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US20170333611A1 - Control of circulatory assist systems - Google Patents

Control of circulatory assist systems
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Publication number
US20170333611A1
US20170333611A1US15/670,983US201715670983AUS2017333611A1US 20170333611 A1US20170333611 A1US 20170333611A1US 201715670983 AUS201715670983 AUS 201715670983AUS 2017333611 A1US2017333611 A1US 2017333611A1
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United States
Prior art keywords
pump
speed
blood
blood pump
flow
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
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US15/670,983
Inventor
David J. Burke
Kevin Bourque
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TC1 LLC
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TC1 LLC
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Publication date
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Priority to US15/670,983priorityCriticalpatent/US20170333611A1/en
Publication of US20170333611A1publicationCriticalpatent/US20170333611A1/en
Assigned to THORATEC CORPORATIONreassignmentTHORATEC CORPORATIONASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: BOURQUE, KEVIN, BURKE, DAVID J.
Assigned to TC1 LLCreassignmentTC1 LLCASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: THORATEC LLC
Assigned to THORATEC LLCreassignmentTHORATEC LLCCONVERSIONAssignors: THORATEC CORPORATION
Abandonedlegal-statusCriticalCurrent

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Abstract

In one general aspect, a method includes measuring blood flow through a right rotary blood pump, measuring blood flow through a left rotary blood pump, and controlling a speed of one of the rotary blood pumps using a controller that calculates the speed of one of the rotary blood pumps based on the measured blood flow through the other rotary blood pump.

Description

Claims (13)

What is claimed is:
1. A controller for a heart assist system, comprising:
a processing unit configured to
generate a pulsatility index for a right blood pump,
set a speed of the right blood pump based on the pulsatility index for the right blood pump,
generate a pulsatility index for a left blood pump, and
set a speed of the left blood pump based on the pulsatility index for the left blood pump.
2. A method of controlling a heart assist system, comprising:
calculating a pulsatility index for a right blood pump, the right blood pump supporting a right ventricle;
controlling the speed of the right blood pump based on the pulsatility index for the right blood pump;
calculating a pulsatility index for a left blood pump, the left blood pump supporting a left ventricle; and
controlling the speed of the left blood pump based on the pulsatility index for the left blood pump.
3. The method ofclaim 2, wherein the right blood pump is a rotary pump, and wherein the left blood pump is a rotary pump.
4. The method ofclaim 2, wherein the pulsatility index for the right blood pump indicates a load on the right ventricle experienced during contraction of the right ventricle, and wherein the pulsatility index for the left blood pump indicates a load on the left ventricle experienced during contraction of the left ventricle.
5. The method ofclaim 2, wherein each pulsatility index (PI) is calculated over a control interval according to the following equation: PI=(Qmax−Qmin)/Qave, where Qmaxis a maximum flow rate through the pump in the control interval, Qminis a minimum flow rate through the pump in the control interval, and Qaveis an average flow rate through the pump over the control interval.
6. The method ofclaim 2, further comprising:
measuring blood flow through the right blood pump;
measuring blood flow through the left blood pump; and
controlling a speed of one of the rotary blood pumps based on the measured blood flow through the other blood pump.
7. The method ofclaim 6, further comprising determining whether the blood flow through one of the blood pumps exceeds a flow threshold,
wherein controlling the speed of the right blood pump and controlling the speed of the left blood pump comprise, when the pulsatility index for the right blood pump is below a first target level and the pulsatility index for the left blood pump is below a second target level:
when the blood flow through the one of the blood pumps does not exceed the flow threshold, decreasing the speed of the right blood pump and decreasing the speed of the left blood pump, and
when the blood flow through the one of the blood pumps exceeds the flow threshold, maintaining the speed of the right blood pump and maintaining the speed of the left blood pump.
8. The method ofclaim 7, wherein controlling the speed of one of the rotary blood pumps based on the measured blood flow through the other blood pump comprises:
determining that a relationship between the measured blood flow through the right blood pump and the measured blood flow through the left blood pump is not satisfied; and
in response to determining that the relationship is not satisfied, adjusting the speed of the one of the blood pumps such that the relationship is achieved.
9. The method ofclaim 2, wherein controlling the speed of the right blood pump is further based on the pulsatility index for the left blood pump.
10. The method ofclaim 2, wherein controlling the speed of the left blood pump is further based on the pulsatility index for the right blood pump.
11. The method ofclaim 2, further comprising detecting a heart rate,
wherein controlling the speed of the right blood pump is further based on the heart rate, and wherein controlling the speed of the left blood pump is further based on the heart rate.
12. The method ofclaim 11, further comprising determining whether the heart rate exceeds a threshold heart rate,
wherein controlling the speed of the right blood pump and controlling the speed of the left blood pump comprise, when the pulsatility index for the right blood pump is below a first target level and the pulsatility index for the left blood pump is below a second target level:
when the heart rate does not exceed the threshold heart rate, decreasing the speed of the right blood pump and decreasing the speed of the left blood pump, and
when the heart rate exceeds the threshold heart rate, maintaining the speed of the right blood pump and maintaining the speed of the left blood pump.
13. The method ofclaim 2, further comprising operating the left blood pump to produce an artificially induced pulsatile blood flow; and
calculating the left pulsatility index such that data influenced by artificial blood flow variations of the artificially induced pulsatile blood flow are excluded from calculating the left pulsatility index.
US15/670,9832010-09-242017-08-07Control of circulatory assist systemsAbandonedUS20170333611A1 (en)

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US15/670,983US20170333611A1 (en)2010-09-242017-08-07Control of circulatory assist systems

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US38601810P2010-09-242010-09-24
US201161472241P2011-04-062011-04-06
US13/242,248US9757502B2 (en)2010-09-242011-09-23Control of circulatory assist systems
US15/670,983US20170333611A1 (en)2010-09-242017-08-07Control of circulatory assist systems

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US13/242,248DivisionUS9757502B2 (en)2010-09-242011-09-23Control of circulatory assist systems

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US20170333611A1true US20170333611A1 (en)2017-11-23

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US13/242,248Active2033-05-16US9757502B2 (en)2010-09-242011-09-23Control of circulatory assist systems
US15/670,983AbandonedUS20170333611A1 (en)2010-09-242017-08-07Control of circulatory assist systems

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US13/242,248Active2033-05-16US9757502B2 (en)2010-09-242011-09-23Control of circulatory assist systems

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US (2)US9757502B2 (en)
EP (1)EP2618862B1 (en)
JP (1)JP5852122B2 (en)
AU (1)AU2011305243A1 (en)
CA (1)CA2811604A1 (en)
WO (1)WO2012040544A1 (en)

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US9757502B2 (en)2017-09-12
US20120078031A1 (en)2012-03-29
AU2011305243A1 (en)2013-04-04
WO2012040544A1 (en)2012-03-29
JP2013540005A (en)2013-10-31
EP2618862B1 (en)2016-07-27
CA2811604A1 (en)2012-03-29
EP2618862A1 (en)2013-07-31
JP5852122B2 (en)2016-02-03

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