IP Library Granted Patent US 11,344,239
Granted Patent B2
US 11,344,239 · App. 16/508,646 · Granted May 31, 2022

Non-invasive system and method of spatial localization of specific electrocardiac elements

Inventors: Sean Marcus (Rockledge, FL); Anthony Balda (Satellite Beach, FL); Scott Baskerville (Melbourne, FL); George Koos (Melbourne Beach, FL)
Assignee: Medicomp, Inc.
A61B5/282A61B5/053A61B5/361A61B5/6832A61B90/36A61B90/39A61B5/065A61B5/6823A61B2090/363A61B2090/3929A61B2090/3954A61B2090/3966A61B2560/0412A61B2562/046
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Quick Facts
Patent No.
US 11,344,239
App. No.
16/508,646
Granted
May 31, 2022
Kind
B2
Abstract

A patch includes a sensor layer and adhesive disposed along an outer surface of the sensor layer. The sensor layer has a plurality of sensors, each adapted to measure a value of an electric field, and a plurality of magnets wherein each of the plurality of magnets is collocated with one of the plurality of sensors. Electric field data from the plurality of sensors is provided to a cardiac monitor.

Claims (40)

1. A system for cardiac monitoring comprising:

a patch comprising:

a sensor layer comprising:

an array of first sensors, each of the first sensors is adapted to measure a value of magnetic field in a first direction,

an array of second sensors, each adapted to measure a value of the magnetic field in a second direction, which is orthogonal to the first direction, and

an array of magnets, wherein each of the array of magnets is collocated and associated with one of the array of first sensors and the magnetic field measured by each of the first sensors is the magnetic field of a respective magnet from the array of magnets associated with its respective first sensor, and

adhesive disposed along an outer surface of the sensor layer; and

a cardiac monitor adapted to detect atrial fibrillation, receive outputs of each of the array of first sensors and each of the array of second sensors during the atrial fibrillation, wherein the output is an electrical signal indicative of the respective value of the magnetic field at the respective sensor's location during the atrial fibrillation, and provide the outputs of each of the arrays of first and second sensors to an external computing device; and

the external computing device adapted to receive the outputs of each of the arrays of first and second sensors and utilize the respective value of the magnetic field at the respective sensor's location during the atrial fibrillation to locate a foci causing the atrial fibrillation.

2. The system according to claim 1 wherein the sensor layer is adapted to adhere to a patient and wrap from an anterior to a posterial aspect of a torso of the patient.

3. The system according to claim 1 further comprising:

a fiducial layer having a surface adapted to secure to the sensor layer, wherein the fiducial layer further comprises:

a plurality of fiducial markers having at least one of acoustic properties, material density, and proton content different from those of human tissue.

4. The system according to claim 1 further comprising:

an electrode layer having at least one electrode and secured to the sensor layer; and

wherein the cardiac monitor is in electrical communication with the at least one electrode.

5. The system according to claim 4 wherein the cardiac monitor is adapted to identify the atrial fibrillation in data provided by the at least one electrode.

6. The system according to claim 1 wherein the external computing device provides a three-dimensional image indicating the location of the foci on a heart.

7. A system for cardiac monitoring comprising:

a patch comprising:

a sensor layer comprising:

an array of first sensors, wherein each of the first sensors is adapted to measure a value of a magnetic field in a first direction,

an array of second sensors, each adapted to measure a value of the magnetic field in a second direction, which is orthogonal to the first direction, and

an array of magnets, wherein each of the array of magnets is collocated and associated with one of the array of first sensors and the magnetic field measured by each of the first sensors is the magnetic field of a respective magnet from the array of magnets associated with its respective first sensor;

adhesive disposed along an outer surface of the sensor layer,

a fiducial layer having a surface adapted to secure to the sensor layer, and

an electrode layer having at least one electrode and secured to the sensor layer;

a cardiac monitor adapted to detect atrial fibrillation, receive outputs of each of the array of first sensors and each of the array of second sensors during the the atrial fibrillation, wherein the output is an electrical signal indicative of the respective value of the magnetic field at the respective sensor's location during the atrial fibrillation, and provide the outputs of each of the arrays of first and second sensors to an external computing device; and

the external computing device adapted to receive the outputs of each of the arrays of first and second sensors and utilize the respective value of the magnetic field at the respective sensor's location during the atrial fibrillation to locate a foci causing the atrial fibrillation;

wherein the sensor layer is adapted to adhere to a patient and wrap from an anterior to a posterial aspect of a torso of the patient;

wherein the fiducial layer comprises a plurality of fiducial markers having at least one of acoustic properties, material density, and proton content different from those of human tissue;

wherein the cardiac monitor is in electrical communication with the at least one electrode; and

wherein the cardiac monitor is adapted to identify the atrial fibrillation in data provided by the at least one electrode.

8. A system for cardiac monitoring comprising:

an array of first sensors, each of the first sensors is adapted to measure a value of magnetic field in a first direction;

an array of second sensors, each adapted to measure a value of the magnetic field in a second direction, which is orthogonal to the first direction;

an array of magnets, wherein each of the array of magnets is collocated and associated with one of the array of first sensors and the magnetic field measured by each of the first sensors is the magnetic field of a respective magnet from the array of magnets associated with its respective first sensor; and

a cardiac monitor adapted to detect atrial fibrillation, receive outputs of each of the array of first sensors and each of the array of second sensors during the the atrial fibrillation, wherein the output is an electrical signal indicative of the value of the magnetic field at the respective sensor's location during the atrial fibrillation, and provide the outputs of each of the arrays of first and second sensors to an external computing device; and

the external computing device adapted to receive the outputs of each of the arrays of first and second sensors and utilize the respective value of the magnetic field at the respective sensor's location during the atrial fibrillation to locate a foci causing the atrial fibrillation; and

wherein adhesive is disposed along an outer surface of the sensor layer.

Assignments (5)
SECURITY INTEREST Recorded Jun 30, 2026
From: MEDICOMP, INC.
To: FIFTH THIRD BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 075142/0291 →
RELEASE OF SECURITY INTEREST Recorded Oct 3, 2025
From: TRUIST BANK
To: MEDICOMP, INC.
Reel/Frame 072457/0824 →
SECURITY INTEREST Recorded Sep 30, 2025
From: MEDICOMP, INC.; WATERMARK MEDICAL, INC.
To: FIFTH THIRD BANK, NATIONAL ASSOCIATION
Reel/Frame 072430/0464 →
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Jan 4, 2023
From: MEDICOMP, INC.
To: TRUIST BANK
Reel/Frame 062278/0308 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2019
From: MARCUS, SEAN; BALDA, ANTHONY; BASKERVILLE, SCOTT; KOOS, GEORGE
To: MEDICOMP, INC.
Reel/Frame 049726/0446 →
Continuity (4)
Continuation In Part 15835561 · Dec 8, 2017
Continuation In Part PCTUS2016036478 · Jun 8, 2016
Provisional Application 62172565 · Jun 8, 2015
Related Publication 20190328263A1 · Oct 31, 2019