IP Library › Granted Patent US 11,583,242
Granted Patent B2
US 11,583,242 · App. 17/062,438 · Granted Feb 21, 2023

System and method for contrast enhanced ultrasound quantification imaging

Inventors: Ting-Ian Ji (San Jose, CA); Zhaoling Lu (San Jose, CA)
Assignee: Shenzhen Mindray Bio-Medical Electronics Co., Ltd.
A61B8/06A61B8/461A61B8/481A61B8/54
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Quick Facts
Patent No.
US 11,583,242
App. No.
17/062,438
Granted
Feb 21, 2023
Kind
B2
Abstract

Methods, systems, and apparatus, including computer programs encoded on computer storage media, for contrast enhanced ultrasound quantification imaging are provided. One of the methods includes: obtaining, for each location in a region of interest, a time-dependent ultrasound signal with respect to the region of interest for a time period; determining, for the each location, a processed time-dependent ultrasound signal based at least on the obtained time-dependent ultrasound signal, wherein: the processed time-dependent ultrasound signal maps one or more portions of the obtained time-dependent ultrasound signal that each locally increase over a threshold, and the processed time-dependent ultrasound signal flattens one or more portions of the obtained time-dependent ultrasound signal that do not each locally increase over the threshold; and generating a sequence of images of the region of interest based at least on the processed time-dependent ultrasound signal of the each location, wherein the generated sequence of images displays signal variations of the processed time-dependent ultrasound signal in one or more structures in the region of interest to render the one or more structures.

Claims (64)

1. A method for contrast enhanced ultrasound quantification imaging, comprising:

obtaining, for each location in a region of interest, a time-dependent ultrasound signal with respect to the region of interest for a time period including a series of time points from a first time point to a last time point;

determining, for each location, a processed time-dependent ultrasound signal based at least on the obtained time-dependent ultrasound signal and a threshold, by:

for the first time point, assigning an intensity of the obtained time-dependent ultrasound signal at the first time point to an intensity of the processed time-dependent ultrasound signal at the first time point; and

for each time point of the series of time points after the first time point:

determining whether an increment between the intensity of the obtained time-dependent ultrasound signal at a current time point and the intensity of the processed time-dependent ultrasound signal at a previous time point exceeds the threshold, wherein the previous time point is a time point immediately before the current time point,

in response to determining that the increment exceeds the threshold, assigning the intensity of the obtained time-dependent ultrasound signal at the current time point to the intensity of the processed time-dependent ultrasound signal at the current time point, and

in response to determining that the increment does not exceed the threshold when the intensity of the obtained time-dependent ultrasound signal at the current time point is greater than the intensity of the processed time-dependent ultrasound signal at the previous time point, assigning the intensity of the processed time-dependent ultrasound signal at the previous time point to the intensity of the processed time-dependent ultrasound signal at the current time point; and

generating a sequence of images of the region of interest based at least on the processed time-dependent ultrasound signal of each location, wherein the generated sequence of images displays signal variations of the processed time-dependent ultrasound signal in one or more vascular structures in the region of interest to render the one or more vascular structures.

2. The method of claim 1 , wherein the generated sequence of images display a wash-in process of agent-carrying blood perfusing through a cross section of the one or more vascular structures in the region of interest.

3. The method of claim 1 , wherein generating the sequence of images of the region of interest based at least on the processed time-dependent ultrasound signal of each location comprises:

obtaining the first time point and the last time point; and

generating the sequence of images between the first time point and the last time point.

4. The method of claim 1 , wherein a time period between the current time point and the previous time point constitutes a time frame.

5. A non-transitory computer-readable storage medium configured with instructions executable by one or more processors to cause the one or more processors to perform contrast enhanced ultrasound quantification imaging operations comprising:

obtaining, for each location in a region of interest, a time-dependent ultrasound signal with respect to the region of interest for a time period including a series of time points from a first time point to a last time point;

determining, for each location, a processed time-dependent ultrasound signal based at least on the obtained time-dependent ultrasound signal and a threshold, by:

for the first time point, assigning an intensity of the obtained time-dependent ultrasound signal at the first time point to an intensity of the processed time-dependent ultrasound signal at the first time point; and

for each time point of the series of time points after the first time point:

determining whether an increment between the intensity of the obtained time-dependent ultrasound signal at a current time point and the intensity of the processed time-dependent ultrasound signal at a previous time point exceeds the threshold, wherein the previous time point is a time point immediately before the current time point,

in response to determining that the increment exceeds the threshold, assigning the intensity of the obtained time-dependent ultrasound signal at the current time point to the intensity of the processed time-dependent ultrasound signal at the current time point, and

in response to determining that the increment does not exceed the threshold when the intensity of the obtained time-dependent ultrasound signal at the current time point is greater than the intensity of the processed time-dependent ultrasound signal at the previous time point, assigning the intensity of the processed time-dependent ultrasound signal at the previous time point to the intensity of the processed time-dependent ultrasound signal at the current time point; and

generating a sequence of images of the region of interest based at least on the processed time-dependent ultrasound signal of each location, wherein the generated sequence of images displays signal variations of the processed time-dependent ultrasound signal in one or more vascular structures in the region of interest to render the one or more vascular structures.

