IP Library Granted Patent US 10,219,861
Granted Patent B2
US 10,219,861 · App. 15/601,777 · Granted Mar 5, 2019

Catheter electrode assemblies and methods of construction thereof

Inventors: Dale E. Just (Minneapolis, MN); Troy T. Tegg (Elk River, MN); Theodore A. Johnson (St. Paul, MN); Sacha C. Hall (Aventura, FL)
Assignee: ST. JUDE MEDICAL, ATRIAL FIBRILLATION DIVISION, INC.
A61B18/1492A61B5/0422A61B2018/00083A61B2018/00267A61B2018/00351A61B2018/00577A61B2018/00875A61B2018/1407A61B2018/1465Y10T29/49204
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Quick Facts
Patent No.
US 10,219,861
App. No.
15/601,777
Granted
Mar 5, 2019
Kind
B2
Abstract

A family of catheter electrode assemblies includes a flexible circuit having a plurality of electrical traces and a substrate; a ring electrode surrounding the flexible circuit and electrically coupled with at least one of the plurality of electrical traces; and an outer covering extending over at least a portion of the electrode. A non-contact electrode mapping catheter includes an outer tubing having a longitudinal axis, a deployment member, and a plurality of splines, at least one of the plurality of splines comprising a flexible circuit including a plurality of electrical traces and a substrate, a ring electrode surrounding the flexible circuit and electrically coupled with at least one of the plurality of electrical traces; and an outer covering extending over at least a portion of the ring electrode. A method of constructing the family of catheter electrode assemblies is also provided.

Claims (30)

1. A catheter comprising:

an elongate shaft structure comprising a proximal portion and a distal portion;

wherein the distal portion comprises:

a flexible substrate;

an electrode;

an electrical trace coupled to the flexible substrate and the electrode; and

a biocompatible outer covering extending over at least a portion of the flexible substrate;

wherein the biocompatible outer covering extends over at least a portion of the electrode; and

wherein at least a portion of the electrode is exposed by the biocompatible outer covering.

2. The catheter of claim 1 , further comprising a superelastic support member electrically isolated from the electrode.

3. The catheter of claim 2 , wherein the superelastic support member includes nitinol.

4. The catheter of claim 2 , further comprising a common structure extending along a length of the elongate shaft structure, and wherein the superelastic support member comprises a protrusion extending from the common structure.

5. The catheter of claim 1 , further comprising a nonconductive liner tube disposed within at least a portion of the electrode.

6. The catheter of claim 5 , wherein the biocompatible outer covering is bonded to at least a portion of the liner tube.

7. The catheter of claim 1 , wherein the electrode has an outer diameter of about 3 French gauge or less.

8. The catheter of claim 1 , further comprising at least one radio opaque marker disposed within at least a portion of the electrode.

9. The catheter of claim 1 , wherein the electrode comprises a ring electrode.

10. The catheter of claim 1 , further comprising a plurality of electrodes disposed along the length of the flexible substrate, each electrode surrounding the flexible circuit and being electrically coupled to the electrical trace.

11. The catheter of claim 1 , wherein the flexible substrate comprises polyimide, polyetheretherketone, polyester, polyethylene terephthalate material, or a combination thereof.

12. The catheter of claim 1 , wherein the electrode is coupled with the electrical trace through an electrical pad.

13. The catheter of claim 1 , further comprising at least one positioning electrode, wherein the at least one positioning electrode is configured to provide a signal indicative of at least one of a position and an orientation of at least a portion of the catheter by sensing an impedance.

14. The catheter of claim 1 , further comprising at least one positioning electrode, wherein the at least one positioning electrode is configured to provide a signal indicative of at least one of a position and an orientation of at least a portion of the catheter by sensing a strength of a magnetic field.

15. The catheter of claim 1 , further comprising a plurality of positioning electrodes, wherein at least one of the plurality of positioning electrodes is configured to provide a signal indicative of at least one of a position and an orientation of at least a portion of the catheter by sensing an impedance and wherein at least one of the plurality of positioning electrodes is configured to provide a signal indicative of at least one of a position and an orientation of at least a portion of the catheter by sensing a strength of a magnetic field.

16. A catheter including an outer tubing defining a longitudinal axis, a deployment member, and a plurality of splines, at least one of the plurality of splines comprising:

a flexible circuit comprising an electrical trace coupled to a flexible substrate;

an electrode electrically coupled with the flexible circuit;

a biocompatible outer covering extending over at least a portion of the electrode; and

a nonconductive liner tube disposed within at least a portion of the electrode;

wherein a portion of the at least one spline is configured to deflect away from the longitudinal axis of the outer tubing when the deployment member is actuated.

17. The catheter of claim 16 , wherein the flexible circuit extends along an uninterrupted length of an exterior surface of the nonconductive liner.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2017
From: JUST, DALE E.; TEGG, TROY T.; JOHNSON, THEODORE A.; HALL, SACHA C.
To: ST. JUDE MEDICAL, ATRIAL FIBRILLATION DIVISION, INC.
Reel/Frame 042480/0073 →
Continuity (4)
Continuation 14712694 · May 14, 2015
Continuation 14038078 · Sep 26, 2013
Continuation 12958992 · Dec 2, 2010
Related Publication 20170319270A1 · Nov 9, 2017
Cited By (33)
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