IP Library Granted Patent US 11,076,815
Granted Patent B2
US 11,076,815 · App. 16/614,516 · Granted Aug 3, 2021

X-ray CT apparatus

Inventors: Tsuyoshi Suzuki (Tokyo, JP); Ryouta Kohara (Tokyo, JP)
Assignee: HITACHI, LTD.
A61B6/032A61B6/4452A61B6/5205A61B6/541A61B6/56
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Quick Facts
Patent No.
US 11,076,815
App. No.
16/614,516
Granted
Aug 3, 2021
Kind
B2
Abstract

When image reconstruction by retrospective scanning is performed, the cache hit ratio is lowered due to transfer of not-used projection data to a cache memory. Accordingly, a processor generates rearranged projection data in which a first plurality of segments are extracted from original projection data written in a memory for saving original projection data 205, and stores the generated rearranged projection data into a main memory 212. The processor generates second view weights in which first view weights are made to correspond with the rearranged projection data ( 209 ). The rearranged projection data stored in the main memory 212 is previously transferred to the cache memory 213. The processor generates first tomographic image data with the rearranged projection data and the second view weights ( 214 ).

Claims (47)

1. An X-ray CT apparatus comprising:

an X-ray tube;

an X-ray detector, oppositely provided to the X-ray tube, that detects an X-ray generated with the X-ray tube and transmitted through a subject;

a main memory that stores projection data generated from spatial distribution of the transmission X-ray detected with the X-ray detector;

a cache memory to which the projection data is previously transferred from the main memory; and

a processor that, when the projection data used in reverse projection processing has been transferred to the cache memory, performs the reverse projection processing, with the projection data stored in the cache memory, and generates tomographic image data of the subject,

wherein a first plurality of segments are set based on an image position with respect to original projection data of continuous views from the X-ray detector, and first tomographic image data is generated by reverse-projecting projection data of the first plurality of segments in accordance with first view weights set by the first plurality of segments,

wherein the processor generates rearranged projection data in which the first plurality of segments are extracted from the original projection data, and stores the generated rearranged projection data into the main memory, and generates second view weights, in which the first view weights are made to correspond with the rearranged projection data,

wherein the rearranged projection data stored in the main memory is previously transferred to the cache memory, and

wherein the processor generates the first tomographic image data with the rearranged projection data and the second view weights.

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

wherein the original projection data is obtained by image sensing with the X-ray tube and the X-ray detector while the X-ray tube and the X-ray detector move in a helix orbital shape around the subject.

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

wherein the first plurality of segments are set based on a biological signal obtained from the subject.

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

wherein the biological signal is an electrocardiographic waveform, and the first plurality of segments are set based on a cardiac phase obtained from the electrocardiographic waveform.

5. An X-ray CT apparatus comprising:

an X-ray tube;

an X-ray detector, oppositely provided to the X-ray tube, that detects an X-ray generated with the X-ray tube and transmitted through a subject;

a main memory that stores projection data generated from spatial distribution of the transmission X-ray detected with the X-ray detector;

a cache memory to which the projection data is previously transferred from the main memory; and

a processor that, when the projection data used in reverse projection processing has been transferred to the cache memory, performs the reverse projection processing, with the projection data stored in the cache memory, and generates tomographic image data of the subject,

wherein a first plurality of segments are set based on an image position with respect to original projection data of continuous views from the X-ray detector, and first tomographic image data is generated by reverse-projecting projection data of the first plurality of segments in accordance with first view weights set by the first plurality of segments,

wherein a second plurality of segments are set based on an image position with respect to original projection data, and second tomographic image data is generated by reverse-projecting projection data of the second plurality of segments in accordance with second view weights set by the second plurality of segments,

wherein the processor generates rearranged projection data in which the first plurality of segments and the second plurality of segments are overlaid and extracted from the original projection data and stores the generated rearranged projection data into the main memory, and generates third view weights in which the first view weights are made to correspond with the rearranged projection data, and generates fourth view weights in which the second view weights are made to correspond with the rearranged projection data,

wherein the rearranged projection data stored in the main memory is previously transferred to the cache memory, and

wherein the processor generates the first tomographic image data with the rearranged projection data and the third view weights, and generates the second tomographic image data with the rearranged projection data and the fourth view weights.

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

wherein the original projection data is obtained by image sensing with the X-ray tube and the X-ray detector while the X-ray tube and the X-ray detector move in a helix orbital shape around the subject.

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

wherein the first plurality of segments and the second plurality of segments are set based on a biological signal obtained from the subject.

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

wherein the biological signal is an electrocardiographic waveform, and the first plurality of segments and the second plurality of segments are set based on a cardiac phase obtained from the electrocardiographic waveform.

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

wherein the image position of the first tomographic image data and the image position of the second tomographic image data are different from each other.

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

wherein the image position of the first tomographic image data and the image position of the second tomographic image data are the same, and the first plurality of segments and the second plurality of segments are set at different timings with respect to the biological signal.

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

wherein the biological signal is an electrocardiographic waveform, and the first plurality of segments are set based on a first cardiac phase obtained from the electrocardiographic waveform, and the second plurality of segments are set based on a second cardiac phase obtained from the electrocardiographic waveform.

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

wherein the processor divides a view range in correspondence with the number of tomographic images for which respective views included in the rearranged projection data are subjected to reverse projection, and

wherein the amount of the rearranged projection data transferred from the main memory to the cache memory is made different in correspondence with the view range.

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

wherein the amount of the rearranged projection data transferred to the cache memory is determined by subtracting the amount of tomographic image data corresponding to the number of tomographic images in the view range from the capacity of the cache memory allocated to the reverse projection processing.

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

wherein the processor is a multi-core processor, and

wherein the number of blocks of the tomographic image by block-dividing the tomographic image and located to respective multiple cores is larger than the number of the multiple cores.

Assignments (4)
MERGER Recorded Jan 10, 2025
From: FUJIFILM HEALTHCARE CORPORATION
To: FUJIFILM CORPORATION
Reel/Frame 069869/0951 →
MERGER Recorded Oct 11, 2024
From: FUJIFILM HEALTHCARE CORPORATION
To: FUJIFILM CORPORATION
Reel/Frame 069170/0453 →
CORRECTIVE ASSIGNMENT TO CORRECT THE THE PROPERTY AND APPLICATION NUMBERS PREVIOUSLY RECORDED AT REEL: 058026 FRAME: 0559. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jan 31, 2022
From: HITACHI LTD.
To: FUJIFILM HEALTHCARE CORPORATION
Reel/Frame 058917/0853 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2019
From: SUZUKI, TSUYOSHI; KOHARA, RYOUTA
To: HITACHI, LTD.
Reel/Frame 051036/0664 →