IP Library › Granted Patent US 11,759,173
Granted Patent B2
US 11,759,173 · App. 17/557,744 · Granted Sep 19, 2023

Ultrasound diagnostic apparatus and control method of ultrasound diagnostic apparatus

Inventor: Tsuyoshi Matsumoto (Kanagawa, JP)
Assignee: FUJIFILM Corporation
A61B8/4488A61B8/0891A61B8/461A61B8/52
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Quick Facts
Patent No.
US 11,759,173
App. No.
17/557,744
Granted
Sep 19, 2023
Kind
B2
Abstract

An ultrasound diagnostic apparatus ( 1 ) includes a transmission and reception circuit ( 5 ) that causes a transducer array ( 2 ) to transmit an ultrasound beam toward the subject, and processes a reception signal output from the transducer array that has received an ultrasound echo from the subject to generate a sound ray signal; an image generation unit ( 6 ) that generates an ultrasound image on the basis of the generated sound ray signal; an image analysis unit ( 9 ) that detects the blood vessel and the insertion object by analyzing the generated ultrasound image; and a device control unit ( 13 ) that controls the transmission and reception circuit ( 5 ) such that a frame rate at which the ultrasound image is generated is adjusted, on the basis of a relative positional relationship between the detected blood vessel and the detected insertion object.

Claims (83)

1. An ultrasound diagnostic apparatus that displays an insertion object to be inserted into a blood vessel of a subject on an ultrasound image, the ultrasound diagnostic apparatus comprising:

a transducer array;

a transmission and reception circuit configured to

cause the transducer array to transmit an ultrasound beam toward the subject, and

process a reception signal output from the transducer array that has received an ultrasound echo from the subject to generate a sound ray signal;

a processor configured to

generate the ultrasound image based on the sound ray signal generated by the transmission and reception circuit,

detect the blood vessel and the insertion object by analyzing the ultrasound image, and

control the transmission and reception circuit such that a frame rate at which the ultrasound image is generated is adjusted, based on a relative positional relationship between the blood vessel and the insertion object which are detected.

2. The ultrasound diagnostic apparatus according to claim 1 ,

wherein the processor is further configured to control the transmission and reception circuit such that

the frame rate at which the ultrasound image is generated is set to a predetermined first rate when a distance between a distal end of the insertion object and the blood vessel which are detected exceeds a predetermined distance threshold value, and

the frame rate is switched to a second rate higher than the first rate when the distance between the distal end of the insertion object and the blood vessel which are detected is equal to or less than the predetermined distance threshold value.

3. The ultrasound diagnostic apparatus according to claim 2 ,

wherein the processor is further configured to control the transmission and reception circuit such that

the frame rate is set to a third rate when the distal end of the insertion object which is detected is inserted into the blood vessel and a displacement amount of the distal end of the insertion object in the blood vessel within a predetermined time is equal to or less than a displacement amount threshold value.

4. The ultrasound diagnostic apparatus according to claim 3 ,

wherein the third rate is a rate equal to the first rate or lower than the first rate.

5. The ultrasound diagnostic apparatus according to claim 4 ,

wherein the processor is further configured to control the transmission and reception circuit such that when the frame rate is the third rate, a resolution of the ultrasound image is higher than when the frame rate is the second rate.

6. The ultrasound diagnostic apparatus according to claim 3 ,

wherein the third rate is a rate equal to the second rate or higher than the second rate.

7. The ultrasound diagnostic apparatus according to claim 2 ,

wherein the processor is further configured to

measure any one of a diameter, a radius, a length of an outer circumference, or an area of the blood vessel which is detected, and

control the transmission and reception circuit such that the second rate becomes a higher rate as the diameter, the radius, the length of the outer circumference, or the area of the blood vessel is decreased.

8. The ultrasound diagnostic apparatus according to claim 3 ,

wherein the processor is further configured to

measure any one of a diameter, a radius, a length of an outer circumference, or an area of the blood vessel which is detected, and

control the transmission and reception circuit such that the second rate becomes a higher rate as the diameter, the radius, the length of the outer circumference, or the area of the blood vessel is decreased.

9. The ultrasound diagnostic apparatus according to claim 4 ,

wherein the processor is further configured to

measure any one of a diameter, a radius, a length of an outer circumference, or an area of the blood vessel which is detected, and

control the transmission and reception circuit such that the second rate becomes a higher rate as the diameter, the radius, the length of the outer circumference, or the area of the blood vessel is decreased.

