IP Library › Granted Patent US 11,079,341
Granted Patent B2
US 11,079,341 · App. 16/580,269 · Granted Aug 3, 2021

Radiation imaging apparatus, control apparatus, and control methods and storage mediums therefor

Inventor: Shimpei Tezuka (Oyama, JP)
Assignee: CANON KABUSHIKI KAISHA
G01N23/02G01T1/208G01T1/247
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Quick Facts
Patent No.
US 11,079,341
App. No.
16/580,269
Granted
Aug 3, 2021
Kind
B2
Abstract

A radiation imaging apparatus comprising: an imaging unit configured to capture a radiation image; a generation unit configured to generate each of thinned images of a plurality of radiation images captured by the imaging unit; and a transfer unit configured to wirelessly transfer a plurality of thinned images, wherein the transfer unit transfers each of remaining untransferred images obtained by excluding the thinned images from the radiation images after completion of the transfer of the plurality of thinned images.

Claims (49)

1. A radiation imaging apparatus, comprising:

an imaging unit configured to obtain a plurality of radiation images as a moving image by performing imaging a plurality of times;

a generation unit configured to generate each of thinned images of the plurality of radiation images obtained as the moving image by the imaging unit; and

a transfer unit configured to wirelessly transfer a plurality of thinned images in real time, wherein

the transfer unit transfers each of remaining untransferred images obtained by excluding each of the thinned images corresponding to each of the radiation images from each of the radiation images after completion of the transfer of the plurality of thinned images.

2. The radiation imaging apparatus according to claim 1 , wherein the transfer unit transfers the plurality of untransferred images in the same order as an order of transfer of the plurality of thinned images.

3. The radiation imaging apparatus according to claim 1 , wherein the transfer unit changes a transfer frame rate of the plurality of thinned images in accordance with a wireless communication status.

4. The radiation imaging apparatus according to claim 3 , wherein in a wireless communication status in which it is not possible to wirelessly transfer the plurality of thinned images in real time, the transfer unit decreases the transfer frame rate of the plurality of thinned images.

5. The radiation imaging apparatus according to claim 1 , wherein the transfer unit transfers the plurality of thinned images whose sizes have been respectively changed in accordance with the wireless communication status.

6. The radiation imaging apparatus according to claim 5 , wherein in a wireless communication status in which it is not possible to wirelessly transfer the plurality of thinned images in real time, the transfer unit transfers the plurality of thinned images whose sizes have been respectively changed to smaller sizes.

7. The radiation imaging apparatus according to claim 1 , further comprising an acceptance unit configured to accept, in a wireless communication status in which it is not possible to wirelessly transfer the plurality of thinned images in real time, selection of whether to decrease a transfer frame rate of the plurality of thinned images or change sizes of the plurality of thinned images to smaller sizes.

8. The radiation imaging apparatus according to claim 1 , wherein if a frame number capable of identifying an imaging ordinal number assigned to each of the plurality of radiation images matches a predetermined number, the transfer unit transfers a thinned image corresponding to the frame number among the plurality of thinned images, and if the frame number does not match the predetermined number, the transfer unit does not transfer the thinned image corresponding to the frame number among the plurality of thinned images.

9. The radiation imaging apparatus according to claim 8 , wherein the predetermined number is defined by the imaging unit for each imaging technique.

10. The radiation imaging apparatus according to claim 8 , wherein the radiation imaging apparatus is configured to operate in a plurality of imaging modes each having at least one of an image size parameter, a binning parameter, a frame rate parameter, and an output gain parameter, and

the predetermined number is defined for each imaging mode.

11. The radiation imaging apparatus according to claim 1 , wherein if a wireless communication unit to be used to transfer the plurality of thinned images is not transferring a thinned image among the plurality of thinned images, the transfer unit transfers another thinned image among the plurality of thinned images, and

if the wireless communication unit is transferring the thinned image, the transfer unit does not transfer the other thinned image.

12. The radiation imaging apparatus according to claim 1 , wherein the transfer unit does not transfer the thinned image if an elapsed time since last execution of transfer of the thinned image does not exceed a period of a transfer frame rate.

13. The radiation imaging apparatus according to claim 12 , wherein the transfer unit transfers the thinned image if the elapsed time since the last execution of the transfer of the thinned image exceeds the period of the transfer frame rate and a wireless communication unit to be used to transfer the thinned image is not transferring another thinned image.

