IP Library Granted Patent US 11,246,662
Granted Patent B2
US 11,246,662 · App. 16/050,384 · Granted Feb 15, 2022

Methods of cardiac mapping and model merging

Inventor: Steve Adler (Randolph, NJ)
Assignee: CATHETER PRECISION, INC.
A61B34/10A61B5/0077A61B5/055A61B5/283A61B5/318A61B5/333A61B5/339A61B5/349A61B5/7285A61B6/032A61B6/503A61B6/5235A61N1/365G06T7/337G06T17/00A61B6/466A61B18/1492A61B2018/00351A61B2018/00577A61B2018/00839A61B2034/105A61B2090/363A61B2090/365A61B2090/3937G06T2207/10081G06T2207/10088G06T2207/20221G06T2207/30048G06T2210/41
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Quick Facts
Patent No.
US 11,246,662
App. No.
16/050,384
Granted
Feb 15, 2022
Kind
B2
Abstract

Various embodiments provide a cardiac mapping and model merging method including: generating a premature ventricular contraction (PVC) activation map of a heart based on a three-dimensional (3D) heart model and PVC electrocardiogram (ECG) data recording during PVC of the heart; generating a 3D internal surface model of the heart by triangulating point-by-point contact data collected during an electrophysiology (EP) procedure; merging the 3D activation map and the 3D internal surface model to form a PVC activation surface model; and pacing the heart at a first pacing location disposed in an area of earliest activation identified in PVC activation surface model.

Claims (11)

1. A method of cardiac mapping, comprising:

attaching 12 electrodes of an electrocardiogram (ECG) device to the chest of a patient;

recording electrocardiogram (ECG) data using the ECG device;

generating a premature ventricular contraction (PVC) activation map of the patient's the heart, based on the ECG data, a three-dimensional (3D) chest model, and two-dimensional (2D) images of the heart, the PVC activation map including an area of earliest activation;

determining an offset between the actual location of each of the electrodes and ideal locations of each of the electrodes included in the 3D chest model based on a comparison of the area of earliest in the activation in the PVC activation map and a predicted area of earliest activation; and

adjusting the activation map based on the determined offset,

wherein the 3D chest model is generated by:

applying at least three fiducial markers to the patient's body with two of the fiducial markers disposed on the shoulders of the patient and one of the fiducial markers disposed on the sternum of the patient, wherein the fiducial markers reflect different wavelengths of light, have different shapes, or reflect different wavelengths of light and have different shapes, such that the fiducial markers are distinguishable using image processing;

generating external image data of the patient's body including imaging the fiducial markers and the electrodes;

identifying anatomical locations corresponding to the fiducial markers by analyzing the image data to detect the light reflected from the fiducial markers, the different shapes of the markers, or both the light reflected from the fiducial markers and the different shapes of the fiducial markers; and

merging the image data with a 3D anatomical model of the patient's chest generated using the 2D images by registering the identified anatomical locations with corresponding anatomical locations in imaging obtained from computer tomography (CT) or magnetic resonance imaging (MRI) scans.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2025
From: CATHETER PRECISION LLC
To: KARDIONAV, INC.
Reel/Frame 071635/0366 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2019
From: ADLER, STEVE
To: CATHETER PRECISION, INC.
Reel/Frame 048234/0936 →
Continuity (3)
Provisional Application 62539802 · Aug 1, 2017
Provisional Application 62711777 · Jul 30, 2018
Related Publication 20190038357A1 · Feb 7, 2019