IP Library › Granted Patent US 10,406,370
Granted Patent B1
US 10,406,370 · App. 16/293,104 · Granted Sep 10, 2019

Single conduit multi-electrode cardiac pacemaker and methods of using thereof

Inventor: Leonid Makharinsky (Tal-Pieta, MT)
Assignee: Eagle Point Medical LLC
A61N1/3622A61B5/0472A61N1/0573A61N1/08A61N1/3624A61N1/371
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Quick Facts
Patent No.
US 10,406,370
App. No.
16/293,104
Filed
Mar 5, 2019
Granted
Sep 10, 2019
Kind
B1
Art Unit
3792
USPC
607/25
Abstract

A device and method for providing cardiac pacing of triangle of Koch and bundle of His zones by multiple electrodes inserted using in a single conduit are provided. The method includes providing a single conduit with multiple electrodes, positioning electrodes in the target zone of a heart, selecting acceptable electrodes as active based on a predetermined criteria and providing cardiac stimulation for multiple chambers of the heart from a single location.

Claims (26)

1. A method of cardiac pacing of multiple chambers of a heart from a single location, said method comprising the steps of:

a. deploying a plurality of individual electrodes in an expanded scattered pattern to a target area of cardiac tissue containing triangle of Koch, bundle of His and surrounding areas, said target area including a location suitable for pacing of a cardiac atrium and a location suitable for pacing of a cardiac ventricle of the heart, more than one of said plurality of individual electrodes to be positioned at said location suitable for pacing of the cardiac atrium or at said location suitable for pacing of the cardiac ventricle of the heart, said plurality of individual electrodes are located at a distal end of a single conduit extending outside the heart, said plurality of individual electrodes are connected to respective individual wires contained within and positioned alongside each other at least in a portion of said single conduit,

b. evaluating each individual electrode positioned at said location for pacing of the cardiac atrium to select at least one electrode capable of capturing and pacing of said cardiac atrium,

c. evaluating each individual electrode positioned at said location for pacing of the cardiac ventricle to select at least one electrode capable of capturing and pacing of said cardiac ventricle via stimulation of said bundle of His,

d. connecting via said single conduit a selected subset of said plurality of individual electrodes including said at least one electrode suitable for pacing of said cardiac atrium and said at least one electrode suitable for pacing of said cardiac ventricle to a pacemaker located outside the heart, and

e. initiate cardiac capture and pacing of multiple chambers of the heart using said selected subset of individual electrodes.

2. The method as in claim 1 , wherein said selecting in step (b) of said at least one electrode suitable for pacing of the cardiac atrium is conducted using a first predetermined acceptance criteria or said selecting in step (c) of said at least one electrode suitable for pacing of the cardiac ventricle is conducted using a second predetermined acceptance criteria, wherein said first predetermined acceptance criteria or said second predetermined acceptance criteria is a confirmed selective or nonselective capture of the bundle of His.

3. The method as in claim 1 , wherein said step (a) further including providing said single conduit extending from a proximal end outside the heart to a distal end inside the heart, said plurality of said individual electrodes located at the distal end of said single conduit prior to deployment step (a) in a collapsed position next to a center of said distal end and following step (a) in an expanded position forming said expanded scattered pattern of said individual electrodes about and away from said center of said distal end of said single conduit.

4. The method as in claim 1 , wherein said single conduit in said step (a) further comprising an outer sheath slidably positioned about said single conduit, wherein each of said individual electrodes at a distal end is formed as a Z-shaped wire configured to compress from an open position to a compressed spring-loaded collapsed position when surrounded by said outer sheath, said open position is characterized by said individual electrode forming said expanded scattered pattern along with other individual electrodes, said collapsed position is characterized by said electrode being in a collapsed position near the center of the distal end of said single conduit.

5. The method as in claim 1 , wherein said single conduit in said step (a) further comprising a tissue attachment spring/screw configured to secure the distal end of said conduit along with said plurality of individual electrodes after implantation into said cardiac tissue.

6. The method as in claim 1 , wherein said single conduit in said step (a) further comprising a ring electrode located on the distal end thereof and spaced apart from said plurality of individual electrodes, said ring electrode configured for use as a positive electrode with any of the individual electrodes of said plurality of individual electrodes.

7. The method as in claim 1 , wherein a distal end of at least some of said individual electrodes of said single conduit in said step (a) contains a tissue attachment spring/screw, said corresponding individual electrode is configured for individual rotation using said individual wire attached thereto, whereby rotation of said individual wire causing said individual electrode to be secured in said cardiac tissue.

8. The method as in claim 1 , wherein in said step (a) each of said individual electrical wire of said single conduit is slidably located in a corresponding slot provided inside said single conduit, said slot contains an exit at the distal end of said single conduit shaped to direct said individual electrode diagonally outward and away from a center of said distal end, whereby advancement of said individual electrodes using said corresponding individual wires causes expansion of said individual electrodes away from said center and forming said expanded scattered pattern.

9. The method as in claim 8 , wherein in said step (a) said shaped exit of said individual slot is formed using an enlargement in said single conduit positioned distally from said individual electrodes and shaped to deflect thereof along a predetermined trajectory diagonally outward and away from said center.

10. The method as in claim 2 , wherein said step of selecting in step (b) or selecting in step (c) of said subset of individual electrodes is further stratified based on a lowest voltage while performing step (b) or step (c).

11. The method as in claim 1 , wherein remaining non-selected individual electrodes of said subset of individual electrodes in step (d) are left in a passive state after being implanted in said cardiac tissue.

12. The method as in claim 11 further comprising a step of re-activation of said remaining non-selected individual electrodes when a malfunction of the previously selected electrodes is detected, whereby avoiding a need to implant further individual electrodes.

13. A method of cardiac pacing of multiple chambers of a heart from a single location, said method comprising the steps of:

a. deploying a plurality of individual electrodes in an expanded pattern configuration to a target area of cardiac tissue containing triangle of Koch, bundle of His and surrounding areas, said plurality of individual electrodes are located at a distal end of a single conduit, said plurality of individual electrodes are connected to respective individual wires contained within said single conduit,

b. evaluating said plurality of individual electrodes to select at least one electrode suitable for pacing of a cardiac atrium,

c. evaluating said plurality of individual electrodes to select at least one electrode suitable for pacing of a cardiac ventricle via stimulation of said bundle of His,

d. connecting a selected subset of said plurality of individual electrodes including said at least one electrode suitable for pacing of said cardiac atrium and said at least one electrode suitable for pacing of said cardiac ventricle to a pacemaker, and

e. initiate cardiac pacing of multiple chambers of the heart using said selected subset of individual electrodes,

wherein said selecting in step (b) of said at least one electrode suitable for pacing of the cardiac atrium is conducted using a first predetermined acceptance criteria or said selecting in step (c) of said at least one electrode suitable for pacing of the cardiac ventricle is conducted using a second predetermined acceptance criteria,

wherein said first predetermined acceptance criteria or said second predetermined acceptance criteria is a confirmed selective or nonselective capture of the bundle of His, and

wherein said step of selecting in step (b) or selecting in step (c) of said subset of individual electrodes is further stratified based on a lowest voltage while performing step (b) or step (c).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2019
From: MAKHARINSKY, LEONID
To: EAGLE POINT MEDICAL LLC
Reel/Frame 048962/0740 →
Continuity (1)
Continuation In Part 16035653 · Jul 15, 2018
Cited By (7)
US 12,246,181 US 12,274,842 US 12,296,177 US 12,465,770 US 12,496,452 US 12,543,992 US 12,605,103