IP Library › Granted Patent US 11,471,121
Granted Patent B2
US 11,471,121 · App. 16/953,344 · Granted Oct 18, 2022

Radiography apparatus, method for operating radiography apparatus, and program for operating radiography apparatus

Inventor: Hidenori Matsuda (Kanagawa, JP)
Assignee: FUJIFILM CORPORATION
A61B6/54A61B6/5258A61B6/56G01R31/3647G06T5/002G06T5/009G06F3/14G06T2207/10116
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Quick Facts
Patent No.
US 11,471,121
App. No.
16/953,344
Granted
Oct 18, 2022
Kind
B2
Abstract

The radiography apparatus is driven by power supplied from the battery. In the radiography apparatus, a radiation source that emits radiation to a subject, a radiation detector that receives the radiation transmitted through the subject and outputs a radiographic image, and an image processing device that performs image processing on the radiographic image are integrated. A CPU of the image processing device acquires a remaining level of the battery. The CPU performs control to operate both a first processing block that performs a noise suppression process and a visibility improvement process as first image processing and a second processing block that performs a density correction process as second image processing in a case in which the remaining level of the battery is equal to or greater than a threshold value. In contrast, in a case in which the remaining level of the battery is less than the threshold value, the CPU performs control to stop an operation of the first processing block and to operate only the second processing block.

Claims (41)

1. A radiography apparatus that is driven by power supplied from a battery, the radiography apparatus comprising:

a radiation source that emits radiation to a subject;

a radiation detector that receives the radiation transmitted through the subject and outputs a radiographic image; and

an image processing device that performs image processing on the radiographic image,

wherein the radiation source, the radiation detector, and the image processing device are integrated,

the image processing includes first image processing that performs at least one of a noise suppression process suppressing noise of the radiographic image or a visibility improvement process improving visibility of the radiographic image and second image processing that performs a density correction process correcting densities of two or more radiographic images of the same subject which have a time difference therebetween,

the radiography apparatus includes at least one processor, and

the processor acquires a remaining level of the battery,

performs control to operate both a first processing block performing the first image processing and a second processing block performing the second image processing in a case in which the remaining level is equal to or greater than a predetermined threshold value, and

performs control to stop an operation of the first processing block and to operate only the second processing block in a case in which the remaining level is less than the threshold value.

2. The radiography apparatus according to claim 1 ,

wherein the processor outputs the radiographic image from the radiation detector at a predetermined frame interval, and

the density correction process is a process that stabilizes the density of the radiographic image of each frame.

3. The radiography apparatus according to claim 1 ,

wherein the processor performs control to display information indicating that the first image processing is not performed in a case in which the operation of the first processing block is stopped.

4. The radiography apparatus according to claim 1 ,

wherein the radiography apparatus has a first path from the radiation detector to the second processing block through the first processing block, and

a second path from the radiation detector to the second processing block without passing through the first processing block, and

the processor performs control to select the first path in a case in which the remaining level is equal to or greater than the threshold value and

performs control to select the second path in a case in which the remaining level is less than the threshold value.

5. The radiography apparatus according to claim 1 ,

wherein, in a case in which the remaining level is less than the threshold value, the processor stops the supply of the power from the battery to the first processing block to stop the operation of the first processing block.

6. The radiography apparatus according to claim 1 ,

wherein the first processing block includes a logic circuit, and

in a case in which the remaining level is less than the threshold value, the processor stops a switching operation of the logic circuit to stop the operation of the first processing block.

7. The radiography apparatus according to claim 1 ,

wherein the first processing block includes a memory that requires a refresh to replenish charge stored in a memory cell and temporarily stores intermediate data generated by processing,

the processor directs an external circuit to perform the refresh in a case in which the remaining level is equal to or greater than the threshold value, and

directs the memory to perform the refresh in a case in which the remaining level is less than the threshold value.

8. The radiography apparatus according to claim 1 ,

wherein, in a case in which the emission of the radiation is not performed for a predetermined period, the processor performs control to stop the operation of the first processing block and to operate only the second processing block, regardless of the remaining level.

9. A method for operating a radiography apparatus that is driven by power supplied from a battery and includes a radiation source that emits radiation to a subject, a radiation detector that receives the radiation transmitted through the subject and outputs a radiographic image, and an image processing device that performs image processing on the radiographic image, the radiation source, the radiation detector, and the image processing device being integrated,

wherein the image processing includes first image processing that performs at least one of a noise suppression process suppressing noise of the radiographic image or a visibility improvement process improving visibility of the radiographic image and second image processing that performs a density correction process correcting densities of two or more radiographic images of the same subject which have a time difference therebetween, and

the method comprises: an acquisition step of acquiring a remaining level of the battery;

a first operation control step of performing control to operate both a first processing block performing the first image processing and a second processing block performing the second image processing in a case in which the remaining level is equal to or greater than a predetermined threshold value; and

a second operation control step of performing control to stop an operation of the first processing block and to operate only the second processing block in a case in which the remaining level is less than the threshold value.

10. A non-transitory computer-readable storage medium storing a program for operating a radiography apparatus that is driven by power supplied from a battery and includes a radiation source that emits radiation to a subject, a radiation detector that receives the radiation transmitted through the subject and outputs a radiographic image, and an image processing device that performs image processing on the radiographic image, the radiation source, the radiation detector, and the image processing device being integrated,

wherein the image processing includes first image processing that performs at least one of a noise suppression process suppressing noise of the radiographic image or a visibility improvement process improving visibility of the radiographic image and second image processing that performs a density correction process correcting densities of two or more radiographic images which include the same object and have a time difference therebetween, and

the program causes a computer to function as: an acquisition unit that acquires a remaining level of the battery; and

an operation control unit that performs control to operate both a first processing block performing the first image processing and a second processing block performing the second image processing in a case in which the remaining level is equal to or greater than a predetermined threshold value, and

performs control to stop an operation of the first processing block and to operate only the second processing block in a case in which the remaining level is less than the threshold value.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2020
From: MATSUDA, HIDENORI
To: FUJIFILM CORPORATION
Reel/Frame 054643/0815 →
Priority Claims (1)
JP JP2019-239132 · Dec 27, 2019 · national
Continuity (1)
Related Publication 20210196223A1 · Jul 1, 2021