IP Library Granted Patent US 7,697,740
Granted Patent B2
US 7,697,740 · App. 11/551,474 · Granted Apr 13, 2010

Medical image processing system and medical image processing method

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Quick Facts
Patent No.
US 7,697,740
App. No.
11/551,474
Granted
Apr 13, 2010
Kind
B2
Abstract

IVR-CT apparatus has an angio-image obtaining unit, an angio-image imaging direction obtaining unit, a CT-image obtaining unit, a blood vessel part extracting unit, a projected image generating unit and a display control unit. The angio-image obtaining unit obtains a required angio-image from multiple chronological angio-images. The angio-image imaging direction obtaining unit obtains a direction of imaging as incidental information included in data on the required angio-image. The CT-image obtaining unit obtains a three-dimensional CT-image corresponding to the required angio-image. The blood vessel part extracting unit extracts a blood vessel part in the three-dimensional CT-image. The projected image generating unit generates a three-dimensional projected image by projecting the blood vessel part, and a three-dimensional projected image corresponding to a direction of a projection after a manual operation operates the direction of the projection. The display control unit makes display the three-dimensional projection image and the angio-image one over another.

Claims (52)

1. A medical image processing system comprising:

an angio-image obtaining unit for obtaining a required angio-image from multiple chronological angio-images;

an angio-image imaging direction obtaining unit for obtaining a direction of imaging as incidental information included in data on the required angio-image;

a CT-image obtaining unit for obtaining a three-dimensional CT-image corresponding to the required angio-image;

a blood vessel part extracting unit for extracting a blood vessel part in the three-dimensional CT-image;

a projected image generating unit for generating a three-dimensional projected image by projecting the blood vessel part, and for generating a three-dimensional projected image corresponding to a direction of a projection after a manual operation operates the direction of the projection; and

a display control unit for making display the three-dimensional projected image and the angio-image.

2. A medical image processing system according to claim 1 , wherein the three-dimensional projected image is considered to be a three-dimensional CT curved-planar projected image.

3. A medical image processing system according to claim 1 , further comprising a direction-of-vision correspondence information generating unit for generating a direction-of-vision correspondence information including a correspondence established between the direction of the projection after it was changed based on the manual operation and the direction of imaging, wherein a position of a C-arm on an angio apparatus be controlled so as to obtain the direction of imaging corresponding to the direction of the projection after it was changed based on the manual operation and the direction-of-vision correspondence information.

4. A medical image processing system according to claim 1 , further comprising an angiogram extracting unit for extracting an angiogram contained in the required angio-image, wherein the display control unit makes display the three-dimensional projected image corresponding to the direction of the projection after it was changed based on the manual operation and the angiogram one over another.

5. A medical image processing system according to claim 1 , further comprising a blood vessel characteristic evaluating unit for evaluating a characteristic of a blood vessel, based on the three-dimensional projected image corresponding to the direction of the projection after it was changed based on the manual operation.

6. A medical image processing system according to claim 1 , wherein the CT-image obtaining unit obtains the three-dimensional CT-image that a heartbeat phase is the nearest to the required angio-image of indispensability.

7. A medical image processing system comprising:

an angio-image obtaining unit for obtaining a required angio-image from multiple chronological angio-images;

an angio-image imaging direction obtaining unit for obtaining a direction of imaging as incidental information included in data on the required angio-image;

a CT-image obtaining unit for obtaining a three-dimensional CT-image corresponding to the required angio-image;

a blood vessel part extracting unit for extracting a blood vessel part in the three-dimensional CT-image;

a direction of projection defining unit for defining a direction of a projection;

a projected image generating unit for generating a three-dimensional projected image by projecting the blood vessel part in the direction of the projection;

an angiogram extracting unit for extracting an angiogram contained in the required angio-image; and

a display control unit for making display the three-dimensional projected image and the angiogram,

wherein the direction of projection defining unit defines the direction of the projection of the three-dimensional projected image corresponding to the direction of imaging of the required angio-image, by comparing the blood vessel part and the angiogram.

8. A medical image processing system according to claim 7 , wherein the three-dimensional projected image is considered to be a three-dimensional CT curved-planar projected image.

9. A medical image processing system according to claim 7 , wherein the projected image generating unit generates a three-dimensional projected image corresponding to a direction of a projection after it was changed based on a manual operation, and the display control unit makes display the three-dimensional projected image corresponding to the direction of the projection after it was changed based on the manual operation and the angiogram one over another.

10. A medical image processing system according to claim 7 , wherein the direction of projection defining unit has a barycenter calculating unit for calculating a barycenter of the three-dimensional projected image and a barycenter of the angiogram, and an automatic registering unit for rotating and registering the three-dimensional projected image such that the barycenter of the three-dimensional projected image and the barycenter of the angiogram can be registered, wherein the projected image generating unit generates the three-dimensional projected image corresponding to the direction of the projection after it was registered.

