IP Library Patent Application 14621747
Patent Application
App. No. 14/621,747

METHOD AND SYSTEM FOR PATIENT-SPECIFIC MODELING OF BLOOD FLOW

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Patent No.
US None
App. No.
14/621,747
Abstract

Embodiments include a system for determining cardiovascular information for a patient. The system may include at least one computer system configured to receive patient-specific data regarding a geometry of the patient's heart, and create a three-dimensional model representing at least a portion of the patient's heart based on the patient-specific data. The at least one computer system may be further configured to create a physics-based model relating to a blood flow characteristic of the patient's heart and determine a fractional flow reserve within the patient's heart based on the three-dimensional model and the physics-based model.

Claims (65)

1 - 184 . (canceled)

185 . A computer-implemented method for determining patient-specific cardiovascular information using at least one computer system, the method comprising:

receiving, at the at least one computer system, a patient-specific geometric model of at least a portion of a coronary artery and at least a portion of myocardial tissue connected to the portion of the coronary artery of the patient;

simulating perfusion through at least the portion of the myocardial tissue based on the patient-specific geometric model, using the at least one computer system;

receiving, at the at least one computer system, a patient-specific measure of perfusion through at least the portion of the myocardial tissue of the patient;

comparing, using the at least one computer system, the simulated perfusion to the patient-specific measure of perfusion through the portion of the myocardial tissue; and

modifying a parameter or geometry of the patient-specific geometric model if the simulated perfusion is outside a predetermined threshold from the patient-specific measure of perfusion through the portion of the myocardial tissue of the patient.

186 . The method of claim 185 , further comprising:

extending, using the at least one computer system, the patient-specific geometric model to form an augmented model by extending at least one of the coronary arteries included in the patient-specific geometric model;

dividing the at least one portion of the augmented model by dividing an extended portion of the at least one coronary artery into segments; and

associating the patient-specific measure of perfusion with at least one of the segments of the extended portion.

187 . The method of claim 186 , wherein:

extending the patient-specific geometric model includes creating additional branches of arteries connected to at least one of the arteries included in the patient-specific geometric model;

dividing the at least one portion of the augmented model includes dividing at least one of the additional branches into segments; and

the perfusion information is associated with at least one of the segments of the at least one additional branch.

188 . The method of claim 186 , further comprising determining a size of the at least one segment based on a size of at least one of the arteries connected to the at least one segment.

189 . The method of claim 186 , further comprising determining a size of the segments based on sizes of a plurality of neighboring arteries connected to the respective segments.

190 . The method of claim 186 , wherein:

the patient-specific geometric model is extended such that at least one coronary artery of the plurality of coronary arteries included in the patient-specific geometric model is extended along or within the myocardial tissue.

191 . The method of claim 186 , wherein:

extending the patient-specific geometric model includes extending at least one of the coronary arteries included in the patient-specific geometric model or creating additional branches of arteries connected to at least one of the arteries included in the patient-specific geometric model;

the patient-specific geometric model is extended until a desired size of the at least one extended artery or the additional branches is obtained; and

at least the portion of the augmented model representing the myocardial tissue is divided until a desired segment size is obtained.

192 . The method of claim 191 , wherein:

the patient-specific geometric model is generated based on imaging data; and

the desired size of the at least one extended artery and the desired segment size depend on a resolution of the imaging data.

193 . The method of claim 186 , wherein the augmented model includes at least a portion of a coronary arterial tree on an epicardial surface.