6. The non-transitory computer-readable storage medium of claim 5 , wherein the generated sequence of images display a wash-in process of agent-carrying blood perfusing through the one or more vascular structures in the region of interest.

7. The non-transitory computer-readable storage medium of claim 5 , wherein the processed time-dependent ultrasound signal is a monotonically increasing signal.

8. The non-transitory computer-readable storage medium of claim 5 , wherein generating the sequence of images of the region of interest based at least on the processed time-dependent ultrasound signal of each location comprises:

obtaining the first time point and the last time point; and

generating the sequence of images between the first time point and the last time point.

9. The non-transitory computer-readable storage medium of claim 8 , wherein the operations further comprise:

obtaining an updated starting time point or an updated ending time point; and

correspondingly updating the generated sequence of images based at least on the updated starting time point or the updated ending time point.

10. The non-transitory computer-readable storage medium of claim 5 , wherein the operations further comprise:

obtaining a user-controllable display speed; and

displaying the generated sequence of images based at least on the obtained user-controllable display speed.

11. The non-transitory computer-readable storage medium of claim 5 , wherein, before generating the sequence of images, the operations further comprise:

comparing a predetermined time-dependent ultrasound signal and the processed time-dependent ultrasound signal; and

determining, based at least on the comparison, one or more locations showing abnormality, wherein:

the generated sequence of images comprise one or more labels indicating the one or more locations showing abnormality.

12. The non-transitory computer-readable storage medium of claim 5 , wherein a time period between the current time point and the previous time point constitutes a time frame.

13. A device, comprising a memory and a processor, the memory comprising instructions executable by the processor to cause the processor to perform contrast enhanced ultrasound quantification imaging operations comprising:

obtaining, for each location in a region of interest, a time-dependent ultrasound signal with respect to the region of interest for a time period including a series of time points from a first time point to a last time point;

determining, for each location, a processed time-dependent ultrasound signal based at least on the obtained time-dependent ultrasound signal and a threshold, by:

for the first time point, assigning an intensity of the obtained time-dependent ultrasound signal at the first time point to an intensity of the processed time-dependent ultrasound signal at the first time point; and

for each time point of the series of time points after the first time point:

determining whether an increment between the intensity of the obtained time-dependent ultrasound signal at a current time point and the intensity of the processed time-dependent ultrasound signal at a previous time point exceeds the threshold, wherein the previous time point is a time point immediately before the current time point,

in response to determining that the increment exceeds the threshold, assigning the intensity of the obtained time-dependent ultrasound signal at the current time point to the intensity of the processed time-dependent ultrasound signal at the current time point, and

in response to determining that the increment does not exceed the threshold when the intensity of the obtained time-dependent ultrasound signal at the current time point is greater than the intensity of the processed time-dependent ultrasound signal at the previous time point, assigning the intensity of the processed time-dependent ultrasound signal at the previous time point to the intensity of the processed time-dependent ultrasound signal at the current time point; and

generating a sequence of images of the region of interest based at least on the processed time-dependent ultrasound signal of each location, wherein the generated sequence of images displays signal variations of the processed time-dependent ultrasound signal in one or more vascular structures in the region of interest to render the one or more vascular structures.

14. The device of claim 13 , wherein the generated sequence of images display a wash-in process of agent-carrying blood perfusing through the one or more vascular structures in the region of interest.

15. The device of claim 13 , wherein the processed time-dependent ultrasound signal is a monotonically increasing signal.

16. The device of claim 13 , wherein generating the sequence of images of the region of interest based at least on the processed time-dependent ultrasound signal of each location comprises:

obtaining the first time point and the last time point; and

generating the sequence of images between the first time point and the last time point.

17. The device of claim 13 , wherein the operations further comprise:

obtaining an updated first time point or an updated last time point; and

correspondingly updating the generated sequence of images based at least on the updated first time point or the updated last time point.

18. The device of claim 13 , wherein the operations further comprise:

obtaining a user-controllable display speed; and

displaying the generated sequence of images based at least on the obtained user-controllable display speed.

19. The device of claim 13 , wherein, before generating the sequence of images, the operations further comprise:

comparing a predetermined time-dependent ultrasound signal and the processed time-dependent ultrasound signal; and

determining, based at least on the comparison, one or more locations showing abnormality, wherein:

the generated sequence of images comprise one or more labels indicating the one or more locations showing abnormality.

20. The device of claim 13 , wherein a time period between the current time point and the previous time point constitutes a time frame.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 2, 2020
From: JI, TING-LAN; LU, ZHAOLING
To: SHENZHEN MINDRAY BIO-MEDICAL ELECTRONICS CO., LTD.
Reel/Frame 053965/0487 →
Continuity (1)
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