IP Library Granted Patent US 11,033,245
Granted Patent B2
US 11,033,245 · App. 15/589,205 · Granted Jun 15, 2021

X-ray CT apparatus and X-ray detector

Inventors: Yoji Kudo (Otawara, JP); Masahiko Yamazaki (Utsunomiya, JP); Takashi Kanemaru (Yaita, JP); Shuya Nambu (Nasushiobara, JP); Machiko Iso (Otawara, JP)
Assignee: Canon Medical Systems Corporation
A61B6/54A61B6/032A61B6/4233H04N5/32H04N5/343H04N5/347H04N5/37457A61B6/06A61B6/5205
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Quick Facts
Patent No.
US 11,033,245
App. No.
15/589,205
Granted
Jun 15, 2021
Kind
B2
Abstract

In one embodiment, an X-ray CT apparatus includes: an X-ray detector equipped with a plurality of detection elements each of which is configured to output an X-ray signal in accordance with X-rays passing through an object; and a scan controller configured to acquire X-ray signals in each of a first mode and a second mode in one scan by switching between the first mode and the second mode, the first mode being a mode of acquiring high-resolution data which are respective X-ray signals outputted from the plurality of detection elements, the second mode being a mode of acquiring normal-resolution data in which X-ray signals outputted from some of the plurality of detection elements are integrated.

Claims (50)

1. An X-ray CT apparatus comprising:

an X-ray detector equipped with a plurality of detection elements each of which is configured to output an X-ray signal in accordance with X-rays passing through an object; and

a scan controller configured to acquire X-ray signals in each of a first mode and a second mode during a same scan by switching between the first mode and the second mode during the same scan without changing a size of an X-ray irradiation area on the X-ray detector,

wherein, in the first mode, the scan controller acquires each X-ray signal outputted from each of the plurality of detection elements as high-resolution data, and in the second mode, the scan controller integrates X-ray signals outputted from some of the plurality of detection elements and acquires the integrated X-ray signals as normal-resolution data.

2. The X-ray CT apparatus according to claim 1 ,

wherein the X-ray detector includes an arrangement region where the plurality of detection elements are arranged; and

a part of the arrangement region is set to a high-resolution region for acquiring the high-resolution data and rest of the arrangement region is set to a normal-resolution region for acquiring the normal-resolution data.

3. The X-ray CT apparatus according to claim 1 ,

wherein the X-ray detector includes an arrangement region where the plurality of detection elements are arranged; and

entirety of the arrangement region is set to a high-resolution region from which the high-resolution data can be acquired.

4. The X-ray CT apparatus according to claim 2 ,

wherein the plurality of detection elements are arrayed in columns in a column direction and in rows in a channel direction; and

the scan controller is configured to set a scan mode to each of the plurality of detection elements in such a manner that the scan mode is unified between detection elements of each column but differs between detection elements of each row.

5. The X-ray CT apparatus according to claim 2 ,

wherein the plurality of detection elements are arrayed in columns in a column direction and in rows in a channel direction; and

the scan controller is configured to set a scan mode to each of the plurality of detection elements in such a manner that the scan mode is unified between detection elements of each row but differs between detection elements of each column.

6. The X-ray CT apparatus according to claim 2 ,

wherein the plurality of detection elements are arrayed in columns in a column direction and in rows in a channel direction; and

the scan controller is configured to set a scan mode to each of the plurality of detection elements in such a manner that the scan mode differs between detection elements of each row and differs between detection elements of each column.

7. The X-ray CT apparatus according to claim 3 ,

wherein the plurality of detection elements are arrayed in columns in a column direction and in rows in a channel direction; and

the scan controller is configured to set a scan mode to each of the plurality of detection elements in such a manner that the scan mode is unified between detection elements of each column but differs between detection elements of each row.

