IP Library › Granted Patent US 12,109,052
Granted Patent B2
US 12,109,052 · App. 17/642,257 · Granted Oct 8, 2024

Radiographic imaging device and radiographic treatment device

Inventor: Rika Baba (Tokyo, JP)
Assignee: HITACHI HIGH-TECH CORPORATION
A61B6/032G06T11/003A61B6/0407
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Quick Facts
Patent No.
US 12,109,052
App. No.
17/642,257
Granted
Oct 8, 2024
Kind
B2
Abstract

Artifacts in a tomographic image of a subject including a cyclically moving object to be treated are reduced. A radiographic imaging device includes: a gantry that is equipped with two sets of radiation sources and detectors which are used in pairs, the gantry rotating the radiation sources and the detectors around a subject; and a reconstruction section that reconstructs a tomographic image of the subject based on multiple projection images generated from output of the detectors. The radiographic imaging device further includes: a phase calculation section; a divide section that divides, on a phase-by-phase basis, first projection image groups of multiple projection images acquired by the first set, and similarly second projection image groups acquired by the second set; and a condition setting section. The reconstruction section reconstructs a tomographic image by use of the first and second projection image groups that are placed in the same phase.

Claims (31)

1. A radiographic imaging device comprising:

a gantry that is equipped with two sets of radiation sources from which radiation is emitted to a subject and detectors that detect the radiation passing through the subject, the radiation sources and the detectors being used in pairs, the gantry rotating the radiation sources and the detectors around the subject; and

a central processing unit (CPU) configured to:

reconstruct a tomographic image of the subject based on multiple projection images generated from output of the detectors,

calculate a plurality of motion phases based on cyclic motion of the subject,

divide, on a phase-by-phase basis, first projection image groups of multiple projection images acquired by the first set of the two sets, and second projection image groups of multiple projection images acquired by the second set of the two sets,

set a rotational speed of the gantry as an imaging condition such that a first projection image group of the first projection image groups and a second projection image group of the second projection image groups mutually compensate for spacing between respective projection angles of the first set of radiation sources and the second set of radiation sources, the first projection image group and the second projection image group being in a same phase, and

reconstruct the tomographic image by use of the first projection image group and the second projection image group that are in the same phase.

2. The radiographic imaging device according to claim 1 ,

wherein the rotational speed is set based on a cycle of the motion and an angle formed by the first set and second set of radiation sources and detectors.

3. The radiographic imaging device according to claim 1 ,

wherein the CPU is configured to set an irradiation timing of radiation as an imaging condition, and

wherein the irradiation timing is set based on a cycle of the motion.

4. The radiographic imaging device according to claim 1 ,

wherein the CPU is configured to set a projection angle range of each projection image to allow the first projection image group and the second projection image group that are placed in the same phase, to implement mutual compensation for the spacing between the respective projection angles.

5. The radiographic imaging device according to claim 1 ,

wherein the CPU is configured to set a projection angle range of each projection image to create a partial overlap between the first projection image group and the second projection image group that are placed in the same phase.

6. The radiographic imaging device according to claim 1 ,

wherein the imaging conditions include an angle formed by the first set and second set of radiation sources and detectors, and

wherein the angle formed is set based on a cycle of the motion and a rotational speed of the gantry.

7. The radiographic imaging device according to claim 1 , further comprising a display device to display timing for urging the subject to breathe,

wherein the timing is set based on an angle formed by the first set and second set of radiation sources and detectors and a rotational speed of the gantry.

8. A radiographic treatment device, comprising:

the radiographic imaging device according to claim 1 ; and

a treatment radiation source from which treatment radiation is emitted to an object to be treated within the subject.

9. The radiographic imaging device according to claim 2 ,

wherein when the angle formed is Δθ, the cycle is T, and a natural number is n, the rotational speed ρ is expressed by

ρ=2Δθ/( T ·(2 n− 1)).

10. The radiographic imaging device according to claim 3 ,

wherein when the cycle of the motion is T, the irradiation timing t of radiation is expressed by

t= 2 T /(2 n− 1).

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 14, 2024
From: HITACHI, LTD.
To: HITACHI HIGH-TECH CORPORATION
Reel/Frame 067728/0601 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 11, 2022
From: BABA, RIKA
To: HITACHI, LTD.
Reel/Frame 059233/0442 →
Priority Claims (1)
JP 2019-171361 · Sep 20, 2019 · national
Continuity (1)
Related Publication 20220313180A1 · Oct 6, 2022
Cited By (1)
US 12,654,032