pump according to claim 1 wherein the pump driver mechanism comprises drive fluid for applying fluid pressure to the membrane to move it between the first and second positions.

7. The blood pump according to claim 6 wherein the pump driver mechanism is arranged to apply a first pressure to move the membrane in the first direction and a second, lower, pressure to move the membrane in the second direction.

8. The blood pump according to claim 7 further comprising valve means controlled by the controller to vary the flow of the drive fluid to the membrane.

9. The blood pump according to claim 1 further comprising a blood inlet valve within the inlet and a blood outlet valve within the outlet, said blood inlet and outlet valves controlled by a controller, said controller configured to open and close the blood inlet and outlet valves such that when the membrane is moved in the first direction, the blood inlet valve is closed and the blood outlet valve is open, and when the membrane is moved in the second direction, the blood inlet valve is open and the blood outlet valve is closed.

10. The blood pump according to claim 9 wherein when the membrane completes its movement in the first direction, and prior to commencing its movement in the second direction, the blood inlet valve is opened before the blood outlet valve is closed.

11. The blood pump according to claim 9 wherein when the membrane completes its movement in the second direction, and prior to commencing its movement in the first direction, the blood outlet valve is opened before the blood inlet valve is closed.

12. The blood pump according to claim 9 wherein the blood outlet valve is opened prior to the membrane commencing movement in the first direction.

13. The blood pump according to claim 9 wherein the blood inlet valve is opened prior to the membrane commencing movement in the first direction.

14. The blood pump according to claim 1 wherein the blood pump is disposable.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Jan 23, 2020
From: HERCULES CAPITAL, INC.
To: QUANTA DIALYSIS TECHNOLOGIES LIMITED
Reel/Frame 051596/0970 →
CHANGE OF NAME Recorded Aug 21, 2018
From: QUANTA FLUID SOLUTIONS LTD
To: QUANTA DIALYSIS TECHNOLOGIES LIMITED
Reel/Frame 046649/0810 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Apr 8, 2016
From: QUANTA FLUID SOLUTIONS LIMITED
To: HERCULES CAPITAL, INC.
Reel/Frame 038389/0395 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 29, 2014
From: BUCKBERRY, CLIVE
To: QUANTA FLUID SOLUTIONS LTD.
Reel/Frame 034057/0673 →
Continuity (1)
Related Publication 20150112119A1 · Apr 23, 2015