IP Library Granted Patent US 10,319,144
Granted Patent B2
US 10,319,144 · App. 15/389,245 · Granted Jun 11, 2019

Computational localization of fibrillation sources

Inventors: David E. Krummen (Del Mar, CA); Andrew D. McCulloch (San Diego, CA); Christopher Villongco (San Diego, CA); Gordon Ho (San Diego, CA)
Assignee: The Regents of the University of California
G06T17/20A61B5/046A61B5/04011A61B5/7246A61B5/7445G06T5/20G06T7/0012G06T2207/10081G06T2207/10088G06T2207/10116G06T2207/10121G06T2207/30048
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Quick Facts
Patent No.
US 10,319,144
App. No.
15/389,245
Granted
Jun 11, 2019
Kind
B2
Abstract

A system for computational localization of fibrillation sources is provided. In some implementations, the system performs operations comprising generating a representation of electrical activation of a patient's heart and comparing, based on correlation, the generated representation against one or more stored representations of hearts to identify at least one matched representation of a heart. The operations can further comprise generating, based on the at least one matched representation, a computational model for the patient's heart, wherein the computational model includes an illustration of one or more fibrillation sources in the patient's heart. Additionally, the operations can comprise displaying, via a user interface, at least a portion of the computational model. Related systems, methods, and articles of manufacture are also described.

Claims (32)

1. A system comprising:

at least one processor; and

at least one memory storing instructions which, when executed by the at least one processor, cause operations comprising:

accessing simulated representations of electrical activations of a heart, each simulated representation simulated based on a computational model of a model library of computational models that are not patient-specific, the computational models generated based on heart models with varying fibrillation source locations, shapes of a heart, and disease substrates, the simulated representations being vectorcardiograms (VCGs), each computational model being associated with a fibrillation source location of the heart model that the generation of that computational model is based on;

accessing a generated representation of electrical activations of a patient's heart, the generated representation being a VCG generated from an electrocardiogram of the patient;

comparing the generated representation against the simulated representations to identify a matched simulated representation;

identifying a fibrillation source location associated with the computational model that the simulation of the matched simulated representation of the heart is based on; and

displaying, via a user interface, an indication of the identified fibrillation source location as a potential fibrillation source location of the patient

wherein the identified fibrillation source location is identified without using a patient-specific model of the patient's heart.

2. The system of claim 1 , wherein the comparing comprises determining, for each of the simulated representations, a correlation factor between the generated representation and the simulated representation, and wherein the matched simulated representation is identified as the simulated representation with a highest correlation factor.

3. The system of claim 1 , wherein the operations further comprise:

generating a plurality of simulated representations based on varying shapes, geometries, fiber orientations, scars, fibrillation source types, and/or fibrillation source locations;

filtering, based on a physical characteristic of the patient's heart, the plurality of simulated representations to identify a filtered set

wherein the comparing compares the generated representation to the simulated representations of the filtered set.

4. The system of claim 3 , wherein the filtering is based on computerized tomography imaging data, magnetic resonance imaging data, echocardiography data, X-ray data, or fluoroscopy data.

5. The system of claim 1 , wherein the simulated representations are generated from a computational model for simulating electrical activations in one or more of a left atrium, a right atrium, a left ventricle, and a right ventricle, and wherein the fibrillation source locations are within one or more of the left atrium, the right atrium, the left ventricle, and the right ventricle.

6. The system of claim 1 , wherein each simulated representation is generated from a computational model that generates activation values of three-dimensional meshes in a heart or torso shape and a finite state fibrillatory source map of cardiac electrical activations mapped to the meshes.

7. A method performed by a computer system, the method comprising:

accessing simulated representations of electrical activations of a heart, each simulated representation simulated based on a computational model of a model library of computational models that are not patient-specific, the computational models generated based on heart models with varying fibrillation source locations, shapes of a heart, and disease substrates, the simulated representations being vectorcardiograms (VCGs), each computational model being associated with a fibrillation source location of the heart model that the generation of that computational model is based on;

generating a representation of electrical activations of a patient's heart, the generated representation being a VCG generated from an electrocardiogram of the patient;

comparing the generated representation against the simulated representations to identify a matched simulated representation;

identifying a fibrillation source location associated with the computational model that the simulation of the matched simulated representation of the heart is based on; and

displaying, via a user interface, an indication of the identified fibrillation source location as a potential fibrillation source location of the patient

wherein the identified fibrillation source location is identified without using a patient-specific model of the patient's heart.

8. The method of claim 7 , wherein the comparing comprises determining, for each of the simulated representations, a correlation factor between the generated representation and the simulated representation, and wherein the matched simulated representation is identified as the simulated representation with a highest correlation factor.

9. The method of claim 7 further comprising:

generating a plurality of simulated representations based on varying shapes, geometries, fiber orientations, scars, fibrillation source types, and/or fibrillation source locations;

filtering, based on a physical characteristic of the patient's heart, the plurality of simulated representations to identify a filtered set

wherein the comparing compares the generated representation to the simulated representations of the filtered set.

10. The method of claim 9 , wherein the filtering is based on computerized tomography imaging data, magnetic resonance imaging data, echocardiography data, X-ray data, or fluoroscopy data.

11. The method of claim 7 , wherein the simulated representations are generated from a computational model for simulating electrical activations in one or more of a left atrium, a right atrium, a left ventricle, and a right ventricle, and wherein the fibrillation source locations are within one or more of the left atrium, the right atrium, the left ventricle, and the right ventricle.

12. The method of claim 7 , wherein each simulated representation is generated from a computational model that generates activation values of three-dimensional meshes in a heart or torso shape and a finite state fibrillatory source map of cardiac electrical activations mapped to the meshes.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 14, 2018
From: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
To: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA; THE UNITED STATES OF AMERICA AS REPRESENTED BY THE DEPARTMENT OF VETERANS AFFAIRS, OFFICE OF THE GENERAL COUNSEL
Reel/Frame 046804/0338 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 29, 2016
From: KRUMMEN, DAVID E.; MCCULLOCH, ANDREW D.; VILLONGCO, CHRISTOPHER; HO, GORDON
To: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
Reel/Frame 040803/0247 →
Continuity (2)
Provisional Application 62271113 · Dec 22, 2015
Related Publication 20170178403A1 · Jun 22, 2017
Cited By (6)
US 12,213,742 US 12,390,113 US 12,478,434 US 12,502,158 US 12,514,639 US 12,526,434