IP Library Granted Patent US 9,230,334
Granted Patent B2
US 9,230,334 · App. 13/431,097 · Granted Jan 5, 2016

X-ray CT apparatus and image processing method

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Quick Facts
Patent No.
US 9,230,334
App. No.
13/431,097
Granted
Jan 5, 2016
Kind
B2
Abstract

An X-ray CT apparatus according to an exemplary embodiment includes: a specifying unit that specifies the position of a lesion and the position of a surrounding site positioned in a surrounding of the lesion, from pieces of image data of the inside of the patient corresponding to the mutually-different temporal phases; a movement information calculating unit that calculates movement information related to movements of the lesion and the surrounding site, based on the positions of the lesion and the surrounding site specified by the specifying unit; and a relative relationship calculating unit that calculates a relative relationship between the movement information of the lesion and the movement information of the surrounding site calculated by the movement information calculating unit.

Claims (39)

1. An X-ray CT apparatus, comprising:

an image processing circuit configured to

generate pieces of image data of an inside of a patient corresponding to mutually-different temporal phases, based on X-rays having transmitted through the patient;

specify a position of a tumor and a position of a surrounding site positioned in a surrounding of the tumor, from the generated pieces of image data of the inside of the patient corresponding to the mutually-different temporal phases;

calculate movement information related to movements of the tumor and the surrounding site, based on the specified positions of the tumor and the surrounding site;

calculate a relative relationship between the calculated movement information of the tumor and the surrounding site;

and

calculate an infiltration degree indicating a degree by which the tumor has infiltrated into the surrounding site, based on a relative relationship between the movement information of the tumor and the surrounding site.

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

the image processing circuit calculates, for each of regions in the surrounding site, movement information of the region, and calculates, for each of the regions, an infiltration degree by which the tumor has infiltrated into the region, based on a relationship between the calculated movement information and the calculated movement information of the tumor.

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

the image processing circuit calculates a periodical positional change of the tumor and the surrounding site, as the movement information, and calculates the infiltration degree, based on a degree of similarity between the calculated periodical positional change of the tumor and the surrounding site.

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

the image processing circuit determines the degree of similarity between the positional changes of the tumor and the surrounding site, based on at least one of an amplitude difference, a cycle difference, and a phase difference between the calculated periodical positional change of the tumor and the surrounding site.

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

the image processing circuit calculates a distance between a gravity point of the tumor and a surrounding site to which the tumor is adhering, as the movement information, and calculates the infiltration degree, based on a temporal change in the distance between the gravity point of the tumor and the surrounding site.

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

when the surrounding site is a symmetrical site that is substantially bilaterally symmetrical in a human body, the image processing circuit calculates movement information of a contralateral site positioned opposite to the surrounding site, and calculates the infiltration degree after normalizing the movement information of the surrounding site, by using the calculated movement information of the contralateral site.

7. An image processing method, comprising:

generating, by an image processing circuit, pieces of image data of an inside of a patient corresponding to mutually-different temporal phases, based on X-rays having transmitted through the patient;

specifying, by the image processing circuit, a position of a tumor serving as a lesion and a position of a surrounding site positioned in a surrounding of the tumor, from the generated pieces of image data of the inside of the patient corresponding to the mutually-different temporal phases;

calculating, by the image processing circuit, movement information related to movements of the tumor and the surrounding site, based on the specified position of the tumor and the surrounding site;

calculating, by the image processing circuit, a relative relationship between the movement information of the tumor and the surrounding site; and

calculating, by the image processing circuit, an infiltration degree indicating a degree by which the tumor has infiltrated into the surrounding site, based on the relative relationship between the movement information of the tumor and the surrounding site.

8. The image processing method according to claim 7 , further comprising:

calculating, by the image processing circuit, for each of regions in the surrounding site, movement information of the region; and

calculating, by the image processing circuit, for each of the regions, an infiltration degree by which the tumor has infiltrated into the region, based on a relationship between the calculated movement information of the regions and the calculated movement information of the tumor.

9. The image processing method according to claim 7 , further comprising:

calculating, by the image processing circuit, a periodical positional change of the tumor and the surrounding site, as the movement information; and

calculating, by the image processing circuit, the infiltration degree, based on a degree of similarity between the calculated periodical positional change of the tumor and the surrounding site.

10. The image processing method according to claim 9 , further comprising:

determining, by the image processing circuit, the degree of similarity between the positional changes of the tumor and the surrounding site, based on at least one of an amplitude difference, a cycle difference, and a phase difference between the calculated periodical positional change of the tumor and the surrounding site.

11. The image processing method according to claim 7 , further comprising:

calculating, by the image processing circuit, a distance between a gravity point of the tumor and a surrounding site to which the tumor is adhering, as the movement information, and

calculating, by the image processing circuit, the infiltration degree, based on a temporal change in the distance between the gravity point of the tumor and the surrounding site.

12. The image processing method according to claim 7 , further comprising:

when the surrounding site is a symmetrical site that is substantially bilaterally symmetrical in a human body,

calculating, by the image processing circuit, movement information of a contralateral site positioned opposite to the surrounding site, and

calculating, by the image processing circuit, the infiltration degree after normalizing the movement information of the surrounding site, by using the calculated movement information of the contralateral site.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2016
From: KABUSHIKI KAISHA TOSHIBA
To: TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 038891/0693 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 27, 2012
From: FUJISAWA, YASUKO; TSUKAGOSHI, SHINSUKE; MURAMATSU, SHINJI; ISHIZAKA, TAKUMI
To: KABUSHIKI KAISHA TOSHIBA; TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 027936/0728 →