IP Library Granted Patent US 9,801,682
Granted Patent B2
US 9,801,682 · App. 14/176,564 · Granted Oct 31, 2017

Methods and devices for diastolic assist

Inventors: Michael D. Laufer (Menlo Park, CA); Freddy Abnousi (San Carlos, CA)
A61B18/1492A61B17/3209A61B18/20A61M1/107A61M1/1062A61M1/1068A61M1/122A61B17/320016A61B2017/00247A61B2017/308A61B2017/320064A61B2018/00273A61B2018/00357A61B2018/00363A61B2018/00601
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Quick Facts
Patent No.
US 9,801,682
App. No.
14/176,564
Granted
Oct 31, 2017
Kind
B2
Abstract

The devices and method described herein allow for therapeutic damage to increase volume in these hyperdynamic hearts to allow improved physiology and ventricular filling and to reduce diastolic filling pressure by making the ventricle less stiff. For example, improving a diastolic heart function in a heart by creating at least one incision in cardiac muscle forming an interior heart wall of the interior chamber where the at least one incision extends into one or more layers of the interior heart wall without puncturing through the interior heart wall and the incision is sufficient to reduce a stiffness of the interior chamber to increase volume of the chamber and reduce diastolic filing pressure.

Claims (38)

1. A method of improving a diastolic heart function in a heart of a patient having diastolic heart dysfunction, the method comprising:

positioning a medical device within a body of the patient;

advancing the medical device into an interior chamber of the heart, where the interior chamber comprises at least one heart wall; and

creating at least one longitudinal incision in the heart wall of the interior chamber, where the incision extends only partially through the heart wall and is sufficient to reduce a stiffness of the interior chamber to increase volume of the chamber and reduce diastolic filling pressure.

2. The method of claim 1 , where creating at least one longitudinal incision comprises creating a plurality of longitudinal incisions.

3. The method of claim 1 , where creating at least one incision comprises creating the plurality of longitudinal incisions without reducing the integrity of the heart wall.

4. The method of claim 1 , where advancing the medical device comprise advancing the medical device into the interior chamber of the heart via a transapical approach.

5. The method of claim 1 , where the medical device comprises a device selected from the group consisting of a blade, a mechanical cutting device, an electrosurgical device, and a laser device.

6. The method of claim 1 , where the medical device comprises a medical device including a retractable knife blade such that the knife blade can be retracted during positioning of the medical device.

7. The method of claim 1 , further comprising creating at least one longitudinal incision on an exterior surface of the heart.

8. The method of claim 1 , further comprising securing a portion of the medical device to the heart wall prior to or during creating the longitudinal incision.

9. The method of claim 1 , further comprising delivering a bioactive agent to at least one longitudinal incision to modify the healing process of the heart wall.

10. The method of claim 9 , where delivering the bioactive agent comprises positioning a drug eluting device adjacent to or near to the longitudinal incision.

11. A method of increasing blood flow in a diseased heart, the method comprising:

positioning a medical device within a body of the patient;

advancing the medical device into an interior chamber of the heart;

locating a target area of heart tissue; and

creating at least one longitudinal incision in cardiac muscle of the heart tissue to decrease the stiffness of the interior chamber to permit the interior chamber to increase in volume during diastole where the incision only partially extends through a depth of the heart tissue.

12. The method of claim 11 , where creating at least one longitudinal incision comprises creating a plurality of longitudinal incisions.

13. The method of claim 11 , where creating at least one longitudinal incision comprises creating a plurality of incision without reducing the integrity of the cardiac muscle.

14. The method of claim 11 , where advancing the medical device comprise advancing the medical device into the interior chamber of the heart via a transapical approach.

15. The method of claim 11 , where the medical device comprises a device selected from the group consisting of a blade, a mechanical cutting device, an electrosurgical device, and a laser device.

16. The method of claim 11 , where the medical device comprises a medical device including a retractable knife blade such that the knife blade can be retracted during positioning of the medical device.

17. The method of claim 11 , further comprising creating at least one incision on an exterior surface of the heart.

18. The method of claim 11 , further comprising securing a portion of the medical device to the cardiac muscle prior to or during creating the incision.

19. The method of claim 11 , further comprising delivering a bioactive agent to at least one incision to modify the healing process of the cardiac muscle.

20. The method of claim 9 , where delivering the bioactive agent comprises positioning a drug eluting device adjacent to or near to the incision.

21. A method of improving a diastolic heart function in a heart of a patient having diastolic heart dysfunction, the method comprising:

positioning a medical device within a body of the patient;

advancing the medical device into an interior chamber of the ea where the interior chamber comprises at least one heart wall;

creating at least one incision in the heart wall of the interior chamber, where the incision extends only partially through the heart wall and is sufficient to reduce a stiffness of the interior chamber to increase volume of the chamber and reduce diastolic filling pressure; and

inducing tachycardia of the heart.

22. A method of increasing blood flow in a diseased heart, the method comprising:

positioning a medical device within a body of the patient;

advancing the medical device into an interior chamber of the heart;

locating a target area of heart tissue;

creating at least one incision in cardiac muscle of the heart tissue to decrease the stiffness of the interior chamber to permit the interior chamber to increase in volume during diastole where the incision only partially extends through a depth of the heart tissue; and

inducing tachycardia of the heart.

Continuity (5)
Division 13277158 · Oct 19, 2011
Provisional Application 61394759 · Oct 19, 2010
Provisional Application 61478495 · Apr 23, 2011
Provisional Application 61504641 · Jul 5, 2011
Related Publication 20140221988A1 · Aug 7, 2014