10. The ultrasound diagnostic apparatus according to claim 5 ,

wherein the processor is further configured to

measure any one of a diameter, a radius, a length of an outer circumference, or an area of the blood vessel which is detected, and

control the transmission and reception circuit such that the second rate becomes a higher rate as the diameter, the radius, the length of the outer circumference, or the area of the blood vessel is decreased.

11. The ultrasound diagnostic apparatus according to claim 6 ,

wherein the processor is further configured to

measure any one of a diameter, a radius, a length of an outer circumference, or an area of the blood vessel which is detected, and

control the transmission and reception circuit such that the second rate becomes a higher rate as the diameter, the radius, the length of the outer circumference, or the area of the blood vessel is decreased.

12. The ultrasound diagnostic apparatus according to claim 2 ,

wherein the processor is further configured to

in the ultrasound image, detect a vein into which the insertion object is to be inserted as the blood vessel, and an artery together,

measure a distance between the vein and the artery, and

control the transmission and reception circuit such that the second rate becomes a higher rate as the distance between the vein and the artery is shorter.

13. The ultrasound diagnostic apparatus according to claim 3 ,

wherein the processor is further configured to

in the ultrasound image, detect a vein into which the insertion object is to be inserted as the blood vessel, and an artery together,

measure a distance between the vein and the artery, and

control the transmission and reception circuit such that the second rate becomes a higher rate as the distance between the vein and the artery is shorter.

14. The ultrasound diagnostic apparatus according to claim 4 ,

wherein the processor is further configured to

in the ultrasound image, detect a vein into which the insertion object is to be inserted as the blood vessel, and an artery together,

measure a distance between the vein and the artery, and

control the transmission and reception circuit such that the second rate becomes a higher rate as the distance between the vein and the artery is shorter.

15. The ultrasound diagnostic apparatus according to claim 5 ,

wherein the processor is further configured to

in the ultrasound image, detect a vein into which the insertion object is to be inserted as the blood vessel, and an artery together,

measure a distance between the vein and the artery, and

control the transmission and reception circuit such that the second rate becomes a higher rate as the distance between the vein and the artery is shorter.

16. The ultrasound diagnostic apparatus according to claim 6 ,

wherein the processor is further configured to

in the ultrasound image, detect a vein into which the insertion object is to be inserted as the blood vessel, and an artery together,

measure a distance between the vein and the artery, and

control the transmission and reception circuit such that the second rate becomes a higher rate as the distance between the vein and the artery is shorter.

17. The ultrasound diagnostic apparatus according to claim 7 ,

wherein the processor is further configured to

in the ultrasound image, detect a vein into which the insertion object is to be inserted as the blood vessel, and an artery together,

measure a distance between the vein and the artery, and

control the transmission and reception circuit such that the second rate becomes a higher rate as the distance between the vein and the artery is shorter.

18. The ultrasound diagnostic apparatus according to claim 1 , further comprising:

a display device configured to display the ultrasound image generated by the processor;

wherein the processor is further configured to highlight the blood vessel and the insertion object which are detected, on the display device.

19. The ultrasound diagnostic apparatus according to claim 2 , further comprising:

a display device configured to display the ultrasound image generated by the processor;

wherein the processor is further configured to highlight the blood vessel and the insertion object which are detected, on the display device.

20. A control method of an ultrasound diagnostic apparatus that displays an insertion object to be inserted into a blood vessel of a subject on an ultrasound image, the control method comprising:

causing a transducer array to transmit an ultrasound beam toward the subject, and processing a reception signal output from the transducer array that has received an ultrasound echo from the subject to generate a sound ray signal;

generating the ultrasound image based on the generated sound ray signal;

detecting the blood vessel and the insertion object by analyzing the generated ultrasound image; and

adjusting a frame rate at which the ultrasound image is generated, based on a relative positional relationship between the detected blood vessel and the detected insertion object.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2021
From: MATSUMOTO, TSUYOSHI
To: FUJIFILM CORPORATION
Reel/Frame 058447/0451 →
Priority Claims (1)
JP 2019-136914 · Jul 25, 2019 · national
Continuity (2)
Continuation PCTJP2020026074 · Jul 2, 2020
Related Publication 20220110609A1 · Apr 14, 2022