IP Library › Granted Patent US 9,707,382
Granted Patent B2
US 9,707,382 · App. 14/227,982 · Granted Jul 18, 2017

Device and method for regulating pressure in a heart chamber

Inventors: Yaacov Nitzan (Herzlia, IL); Boaz Harari (Tel-Aviv, IL); Ascher Shmulewitz (Tel-Aviv, IL); Tovy Sivan (Kfar-Saba, IL)
Assignee: V-Wave Ltd.
A61M27/002A61F2/2412A61F2/2418A61M27/006A61F2002/249A61F2220/0058A61F2220/0066A61F2230/0013A61F2230/0078
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Quick Facts
Patent No.
US 9,707,382
App. No.
14/227,982
Granted
Jul 18, 2017
Kind
B2
Abstract

A device for regulating blood pressure in a heart chamber is provided. The device includes a shunt positionable within a septum of the heart. The shunt is designed for enabling blood flow between a left heart chamber and a right heart chamber, wherein the flow rate capacity of the device is mostly a function of pressure in the left heart chamber.

Claims (25)

1. A shunt for regulating blood pressure between a patient's left atrium and right atrium, the shunt comprising:

a diabolo-shaped stent having a length greater than a thickness of the patient's atrial septum and comprising at least five sinusoidal rings interconnected by struts, the sinusoidal rings and struts defining a neck and first and second conical sections, the neck being adaptable to engage the atrial septum, the first and second conical sections being adaptable to protrude respectively into the left and right atria without contacting the atrial septum other than in a vicinity of the neck, the stent being configured to transition between a collapsed state suitable for percutaneous delivery and an expanded state when deployed across the patient's atrial septum.

2. The shunt of claim 1 , wherein a flow rate capacity of the shunt increases with an increase in pressure of the left atrium.

3. The shunt of claim 1 , wherein the stent is coated with expanded-polytetrafluoroethylene (ePTFE).

4. The shunt of claim 1 , wherein the neck is between 4 and 6 mm in diameter.

5. The shunt of claim 1 , wherein the neck has a length and a diameter, the neck length being greater than the thickness of the atrial septum.

6. The shunt of claim 1 , wherein the length of the stent is greater than twice the thickness of the atrial septum.

7. The shunt of claim 1 , wherein the stent is between 10 and 18 mm in length in the collapsed state.

8. The shunt of claim 1 , wherein one of the at least five sinusoidal rings is located at the neck and has a diameter smaller than at least one other sinusoidal rings of the at least five sinusoidal rings.

9. A method of regulating blood pressure between a patient's left atrium and right atrium, the method comprising:

deploying a device in a hole in the patient's atrial septum, the device comprising a diabolo-shaped stent having a length greater than a thickness of the patient's atrial septum and comprising a plurality of rings interconnected by struts, the rings and struts defining a neck and first and second conical sections, the neck being adaptable to engage the atrial septum, the first and second conical sections being adaptable to protrude respectively into the left and right atria without contacting the atrial septum other than in a vicinity of the neck, the stent being configured to transition between a collapsed state suitable for percutaneous delivery and an expanded state when deployed across the patient's atrial septum.

10. The method of claim 9 , wherein the neck is between 4 and 6 mm in diameter.

11. The method of claim 9 , wherein a flow rate capacity of the shunt increases with an increase in pressure of the left atrium.

12. The method of claim 9 , wherein the stent is between 10 and 18 mm in length in the collapsed state.

13. The method of claim 9 , wherein the plurality of rings are sinusoidal and the struts extend longitudinally.

14. The method of claim 9 , wherein the stent is coated with expanded-polytetrafluoroethylene (ePTFE).

15. A shunt for regulating blood pressure between a patient's left atrium and right atrium, the shunt comprising:

a diabolo-shaped stent having a length greater than a thickness of the patient's atrial septum and comprising a plurality of rings interconnected by struts, the rings and struts defining a neck and first and second conical sections, the neck being adaptable to engage the atrial septum and being between 4 and 6 mm in diameter, the first and second conical sections being adaptable to protrude respectively into the left and right atria without contacting the atrial septum other than in a vicinity of the neck, the stent being configured to transition between a collapsed state suitable for percutaneous delivery and an expanded state when deployed across the patient's atrial septum.

16. The shunt of claim 15 , wherein a flow rate capacity of the shunt increases with an increase in pressure of the left atrium.

17. The shunt of claim 15 , wherein the plurality of rings are sinusoidal and the stent comprises at least five sinusoidal rings.

18. The shunt of claim 15 , wherein the stent is coated with expanded-polytetrafluoroethylene (ePTFE).

19. The shunt of claim 15 , wherein the neck has a length greater than the thickness of the atrial septum.

20. The shunt of claim 15 , wherein the length of the stent is greater than twice the thickness of the atrial septum.

21. The shunt of claim 15 , wherein the stent is between 10 and 18 mm in length in the collapsed state.

22. The shunt of claim 15 , wherein one of the rings is located at the neck and has a diameter smaller than at least one of the other rings.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 28, 2014
From: NITZAN, YAACOV; HARARI, BOAZ; SHMULEWITZ, ASCHER; SIVAN, TOVY
To: V-WAVE LTD.
Reel/Frame 032557/0217 →
Continuity (5)
Continuation 13108880 · May 16, 2011
Continuation PCTIL2010000354 · May 4, 2010
Provisional Application 61175073 · May 4, 2009
Provisional Application 61240667 · Sep 9, 2009
Related Publication 20140213959A1 · Jul 31, 2014