11. A medical image processing system according to claim 10 , further comprising a direction-of-vision correspondence information generating unit for generating a direction-of-vision correspondence information including a correspondence established between the direction of the projection after it was registered and the direction of imaging, wherein a position of a C-arm on an angio apparatus be controlled so as to obtain a direction of imaging corresponding to the direction of the projection after it was registered and the direction-of-vision correspondence information.

12. A medical image processing system according to claim 7 , wherein the direction of projection defining unit has an automatic registering unit for rotating and registering the three-dimensional projected image such that vectors of positions on a lining membrane of the blood vessel part can be placed most closely over vectors of positions on a lining membrane of the angiogram, wherein the projected image generating unit generates the three-dimensional projected image corresponding to the direction of the projection after it was registered.

13. A medical image processing system according to claim 12 , further comprising a direction-of-vision correspondence information generating unit for generating a direction-of-vision correspondence information including a correspondence established between the direction of the projection after it was registered and the direction of imaging, wherein a position of a C-arm on an angio apparatus be controlled so as to obtain a direction of imaging corresponding to the direction of the projection after it was registered and the direction-of-vision correspondence information.

14. A medical image processing system according to claim 7 , further comprising a blood vessel characteristic evaluating unit for evaluating a characteristic of a blood vessel, based on the three-dimensional projected image.

15. A medical image processing system according to claim 7 , wherein the CT-image obtaining unit obtains the three-dimensional CT-image that a heartbeat phase is the nearest to the required angio-image of indispensability.

16. A medical image processing system comprising:

an angio-image obtaining unit for obtaining a required angio-image from multiple chronological angio-images;

an angio-image imaging direction obtaining unit for obtaining a direction of imaging as incidental information included in data on the required angio-image;

a CT-image obtaining unit for obtaining a three-dimensional CT-image corresponding to the required angio-image;

a blood vessel part extracting unit for extracting a blood vessel part in the three-dimensional CT-image;

a projected image generating unit for generating a three-dimensional projected image by projected the blood vessel part, and for generating a three-dimensional projected image corresponding to a direction of a projection after a manual operation operates the direction of the projection;

a display control unit for making display the three-dimensional projection image and the angio-image; and

a direction-of-vision correspondence information generating unit for generating a direction-of-vision correspondence information including a correspondence established between the direction of the projection after it was changed based on the manual operation and the direction of imaging,

wherein a position of a C-arm on an angio apparatus be controlled so as to obtain a direction of imaging corresponding to the direction of the projection after it was changed based on the manual operation.

17. A medical image processing system according to claim 16 , wherein the three-dimensional projected image is considered to be a three-dimensional CT curved-planar projected image.

18. A medical image processing system according to claim 16 , further comprising a barycenter calculating unit for calculating a barycenter of the three-dimensional projected image and a barycenter of the angiogram, and an automatic registering unit for rotating and registering the three-dimensional projected image such that the barycenter of the three-dimensional projected image and the barycenter of the angiogram can be registered, wherein the projected image generating unit generates the three-dimensional projected image corresponding to the direction of the projection after it was registered.

19. A medical image processing system according to claim 16 , further comprising an automatic registering unit for rotating and registering the three-dimensional projected image such that vectors of positions on a lining membrane of the blood vessel part can be placed most closely over vectors of positions on a lining membrane of the angiogram, wherein the projected image generating unit generates the three-dimensional projected image corresponding to the direction of the projection after it was registered.

20. A medical image processing system according to claim 16 , further comprising a blood vessel characteristic evaluating unit for evaluating a characteristic of a blood vessel, based on the three-dimensional projected image corresponding to the direction of the projection after it was registered based on the manual operation.

21. A medical image processing system according to claim 16 , wherein the CT-image obtaining unit obtains the three-dimensional CT-image that a heartbeat phase is the nearest to the required angio-image of indispensability.

22. A medical image processing method, comprising steps of:

obtaining a required angio-image from multiple chronological angio-images;

obtaining a direction of imaging as incidental information included in data on the required angio-image;

obtaining a three-dimensional CT-image corresponding to the required angio-image;

extracting a blood vessel part in the three-dimensional CT-image;

generating a three-dimensional projected image by projecting the blood vessel part;

having display the three-dimensional projected image and the required angio-image; and

generating direction-of-vision correspondence information including a correspondence of the mutual directions of vision between a direction of a projection after it was changed and the direction of imaging.

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 Nov 13, 2006
From: FUJISAWA, YASUKO
To: KABUSHIKI KAISHA TOSHIBA; TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 018595/0792 →