IP Library Granted Patent US 10,667,820
Granted Patent B2
US 10,667,820 · App. 15/637,072 · Granted Jun 2, 2020

Method and device for the intermittent occlusion of the coronary sinus

Inventors: Werner Mohl (Altenmarkt-Thennenberg, AT); Loay Alzubaidi (Saar, BH)
Assignee: Miracor Medical SA
A61B17/1204A61B17/12022A61B17/12122A61B17/12136A61M1/1072A61B5/021A61B2017/00022A61M1/101A61M1/106A61M1/1015A61M1/1017A61M1/1031A61M1/1086A61M1/125A61M2205/3344A61M2205/3355
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Quick Facts
Patent No.
US 10,667,820
App. No.
15/637,072
Granted
Jun 2, 2020
Kind
B2
Abstract

In a method for intermittently occluding the coronary sinus, in which the coronary sinus is occluded using an occlusion device, the fluid pressure in the occluded coronary sinus is continuously measured and stored, the fluid pressure curve is determined as a function of time, and the occlusion of the coronary sinus is triggered and/or released as a function of at least one characteristic value derived from the measured pressure values. The pressure increase and/or pressure decrease per time unit each occurring at a heart beat are used as characteristic values.

Claims (38)

1. A system for intermittently occluding a coronary sinus in a heart, comprising:

a catheter including:

a distal end configured to be inserted in the coronary sinus of the heart, and

an occlusion device positioned along the distal end;

a pressure measuring device connected to the catheter, the pressure measuring device configured to measure a fluid pressure in the coronary sinus; and

control circuitry configured to collapse the occlusion device to cause a release of the occlusion of the coronary sinus, wherein the control circuitry is configured to determine a pressure increase and/or pressure decrease per time unit while the coronary sinus is occluded by the occlusion device, and configured to cooperate with the occlusion device to release the occlusion of the coronary sinus based at least in part on the pressure increase and/or pressure decrease per time unit.

2. The system of claim 1 , wherein the pressure measuring device is configured to measure the fluid pressure in the coronary sinus at the distal end of the catheter when the occlusion device substantially occludes the coronary sinus, and the control circuitry is configured to determine a pressure increase and/or pressure decrease per time unit while the coronary sinus is occluded by the occlusion device.

3. The system of claim 1 , wherein the pressure measuring device is in communication with a memory that stores data indicative of a fluid pressure curve as a function of time based upon a measured fluid pressure in the occluded coronary sinus when the occlusion device occludes the coronary sinus.

4. The system of claim 1 , wherein the catheter is a multi-lumen catheter.

5. The system of claim 1 , wherein the multi-lumen catheter comprises a balloon inflation lumen that is connectable to a pump.

6. The system of claim 5 , wherein the control circuitry is configured to deliver control signals to the pump so as to start and stop the pump when connected to the balloon inflation lumen.

7. The system of claim 1 , wherein the control circuitry is configured to determine the pressure increase per time unit occurring at consecutive heart beats and to cooperate with the occlusion device to release the occlusion of the coronary sinus based at least in part on the pressure increase per time unit occurring at consecutive heart beats.

8. The system of claim 1 , wherein the control circuitry is configured to determine a first derivative of the fluid pressure curve based upon the data stored in the memory that is indicative of the fluid pressure curve as a function of time.

9. The system of claim 1 , wherein the control circuitry is configured to trigger a start of a new occlusion of the coronary sinus using the occlusion device along the distal end of the multi-lumen catheter, wherein the control circuitry is configured to determine the pressure decrease per time unit and to cooperate with the occlusion device in a manner that the occlusion of the coronary sinus is triggered after the pressure decrease per time unit has reached a threshold.

10. The system of claim 9 , wherein the control circuitry is configured to determine a first derivative of the fluid pressure curve with respect to time as well as a local minimum of the first derivative occurring within a heart beat, and the control circuitry is configured to cooperate with the occlusion device in a manner that the occlusion of the coronary sinus is triggered after the local minima have reached a minimum over consecutive heart beats.

11. The system of claim 1 , wherein the pressure measuring device measures systolic pressure peaks occurring at consecutive heart beats while the coronary sinus is occluded.

12. The system of claim 11 , wherein the pressure measuring device measures diastolic pressure valleys in the coronary sinus occurring between the systolic pressure peaks.