194 . A computer system for evaluating cardiovascular treatment options for a patient, the computer system comprising:

a digital storage device storing instructions that, when executed by a processor, cause the computer system to perform a method for evaluating cardiovascular treatment options for a patient; and

a processor configured to execute the instructions to perform the method for evaluating cardiovascular treatment options for a patient, the method comprising:

receiving, at the at least one computer system, a patient-specific geometric model of at least a portion of a coronary artery and at least a portion of myocardial tissue connected to the portion of the coronary artery of the patient;

simulating perfusion through at least the portion of the myocardial tissue based on the patient-specific geometric model, using the at least one computer system;

receiving, at the at least one computer system, a patient-specific measure of perfusion through at least the portion of the myocardial tissue of the patient;

comparing, using the at least one computer system, the simulated perfusion to the patient-specific measure of perfusion through the portion of the myocardial tissue; and

modifying a parameter or geometry of the patient-specific geometric model if the simulated perfusion is outside a predetermined threshold from the patient-specific measure of perfusion through the portion of the myocardial tissue of the patient.

195 . The computer system of claim 194 , wherein the processor is further configured for:

extending, using the at least one computer system, the patient-specific geometric model to form an augmented model by extending at least one of the coronary arteries included in the patient-specific geometric model;

dividing the at least one portion of the augmented model by dividing an extended portion of the at least one coronary artery into segments; and

associating the patient-specific measure of perfusion with at least one of the segments of the extended portion.

196 . The computer system of claim 195 , wherein:

extending the patient-specific geometric model includes creating additional branches of arteries connected to at least one of the arteries included in the patient-specific geometric model;

dividing the at least one portion of the augmented model includes dividing at least one of the additional branches into segments; and

the perfusion information is associated with at least one of the segments of the at least one additional branch.

197 . The computer system of claim 195 , wherein the processor is further configured for determining a size of the at least one segment based on a size of at least one of the arteries connected to the at least one segment.

198 . The computer system of claim 195 , wherein the processor is further configured for determining a size of the segments based on sizes of a plurality of neighboring arteries connected to the respective segments.

199 . The computer system of claim 195 , wherein:

the patient-specific geometric model is extended such that at least one coronary artery of the plurality of coronary arteries included in the patient-specific geometric model is extended along or within the myocardial tissue.

200 . The computer system of claim 195 , wherein:

extending the patient-specific geometric model includes extending at least one of the coronary arteries included in the patient-specific geometric model or creating additional branches of arteries connected to at least one of the arteries included in the patient-specific geometric model;

the patient-specific geometric model is extended until a desired size of the at least one extended artery or the additional branches is obtained; and

at least the portion of the augmented model representing the myocardial tissue is divided until a desired segment size is obtained.

201 . The computer system of claim 200 , wherein:

the patient-specific geometric model is generated based on imaging data; and

the desired size of the at least one extended artery and the desired segment size depend on a resolution of the imaging data.

202 . The computer system of claim 195 , wherein the augmented model includes at least a portion of a coronary arterial tree on an epicardial surface.

203 . A computer readable storage medium having stored thereon a computer program comprising instructions, which, when executed by a computer, cause the computer to perform a method for determining patient-specific cardiovascular information using at least one computer system, the method comprising:

receiving, at the at least one computer system, a patient-specific geometric model of at least a portion of a coronary artery and at least a portion of myocardial tissue connected to the portion of the coronary artery of the patient;

simulating perfusion through at least the portion of the myocardial tissue based on the patient-specific geometric model, using the at least one computer system;

receiving, at the at least one computer system, a patient-specific measure of perfusion through at least the portion of the myocardial tissue of the patient;

comparing, using the at least one computer system, the simulated perfusion to the patient-specific measure of perfusion through the portion of the myocardial tissue; and

modifying a parameter or geometry of the patient-specific geometric model if the simulated perfusion is outside a predetermined threshold from the patient-specific measure of perfusion through the portion of the myocardial tissue of the patient.

204 . The method of claim 203 , further comprising:

extending, using the at least one computer system, the patient-specific geometric model to form an augmented model by extending at least one of the coronary arteries included in the patient-specific geometric model;

dividing the at least one portion of the augmented model by dividing an extended portion of the at least one coronary artery into segments; and

associating the patient-specific measure of perfusion with at least one of the segments of the extended portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2017
From: TAYLOR, CHARLES A.; FONTE, TIMOTHY A.; BAI, YING
To: HEARTFLOW, INC.
Reel/Frame 043688/0665 →