14. The radiation imaging apparatus according to claim 1 , wherein the transfer unit does not transfer the plurality of thinned images if a positional relationship between the radiation imaging apparatus and a radiation source configured to irradiate the radiation imaging apparatus with radiation does not satisfy a predetermined positional relationship.

15. The radiation imaging apparatus according to claim 1 , wherein the transfer unit transfers the plurality of untransferred images during a period in which the imaging unit does not perform imaging.

16. A control apparatus, comprising:

a reception unit configured to wirelessly receive each of thinned images in real time corresponding to a plurality of radiation images obtained by imaging unit that is configured to obtain a plurality of radiation images as a moving image by performing imaging a plurality of times; and

a control unit configured to display the plurality of thinned images as a moving image on a display device, wherein

the reception unit receives each of remaining untransferred images obtained by excluding each of the thinned images corresponding to each of the radiation images from each of the radiation images after completion of the reception of the plurality of thinned images, and

the control unit displays the plurality of radiation images as a moving image on the display device after the reception of the untransferred images.

17. The control apparatus according to claim 16 , wherein the imaging unit changes a transfer frame rate or sizes of the plurality of thinned images in accordance with a wireless communication status.

18. The control apparatus according to claim 16 , wherein during the reception of the plurality of untransferred images, the control apparatus performs loop reproduction to repeatedly display the received thinned images as the moving image on the display device.

19. The control apparatus according to claim 16 , wherein the reception unit receives the plurality of untransferred images stepwise, and

the control unit executes control to increase a resolution of an image stepwise by displaying, as a moving image, images including the thinned images and received parts of the plurality of untransferred images.

20. The control apparatus according to claim 16 , wherein during the reception of the plurality of untransferred images, in response to the reception of the untransferred image corresponding to the last received thinned image, the control unit continuously displays on the display device a still image of the radiation image corresponding to the last received thinned image after displaying the plurality of thinned images as the moving image.

21. A control method for a radiation imaging apparatus including an imaging unit configured to obtain a plurality of radiation images as a moving image by performing imaging a plurality of times, the method comprising:

generating each of thinned images of the plurality of radiation images obtained as the moving image by the imaging unit; and

wirelessly transferring a plurality of thinned images in real time, wherein

in the transferring, each of remaining untransferred images obtained by excluding each of the thinned images corresponding to each of the radiation images from each of the radiation images is transferred after completion of the transfer of the plurality of thinned images.

22. A control method for a control apparatus, comprising:

wirelessly receiving in real time each of thinned images corresponding to a plurality of radiation images obtained by an imaging unit that is configured to obtain a plurality of radiation images as a moving image by performing imaging a plurality of times; and

displaying the plurality of thinned images as a moving image on a display device, wherein

in the receiving, each of remaining untransferred images obtained by excluding each of the thinned images corresponding to each of the radiation images from each of the radiation images is received after completion of the reception of the plurality of thinned images, and

in the displaying, after the reception of the untransferred images, the plurality of radiation images are displayed as a moving image on the display device.

23. A non-transitory computer-readable storage medium storing a computer program for causing a computer to execute a control method for a radiation imaging apparatus including an imaging unit configured to obtain a plurality of radiation images as a moving image by performing imaging a plurality of times, the method comprising:

generating each of thinned images of the plurality of radiation images obtained as the moving image by the imaging unit; and

wirelessly transferring a plurality of thinned images in real time, wherein

in the transferring, each of remaining untransferred images obtained by excluding each of the thinned images corresponding to each of the radiation images from each of the radiation images is transferred after completion of the transfer of the plurality of thinned images.

24. A non-transitory computer-readable storage medium storing a computer program for causing a computer to execute a control method for a control apparatus, comprising:

wirelessly receiving in real time each of thinned images corresponding to a plurality of radiation images obtained by an imaging unit that is configured to obtain a plurality of radiation images as a moving image by performing imaging a plurality of times; and

displaying the plurality of thinned images as a moving image on a display device, wherein

in the receiving, each of remaining untransferred images obtained by excluding the each of thinned images corresponding to each of the radiation images from each of the radiation images is received after completion of the reception of the plurality of thinned images, and

in the displaying, after the reception of the untransferred images, the plurality of radiation images are displayed as a moving image on the display device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 11, 2019
From: TEZUKA, SHIMPEI
To: CANON KABUSHIKI KAISHA
Reel/Frame 050964/0635 →
Priority Claims (1)
JP JP2017-090235 · Apr 28, 2017 · national
Continuity (2)
Continuation PCTJP2018006692 · Feb 23, 2018
Related Publication 20200018710A1 · Jan 16, 2020