13. A system for intermittently occluding a coronary sinus in a heart, comprising:

a catheter including:

a distal end configured to be inserted in the coronary sinus of the heart, and

an occlusion device positioned along the distal end;

a pressure measuring device connected to the catheter, the pressure measuring device configured to measure a fluid pressure in the coronary sinus;

control circuitry configured to collapse the occlusion device to cause a release of the occlusion of the coronary sinus, wherein the control circuitry is configured to determine a pressure increase and/or pressure decrease per time unit, and configured to cooperate with the occlusion device to release the occlusion of the coronary sinus based at least in part on the pressure increase and/or pressure decrease per time unit;

wherein the control circuitry is configured to determine a first derivative of the fluid pressure curve based upon the data stored in the memory that is indicative of the fluid pressure curve as a function of time; and

wherein the control circuitry is configured to determine the first derivative of the fluid pressure curve with respect to time as well as a local maximum of the first derivative occurring within a heart beat, and the control circuitry is configured to cooperate with the occlusion device in a manner that the occlusion of the coronary sinus is released after the local maxima have reached a maximum over consecutive heart beats.

14. A system for intermittently occluding a coronary sinus in a heart, comprising:

a catheter including:

a distal end configured to be inserted in the coronary sinus of the heart via an atrium,

an occlusion device positioned along the distal end, and

a balloon inflation lumen connectable to a pump;

a pressure measuring device connected to the catheter, the pressure measuring device configured to measure a fluid pressure in the coronary sinus; and

control circuitry configured to deliver control signals to the pump so as to start and stop the pump to collapse the occlusion device and cause a release of the occlusion of the coronary sinus, wherein the control circuitry is configured to determine a pressure increase and/or pressure decrease per time unit while the coronary sinus is occluded by the occlusion device, and configured to cooperate with the occlusion device to release the occlusion of the coronary sinus based at least in part on the pressure increase and/or pressure decrease per time unit.

15. The system of claim 14 , wherein the control circuitry is configured to determine the pressure increase per time unit occurring at consecutive heart beats and to cooperate with the occlusion device to release the occlusion of the coronary sinus based at least in part on the pressure increase per time unit occurring at consecutive heart beats.

16. The system of claim 14 , wherein the control circuitry is configured to determine a first derivative of the fluid pressure curve based upon the data stored in the memory that is indicative of the fluid pressure curve as a function of time.

17. The system of claim 16 , wherein the control circuitry is configured to determine the first derivative of the fluid pressure curve with respect to time as well as a local maximum of the first derivative occurring within a heart beat, and the control circuitry is configured to cooperate with the occlusion device in a manner that the occlusion of the coronary sinus is released after the local maxima have reached a maximum over consecutive heart beats.

18. The system of claim 14 , wherein the control circuitry is configured to trigger a start of a new occlusion of the coronary sinus using the occlusion device along the distal end of the multi-lumen catheter, wherein the control circuitry is configured to determine the pressure decrease per time unit and to cooperate with the occlusion device in a manner that the occlusion of the coronary sinus is triggered after the pressure decrease per time unit has reached a threshold.

19. The system of claim 18 , wherein the control circuitry is configured to determine a first derivative of the fluid pressure curve with respect to time as well as a local minimum of the first derivative occurring within a heart beat, and the control circuitry is configured to cooperate with the occlusion device in a manner that the occlusion of the coronary sinus is triggered after the local minima have reached a minimum over consecutive heart beats.

20. The system of claim 14 , wherein the pressure measuring device measures systolic pressure peaks occurring at consecutive heart beats while the coronary sinus is occluded.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2018
From: ALZUBAIDI, LOAY
To: MOHL, WERNER
Reel/Frame 047175/0719 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2018
From: MOHL, WERNER
To: MIRACOR MEDICAL SYSTEMS GMBH
Reel/Frame 047175/0725 →
CONFIRMATION OF PATENT OWNERSHIP TRANSFER Recorded Mar 15, 2018
From: MIRACOR MEDICAL SYSTEMS GMBH
To: MIRACOR MEDICAL SA
Reel/Frame 045605/0667 →
Priority Claims (1)
AT A 9932004 · Jun 8, 2004 · national
Continuity (5)
Continuation 14444006 · Jul 28, 2014
Continuation 13593984 · Aug 24, 2012
Continuation 12855473 · Aug 12, 2010
Continuation 11597834
Related Publication 20170296194A1 · Oct 19, 2017