IP Library Granted Patent US 11,715,187
Granted Patent B2
US 11,715,187 · App. 17/888,826 · Granted Aug 1, 2023

Extended tissue types for increased granularity in cardiovascular disease phenotyping

Inventors: Andrew J. Buckler (Boston, MA); Changguo Ji (Lexington, MA); Murali Ayyapillai (Acton, MA)
Assignee: ELUCID BIOIMAGING INC.
G06T5/50A61B6/4241A61B6/463A61B6/482A61B6/504A61B6/5247G06T7/0012G06T7/174G06T2207/10081G06T2207/10088G06T2207/10132G06T2207/20216G06T2207/20224
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Quick Facts
Patent No.
US 11,715,187
App. No.
17/888,826
Filed
Aug 16, 2022
Granted
Aug 1, 2023
Kind
B2
Art Unit
2666
USPC
378/9
Abstract

Systems and methods for improving soft tissue contrast, characterizing tissue, classifying phenotype, stratifying risk, and performing multi-scale modeling aided by multiple energy or contrast excitation and evaluation are provided. The systems and methods can include single and multi-phase acquisitions and broad and local spectrum imaging to assess atherosclerotic plaque tissues in the vessel wall and perivascular space.

Claims (26)

1. A computerized method for improving soft tissue analysis, the method comprising:

obtaining, via a computing device, a plurality of radiological images of patient, where each of the radiological images is obtained using different excitations;

selecting, by the computing device, a process among a plurality of processes to analyze the plurality of excitations based on an expected soft tissue type,

wherein the plurality of processes comprises a digital subtraction process, digital addition process, a multivariate statistical process, or an excitation selection process, wherein the digital addition process comprises averaging the received plurality of radiological images; and

segmenting, by the computer devices, the processed plurality of excitations to display the soft tissue.

2. The computerized method of claim 1 wherein the plurality of radiological image are computerized tomography (CT) images and the different excitations are different x-ray energy.

3. The computerized method of claim 1 wherein the plurality of radiological image are Magnetic Resonance (MR) images and the different excitations are different radio frequency pulses.

4. The computerized method of claim 1 wherein the plurality of radiological image are ultrasound images and the different excitations are different frequencies.

5. The computerized method of claim 1 wherein the plurality of radiological images are CT images and each of the plurality of CT images are formed by:

directing, via a first x-ray source, a first x-ray attenuation to an energy integrating detector, wherein the energy integrated detector is dimensioned to produce an image of a predetermined area of the patient;

directing, via a second x-ray source, a second x-ray attenuation to a photon counting detector, where the photon counting detector to produce an image of a specific tissue target within the predetermined area; and

producing, via a processor, a final CT image based on the image of the predetermined area of the patient and the image of the specific tissue target within the predetermined image.

6. The computerized method of claim 1 wherein the excitation selection process involves selecting a particular radiological image of the plurality of radiological images based on the tissue type.

7. A non-transitory computer program product comprising instructions which, when the program is executed cause the computer to:

obtain a plurality of radiological images of patient, where each of the radiological images is obtained using different excitations;

select a process among a plurality of processes to analyze the plurality of excitations based on an expected soft tissue type,

wherein the plurality of processes comprises a digital subtraction process, digital addition process, a multivariate statistical process, or an excitation selection process, wherein the digital addition process comprises averaging the received plurality of radiological images; and

segment the processed plurality of excitations to display the soft tissue.

8. The non-transitory computer program product of claim 7 wherein the plurality of radiological image are computerized tomography (CT) images and the different excitations are different x-ray energy.

9. The non-transitory computer program product of claim 7 wherein the plurality of radiological image are Magnetic Resonance (MR) images and the different excitations are different radio frequency pulses.

10. The non-transitory computer program product of claim 7 wherein the plurality of radiological image are ultrasound images and the different excitations are different frequencies.

11. The non-transitory computer program product of claim 7 wherein the plurality of radiological images are CT images and each of the plurality of CT images are formed by:

directing, via a first x-ray source, a first x-ray attenuation to an energy integrating detector, wherein the energy integrated detector is dimensioned to produce an image of a predetermined area of the patient;

directing, via a second x-ray source, a second x-ray attenuation to a photon counting detector, where the photon counting detector to produce an image of a specific tissue target within the predetermined area; and

producing, via a processor, a final CT image based on the image of the predetermined area of the patient and the image of the specific tissue target within the predetermined image.

12. The non-transitory computer program product of claim 7 wherein the excitation selection process involves selecting a particular radiological image of the plurality of radiological images based on the tissue type.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 17, 2022
From: BUCKLER, ANDREW J. J.; JI, CHANGGUO; AYYAPILLAI, MURALI
To: ELUCID BIOIMAGING INC.
Reel/Frame 060832/0856 →
Continuity (3)
Continuation 17566439 · Dec 30, 2021
Provisional Application 63147609 · Feb 9, 2021
Related Publication 20220398706A1 · Dec 15, 2022
Cited By (17)
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