X-ray CT apparatus

US9119560B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9119560-B2
Application numberUS-201113819196-A
CountryUS
Kind codeB2
Filing dateSep 1, 2011
Priority dateSep 7, 2010
Publication dateSep 1, 2015
Grant dateSep 1, 2015

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Abstract

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An X-ray CT apparatus of the present invention includes an image reconstruction unit that, according to scanning conditions, acquires an irradiated X-ray image which is the distribution of the irradiation intensity of X-rays irradiated to an object by an X-ray irradiation unit, performs projection conversion of the irradiated X-ray image and a reconstructed image, and generates an exposure dose image, which is an image showing the distribution of an exposure dose of the object, and also calculates the exposure dose using the projection-converted reconstructed image and an irradiated X-ray image corresponding to a generation region of the reconstructed image.

First claim

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The invention claimed is: 1. An X-ray CT apparatus comprising: an X-ray irradiation unit that irradiates X-rays from periphery of an object; an X-ray detection unit that detects X-rays transmitted through the object as X-ray information; an image reconstruction unit that generates a reconstructed image of the object from the X-ray information and that, according to scanning conditions, acquires an irradiated X-ray image which is a distribution of an irradiation intensity of X-rays irradiated to the object by the X-ray irradiation unit, performs projection conversion of the irradiated X-ray image and the reconstructed image, and generates an exposure dose image, which is an image showing a distribution of an exposure dose of the object, and also calculates the exposure dose using the projection-converted reconstructed image and an irradiated X-ray image corresponding to a generation region of the reconstructed image; and a display unit that displays the exposure dose image and the exposure dose, wherein the image reconstruction unit generates irradiation dose data by performing time integration of the irradiated X-ray image at each time at predetermined intervals from start of irradiation to end of irradiation, and generates an image, which shows a distribution of a dose of X-rays irradiated to the object, on the basis of the irradiation dose data, wherein the image reconstruction unit generates an attenuation coefficient image, which is an image showing a distribution of an attenuation coefficient, by converting a CT value of the reconstructed image into an attenuation coefficient on the basis of information indicating a relationship between the CT value and the attenuation coefficient, and wherein the image reconstruction unit generates projection data of the attenuation coefficient image and projection data of the irradiation dose image by performing forward projection processing, which is a transformation from a Cartesian coordinate system to a projection coordinate system, on the attenuation coefficient image and the irradiation dose image, and generates an irradiation dose correction image, which is an image showing a reduction result of the amount of attenuation with respect to the irradiation dose image, by performing reverse attenuation correction processing on the projection data of the irradiation dose image using the projection data of the attenuation coefficient image and performing reverse projection processing, which is a transformation from the projection coordinate system to the Cartesian coordinate system, on projection data of the irradiation dose image after the reverse attenuation correction processing. 2. The X-ray CT apparatus according to claim 1 , wherein the image reconstruction unit generates a cumulative exposure dose image, which is an image showing a distribution of a cumulative exposure dose of the object, on the basis of a plurality of the exposure dose images. 3. The X-ray CT apparatus according to claim 1 , wherein the display unit displays the irradiation dose image so as to overlap another image of the object. 4. The X-ray CT apparatus according to claim 1 , wherein the image reconstruction unit generates a cumulative irradiation dose image, which is an image showing a distribution of a dose of X-rays irradiated to the object in rotation scanning and stationary scanning, by performing time integration of the irradiated X-ray information regarding rotation scanning and stationary scanning of the irradiated X-ray information. 5. The X-ray CT apparatus according to claim 1 , wherein the image reconstruction unit generates a stationary scanning irradiation dose image, which is an image showing a distribution of a dose of X-rays irradiated to the object in stationary scanning, by performing time integration of the irradiated X-ray information regarding stationary scanning of the irradiated X-ray information. 6. The X-ray CT apparatus according to claim 1 , wherein the image reconstruction unit calculates one of CTDI, DLP, CTDIw, and CTDIvol on the basis of the irradiation dose image. 7. The X-ray CT apparatus according to claim 6 , wherein the image reconstruction unit generates an absorbed dose image, which is an image showing a distribution of a dose of X-rays absorbed into the object, on the basis of a difference between the irradiation dose image and the irradiation dose correction image. 8. The X-ray CT apparatus according to claim 7 , wherein the image reconstruction unit calculates an exposure dose for each organ and/or tissue by identifying a region of an organ and/or tissue in the reconstructed image and collating the region with the absorbed dose image. 9. The X-ray CT apparatus according to claim 8 , wherein the display unit displays the exposure dose for each organ and/or tissue. 10. The X-ray CT apparatus according to claim 7 , wherein the image reconstruction unit calculates an exposure dose for each part by identifying a region of each part in the reconstructed image and collating the region with the absorbed dose image. 11. The X-ray CT apparatus according to claim 10 , wherein the display unit displays the exposure dose for each part. 12. An X-ray CT apparatus comprising: an X-ray irradiation unit that irradiates X-rays from periphery of an object; an X-ray detection unit that detects X-rays transmitted through the object as X-ray information; an image reconstruction unit that generates a reconstructed image of the object from the X-ray information and that, according to scanning conditions, acquires an irradiated X-ray image which is a distribution of an irradiation intensity of X-rays irradiated to the object by the X-ray irradiation unit, performs projection conversion of the irradiated X-ray image and the reconstructed image, and generates an exposure dose image, which is an image showing a distribution of an exposure dose of the object, and also calculates the exposure dose using the projection-converted reconstructed image and an irradiated X-ray image corresponding to a generation region of the reconstructed image; and a display unit that displays the exposure dose image and the exposure dose, wherein the image reconstruction unit generates irradiation dose data by performing time integration of the irradiated X-ray image at each time at predetermined intervals from start of irradiation to end of irradiation, and generates an image, which shows a distribution of a dose of X-rays irradiated to the object, on the basis of the irradiation dose data, wherein the image reconstruction unit generates an attenuation coefficient image, which is an image showing a distribution of an attenuation coefficient, by converting a CT value of the reconstructed image into an attenuation coefficient on the basis of information indicating a relationship between the CT value and the attenuation coefficient, and wherein the image reconstruction unit generates an attenuation ratio image, which is an image showing a distribution of an attenuation ratio, from a stationary scanning image on the basis of information indicating a reference attenuation value, and generates a stationary scanning absorbed dose image, which is an image showing a distribution of a dose of X-rays absorbed into the object in stationary scanning, by performing reverse attenuation correction processing on the stationary scanning irradiation dose image using the attenuation ratio image. 13. The X-ray CT apparatus according to claim 12 , wherein the image reconstruction unit generates a cumulative exposure dose image, which is an image showing a distribution of a cumulative exposure dose of the object, on the basis of a plurality of the exposure dose images.

Assignees

Inventors

Classifications

  • Image preprocessing, e.g. calibration, positioning of sources or scatter correction · CPC title

  • Transmission computed tomography [CT] · CPC title

  • A61B6/10Primary

    Safety means specially adapted therefor · CPC title

  • Fan-beams · CPC title

  • Displaying means of special interest · CPC title

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What does patent US9119560B2 cover?
An X-ray CT apparatus of the present invention includes an image reconstruction unit that, according to scanning conditions, acquires an irradiated X-ray image which is the distribution of the irradiation intensity of X-rays irradiated to an object by an X-ray irradiation unit, performs projection conversion of the irradiated X-ray image and a reconstructed image, and generates an exposure dose…
Who is the assignee on this patent?
Kohara Ryota, Hitachi Medical Corp
What technology area does this patent fall under?
Primary CPC classification A61B6/10. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Sep 01 2015 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).