IP Library › Granted Patent US 12,471,948
Granted Patent B2
US 12,471,948 · App. 17/980,389 · Granted Nov 18, 2025

Method and septostomy device for creating an interatrial aperture

Inventors: Gil M. Vardi (Town and country, MO); Chris Minar (Excelsior, MN)
A61B17/3205A61B17/320016A61B17/32053A61B17/3478A61B2017/00247A61B2017/22042A61B2017/22047A61B2017/22069A61B2017/306A61B2017/320064A61B2017/3458
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Quick Facts
Patent No.
US 12,471,948
App. No.
17/980,389
Granted
Nov 18, 2025
Kind
B2
Abstract

A septostomy device 10 with a cutting structure or means 140 and tissue capture mechanisms 240, 250 is disclosed, along with a medical procedure for using the device. The system 10 is configured in such a way as to create a permanent interatrial aperture in the heart, including creating a permanent interatrial hole and/or removing tissue.

Claims (45)

1 . A septostomy assembly comprising:

a catheter assembly, the catheter assembly comprising:

a catheter shaft, the catheter shaft having a catheter lumen,

a shaped blade that is oriented at a substantially right angle to the longitudinal axis of the catheter,

a tissue retention assembly located at least partially in the catheter lumen comprising a shaft, a proximal tissue retention device and a distal tissue retention device, the tissue retention devices designed to apply a force between them;

an actuator, the actuator designed to reduce a gap between the proximal and distal tissue retention devices to grasp a tissue;

wherein the distal tissue retention device tents the tissue into a catheter lumen to create a shunt in the tissue that is larger in diameter than the tissue retention device.

2 . The septostomy system of claim 1 , wherein the proximal tissue retention device and the distal tissue retention device apply 60% of the force at their perimeter.

3 . The septostomy system of claim 1 , wherein the proximal tissue retention device and the distal tissue retention device apply 90% of the force at their perimeter.

4 . The septostomy system of claim 1 , wherein the proximal tissue retention device is designed to exit the catheter lumen, and further has a first cross sectional area that fits within the catheter lumen, and a second, larger cross sectional area when it exits the catheter lumen.

5 . The septostomy system of claim 4 , wherein the proximal tissue retention device grasps the tissue while the proximal tissue retention device is in the second, larger cross sectional area configuration.

6 . The septostomy system of claim 5 wherein the proximal tissue retention device is designed to reduce its cross sectional area while still grasping the tissue.

7 . The septostomy system of claim 6 , wherein the proximal tissue retention device is designed to retain the same cross sectional area of tissue while reducing its cross sectional area.

8 . The septostomy system of claim 7 , further comprising a raised edge part on the perimeter of the proximal capture mechanism.

9 . The septostomy system of claim 7 , further comprising a tissue retaining mechanism at the perimeter of the tissue capture mechanism.

10 . The septostomy system of claim 1 , further comprising a locking mechanism designed to hold the force on the tissue between the proximal and distal tissue retention devices.

11 . The septostomy system of claim 1 , further comprising a spring loaded capture mechanism for maintaining the force within a set range regardless of the thickness of the tissue captured.

12 . The septostomy system of claim 1 , wherein the tissue retention assembly comprises a proximal tissue capture shaft in the catheter lumen, the proximal tissue capture shaft operatively attached to the proximal tissue capture device.

13 . The septostomy system of claim 12 , wherein the tissue retention assembly further comprises a distal tissue capture shaft inside the proximal tissue capture shaft, the distal tissue capture shaft operatively attached to the distal tissue capture device.

14 . The septostomy system of claim 1 , wherein the outer diameter of the proximal tissue retention device is close fitting to the inner diameter of the shaped blade.

15 . The septostomy system of claim 1 , where in the distal tissue retention device further comprises a tissue trap.

16 . The septostomy system of claim 1 further comprising a marker to identify the catheter location on a visualization system.

17 . The septostomy system of claim 1 further comprising a means for rotating the shaped blade.

18 . The septostomy system of claim 1 , further comprising a tissue debulking mechanism.

19 . A septostomy assembly comprising:

a catheter assembly, the catheter assembly comprising:

a catheter shaft, the catheter shaft having a catheter central lumen,

a shaped blade, the shaped blade comprising:

a blade cutting edge that is oriented at a substantially right angle to the longitudinal axis of the catheter,

a tissue retention assembly located at least partially in the catheter central lumen comprising a shaft, a proximal tissue retention device and a distal tissue retention device, the tissue retention devices designed to apply a force between them;

an actuator, the actuator designed to reduce a gap between the proximal and distal tissue retention devices to grasp a tissue;

wherein the proximal tissue retention device and the distal tissue retention device are each expandable from a first cross section that fits within the catheter central lumen to a second expanded cross section that exceeds the diameter of the catheter.

20 . A method of treating a heart comprising the steps of:

inserting a catheter into the right atrium of the heart, the catheter comprising:

a catheter shaft having a catheter central lumen

a shaped cutting blade arranged around the catheter central lumen,

a proximal tissue retention device, the proximal tissue retention device having a first cross section and an expanded cross section,

a distal tissue retention device, the distal tissue retention device having a first cross section and an expanded cross section,

an actuator connected to at least one of the tissue retention devices,

while the catheter is in the right atrium, moving a portion of the device into the left atrium,

expanding the proximal tissue retention device to the expanded cross section,

expanding the distal tissue retention device to the expanded cross section,

actuating the actuator to grasp the tissue retention devices in place with a portion of the interatrial septum held between them,

cutting an aperture in the interatrial septum between the right atrium and the left atrium,

removing a cut tissue from the right atrium.

Continuity (8)
Continuation In Part 17851260 · Jun 28, 2022
Continuation 16677455 · Nov 7, 2019
Continuation In Part 15900127 · Feb 20, 2018
Continuation In Part 15812815 · Nov 14, 2017
Continuation In Part 15089547 · Apr 2, 2016
Continuation In Part 14738802 · Jun 12, 2015
Provisional Application 62012212 · Jun 13, 2014
Related Publication 20230181214A1 · Jun 15, 2023
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