IP Library Granted Patent US 11,648,386
Granted Patent B2
US 11,648,386 · App. 16/456,005 · Granted May 16, 2023

Prevention of aortic valve fusion

Inventor: Victor Poirier (Concord, MA)
Assignee: TC1 LLC
A61M60/148A61M60/178A61M60/216A61M60/411A61M60/523A61M60/531A61M2205/3334A61M2205/3344A61M2205/3351A61M2205/3355
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Quick Facts
Patent No.
US 11,648,386
App. No.
16/456,005
Granted
May 16, 2023
Kind
B2
Abstract

Materials and methods related to blood pump systems are described. These can be used in patients to, for example, monitor arterial pressure, measure blood flow, maintain left ventricular pressure within a particular range, avoid left ventricular collapse, prevent fusion of the aortic valve in a subject having a blood pump, and provide a means to wean a patient from a blood pump.

Claims (59)

1. A blood pump system, comprising:

a blood pump including an inflow conduit for receiving blood from a ventricle of a patient and an outflow conduit for returning the blood to an artery of the patient;

a controller operatively connected to the blood pump and configured to:

control the speed of the blood pump over a first period of time encompassing multiple contractions of the ventricle to provide circulatory support to the patient to maintain a positive level of systolic blood pressure within the ventricle within a first predetermined range;

subsequent to the first period of time, control the speed of the blood pump over a second period of time encompassing multiple contractions of the ventricle to provide a reduced level of circulatory support to the patient relative to the circulatory support provided to the patient over the first period of time;

subsequent to the second period of time, control the speed of the blood pump over a third period of time encompassing multiple contractions of the ventricle to provide circulatory support to the patient to maintain a positive level of systolic blood pressure within the ventricle within the first predetermined range; and

determine whether the ventricle provided circulatory support to the patient over the second period of time that exceeded a predetermined minimum level of circulatory support.

2. The blood pump system of claim 1 , wherein:

the ventricle is a left ventricle of the patient; and

the first predetermined range is between an aortic blood pressure of the patient and about 20 mm Hg below the aortic blood pressure.

3. The blood pump system of claim 1 , wherein:

the ventricle is a right ventricle of the patient; and

the first predetermined range is between 5 mm Hg and 20 mm Hg.

4. The blood pump system of claim 1 , wherein the controller is configured to:

control the speed to pump blood within a first predetermined range of flow rates to provide circulatory support to the patient over the first period of time;

control the speed to pump blood at a reduced flow rate over the second period of time relative to the flow rate over the first period of time; and

control the speed to pump blood within the first predetermined range of flow rates to provide circulatory support to the patient over the third period of time.

5. The blood pump system of claim 4 , wherein the reduced flow rate is between about 0.5 liters/minute and 1.5 liters/minute less than a flow rate during the first period of time.

6. The blood pump system of claim 1 , wherein the reduced level of circulatory support results in systolic blood pressure within the ventricle being maintained at about an arterial blood pressure within the artery.

7. The blood pump system of claim 1 , wherein the first period of time is at least 5 minutes.

8. The blood pump system of claim 1 , wherein the second period of time is between 1 and 5 minutes.

9. The blood pump system of claim 1 , wherein:

the ventricle is a left ventricle of the patient;

the artery is an aorta of the patient; and

the controller is configured to control the speed of the blood pump to revert from providing the reduced level of circulatory support to the patient to providing circulatory support to the patient to maintain a positive level of systolic blood pressure within the ventricle within the first predetermined range in response to detecting at least one of:

a decrease in aortic blood pressure of at least a first predetermined amount during the second period of time, and

an increase of an end diastolic blood pressure within the left ventricle of at least a second predetermined amount during the second period of time.

10. The blood pump system of claim 1 , wherein:

the ventricle is a right ventricle of the patient;

the artery is a pulmonary artery of the patient; and

the controller is configured to control the speed of the blood pump to revert from providing the reduced level of circulatory support to the patient to providing circulatory support to the patient to maintain a positive level of systolic blood pressure within the ventricle within the first predetermined range in response to detecting at least one of:

a decrease in pulmonary artery blood pressure of at least a first predetermined amount during the second period of time, and

an increase of an end diastolic blood pressure within the right ventricle of at least a second predetermined amount during the second period of time.