8. The X-ray CT apparatus according to claim 3 ,

wherein the plurality of detection elements are arrayed in columns in a column direction and in rows in a channel direction; and

the scan controller is configured to set a scan mode to each of the plurality of detection elements in such a manner that the scan mode is unified between detection elements of each row but differs between detection elements of each column.

9. The X-ray CT apparatus according to claim 3 ,

wherein the plurality of detection elements are arrayed in columns in a column direction and in rows in a channel direction; and

the scan controller is configured to set a scan mode to each of the plurality of detection elements in such a manner that the scan mode differs between detection elements of each row and differs between detection elements of each column.

10. The X-ray CT apparatus according to claim 4 ,

wherein the scan controller is configured to acquire the high-resolution data and the normal-resolution data by switching between the first mode and the second mode for each of the plurality of detection elements depending on a view, in one scan in which X-ray signals are acquired at respective views.

11. The X-ray CT apparatus according to claim 5 ,

wherein the scan controller is configured to acquire the high-resolution data and the normal-resolution data by switching between the first mode and the second mode for each of the plurality of detection elements depending on a view, in one scan in which X-ray signals are acquired at respective views.

12. The X-ray CT apparatus according to claim 6 ,

wherein the scan controller is configured to acquire the high-resolution data and the normal-resolution data by switching between the first mode and the second mode for each of the plurality of detection elements depending on a view, in one scan in which X-ray signals are acquired at respective views.

13. The X-ray CT apparatus according to claim 7 ,

wherein the scan controller is configured to acquire the high-resolution data and the normal-resolution data by switching between the first mode and the second mode for each of the plurality of detection elements depending on a view, in one scan in which X-ray signals are acquired at respective views.

14. The X-ray CT apparatus according to claim 8 ,

wherein the scan controller is configured to acquire the high-resolution data and the normal-resolution data by switching between the first mode and the second mode for each of the plurality of detection elements depending on a view, in one scan in which X-ray signals are acquired at respective views.

15. The X-ray CT apparatus according to claim 9 ,

wherein the scan controller is configured to acquire the high-resolution data and the normal-resolution data by switching between the first mode and the second mode for each of the plurality of detection elements depending on a view, in one scan in which X-ray signals are acquired at respective views.

16. The X-ray CT apparatus according to claim 1 ,

wherein the scan controller is configured to switch between the first mode and the second mode for each of the plurality of detection elements, depending on X-ray signal intensity acquired by the X-ray detector.

17. The X-ray CT apparatus according to claim 1 , further comprising:

a memory circuit configured to store an imaging condition; and

processing circuitry configured to compute a timing at which the first mode and the second mode are switched, based on the imaging condition,

wherein the scan controller is configured to switch between the first mode and the second mode based on the timing computed by the processing circuitry.

18. An X-ray detection device comprising:

a plurality of detection elements each of which is configured to detect X-rays and output an X-ray signal; and

a data acquisition circuit configured to acquire X-ray signals in each of a first mode and a second mode during a same scan by switching between the first mode and the second mode during the same scan without changing a size of an X-ray irradiation area on the X-ray detection device,

wherein, in the first mode, a scan controller acquires each X-ray signal outputted from each of the plurality of detection elements as high-resolution data, and in the second mode, the scan controller integrates X-ray signals outputted from some of the plurality of detection elements and acquires the integrated X-ray signals as normal-resolution data.

Assignments (2)
CHANGE OF NAME Recorded Jul 26, 2019
From: TOSHIBA MEDICAL SYSTEMS CORPORATION
To: CANON MEDICAL SYSTEMS CORPORATION
Reel/Frame 049879/0342 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 8, 2017
From: KUDO, YOJI; YAMAZAKI, MASAHIKO; KANEMARU, TAKASHI; NAMBU, SHUYA; ISO, MACHIKO
To: TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 042276/0267 →
Priority Claims (1)
JP JP2016-100316 · May 19, 2016 · national
Continuity (1)
Related Publication 20170332990A1 · Nov 23, 2017