Apparatus and methods to create and maintain an intra-atrial pressure relief opening
The present disclosure relates to a method and a device for treating heart failure by normalizing elevated blood pressure in the left and right atria of a heart of a mammal. The present disclosure includes methods for creating and maintaining an opening in the atrial septum. Tools for making an opening and enlarging the opening are also disclosed. Use of the techniques and tools described herein prolongs the patency of an intra-atrial pressure relief opening.
1. A system for normalizing elevated blood pressure in a heart chamber, the system comprising:
a penetrator with a sharpened tip for penetrating an atrial septum between a left atrium and a right atrium by creating an opening with a first small diameter;
a dilation catheter for enlarging the opening to a second larger diameter, wherein the dilation catheter has a conical distal tip and an elongated substantially tubular shaft proximal to the distal tip, and is configured to be advanced over the penetrator with the sharpened tip of the penetrator extending beyond the conical distal tip of the dilation catheter;
a treatment mechanism for transferring heat energy to the tissue in order to ablate or otherwise damage the tissue surrounding the opening with the second larger diameter in order to slow or prevent natural healing of the second larger diameter opening in the septum without implanting a stent or valve in the septum;
wherein the treatment mechanism is positioned around a tubular shaft of the dilation catheter proximal to its conical distal tip.
2. The system according to claim 1 , wherein the treatment mechanism is in a form of a thin wire electrode spiraling around the shaft of the dilation catheter proximal to its conical distal tip.
3. The system according to claim 1 , wherein the treatment mechanism is in a form of radio frequency (RF) electrodes exposed on the surface of the shaft of the dilation catheter proximal to its conical distal tip.
4. The system according to claim 3 , wherein the radio frequency (RF) electrodes have two semi-circular shapes.
5. The system according to claim 1 , wherein the treatment mechanism is in a form of multiple arrays of piezoelectric ultrasound transducers spaced around the circumference of the shaft of the dilation catheter proximal to the conical distal tip.
6. The system according to claim 1 , wherein the treatment mechanism is in a form of a textured or ribbed cylindrical section coupled to the shaft of the dilation catheter proximal to its conical distal tip.
7. The system according to claim 1 , wherein the treatment mechanism is adapted to deliver heat energy to ablate or otherwise damage the tissue surrounding the opening, in order to slow a natural healing process of the tissue.
8. The system according to claim 1 , wherein the treatment mechanism is adapted to abrade or scrape the tissue surrounding the opening in order to encourage the formation of thickened scar tissue.