11. The blood pump system of claim 1 , wherein the controller is configured to determine whether the ventricle provided circulatory support to the patient over the second period of time that exceeded the predetermined minimum level of circulatory support by determining whether a decrease in blood pressure in the artery of at least a first predetermined amount occurs during the second period of time.

12. The blood pump system of claim 11 , wherein the controller is configured to determine whether the ventricle provided circulatory support to the patient over the second period of time that exceeded the predetermined minimum level of circulatory support by determining whether an increase of an end diastolic blood pressure within the ventricle of at least a second predetermined amount occurs during the second period of time.

13. The blood pump system of claim 1 , wherein the controller is configured to:

in response to determining that the ventricle provided circulatory support to the patient over the second period of time that exceeded the predetermined minimum level of circulatory support,

subsequent to the third period of time, control the speed of the blood pump over a fourth period of time encompassing multiple contractions of the ventricle to provide a reduced level of circulatory support to the patient relative to the circulatory support provided to the patient over the third period of time, the fourth period of time being greater than the second period of time;

subsequent to the fourth period of time, control the speed of the blood pump over a fifth period of time encompassing multiple contractions of the ventricle to provide circulatory support to the patient to maintain a positive level of systolic blood pressure within the ventricle within the first predetermined range; and

determine whether the ventricle provided circulatory support to the patient over the fourth period of time that exceeded the predetermined minimum level of circulatory support.

14. The blood pump system of claim 13 , wherein the controller is configured to:

in response to determining that the ventricle provided circulatory support to the patient over the fourth period of time that exceeded the predetermined minimum level of circulatory support,

subsequent to the fifth period of time, control the speed of the blood pump over a sixth period of time encompassing multiple contractions of the ventricle to provide a reduced level of circulatory support to the patient relative to the circulatory support provided to the patient over the fifth period of time, the sixth period of time being greater than the fourth period of time;

subsequent to the sixth period of time, control the speed of the blood pump over a seventh period of time encompassing multiple contractions of the ventricle to provide circulatory support to the patient to maintain a positive level of systolic blood pressure within the ventricle within the first predetermined range; and

determine whether the ventricle provided circulatory support to the patient over the sixth period of time that exceeded the predetermined minimum level of circulatory support.

15. A blood pump system, comprising:

a blood pump including an inflow conduit for receiving blood from a ventricle of a patient and an outflow conduit for returning blood to an artery of the patient;

a sensor configured to generate an inflow conduit pressure signal indicative of a pressure of blood within the inflow conduit; and

a controller operatively connected to the blood pump and the sensor, the controller being configured to control a speed of the blood pump based on the inflow conduit pressure signal to:

maintain the pressure of blood within the inflow conduit equal to or greater than a lower threshold for avoiding ventricular collapse, and

maintain the pressure of blood within the inflow conduit equal to or less than an upper threshold to maintain an end diastolic blood pressure within an acceptable range.

16. The blood pump system of claim 15 , wherein:

the ventricle is a left ventricle;

the lower threshold is within a range from 10 mm Hg to 40 mm Hg; and

the upper threshold is within a range from 65 mm Hg to about a blood pressure within an aorta of the patient.

17. The blood pump system of claim 15 , wherein:

the ventricle is a right ventricle;

the lower threshold within a range from 5 mm Hg to 20 mm Hg; and

the upper threshold is within a range from 20 mm Hg to about 60 mm Hg.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2019
From: POIRIER, VICTOR
To: THORATEC CORPORATION
Reel/Frame 049621/0391 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2019
From: THORATEC LLC
To: TC1 LLC
Reel/Frame 049629/0190 →
CONVERSION / CHANGE OF NAME Recorded Jun 28, 2019
From: THORATEC CORPORATION
To: THORATEC LLC
Reel/Frame 051323/0444 →
Continuity (5)
Continuation 16034129 · Jul 12, 2018
Continuation 15601781 · May 22, 2017
Division 14022312 · Sep 10, 2013
Continuation 12394185 · Feb 27, 2009
Related Publication 20190314563A1 · Oct 17, 2019
Cited By (16)
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