IP Library Granted Patent US 9,939,508
Granted Patent B2
US 9,939,508 · App. 14/546,516 · Granted Apr 10, 2018

Medical image processing apparatus, magnetic resonance imaging apparatus, medical image processing method and magnetic resonance imaging method

Inventors: Kiyomi Ooshima (Tochigi, JP); Tsutomu Igarashi (Tochigi, JP)
Assignee: TOSHIBA MEDICAL SYSTEMS CORPORATION
G01R33/5608A61B5/0035A61B5/7425A61B6/463A61B6/469A61B6/5235A61B6/5247G01R33/283G01R33/4835G01R33/543G01R33/56308G06F19/321A61B5/055A61B6/032A61B6/037A61B6/486
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Quick Facts
Patent No.
US 9,939,508
App. No.
14/546,516
Granted
Apr 10, 2018
Kind
B2
Abstract

A medical image processing apparatus includes an image acquisition part and a display processing part. The image acquisition part is configured to acquire plural series, each having frames of medical image data corresponding to at least one of slice positions and time phases. The display processing part is configured to perform display processing to display image data in a region of interest of at least one frame of first medical image data belonging to a first series out of the plural series. The image data in the region of interest are overlapped with a region of at least one frame of second medical image data belonging to another series. The region of the at least one frame of the second medical image data is different from a region corresponding to the region the interest.

Claims (26)

1. A medical image processing apparatus comprising:

at least one data processor coupled with digital storage, an operator input port and an operator display output port, said processor being configured to acquire plural series of image data, each series including frames of medical image data corresponding to at least one of slice positions and time phases; and

display image data in a region of interest of at least one frame of first medical image data belonging to a first series out of the plural series, the image data in said region of interest being overlapped with a different region of at least one frame of second medical image data belonging to a second series out of the plural series, the different region of the at least one frame of the second medical image data being different from a region corresponding to the region of interest wherein the second medical image data, in which the image data in the region of interest in the first medical image data are overlapped with the region different from the region corresponding to the region of interest are switched and displayed in a slice direction or a time phase direction in the second series at a switching frequency different from a switching frequency of the image data in the region of the interest, the second medical image data being switched and displayed responsive to an instruction for switching the first medical image data in a slice direction or a time phase direction in the first series, the instruction being input from the operator input port.

2. The medical image processing apparatus of claim 1 , wherein said processor is configured to perform display processing for switching and displaying the image data in the region of interest, according to a slice position or a time phase of the second medical image data.

3. The medical image processing apparatus of claim 1 , wherein said processor is configured to perform display processing for displaying frames of the second medical image data lined up in a slice direction or a time phase direction, and overlapping pieces of image data in regions of interests of frames of the first medical image data at slice positions or time phases corresponding to slice positions or time phases of the frames of the second medical image data, the pieces of the image data being respectively overlapped with regions different from regions, corresponding to the regions of interests, of the frames of the second medical image data.

4. The medical image processing apparatus of claim 1 , wherein said processor is configured to perform display processing for overlapping the image data, in the region of interest, with second medical image data of a different object.

5. The medical image processing apparatus of claim 1 , wherein said processor is configured to perform display processing for overlapping the image data, in the region of interest, with second medical image data of a same object.

6. The medical image processing apparatus of claim 5 , wherein said processor is configured to perform display processing for overlapping the image data, in the region of interest, with second medical image data acquired by a different kind of modality.

7. The medical image processing apparatus of claim 5 , wherein said processor is configured to perform display processing for overlapping the image data, in the region of interest, with second medical image data acquired by a same kind of modality.

8. The medical image processing apparatus of claim 7 , wherein said processor is configured to perform display processing for overlapping the image data, in the region of interest, with second medical image data acquired at a different time and date.

9. The medical image processing apparatus of claim 7 , wherein said processor is configured to perform display processing for overlapping the image data, in the region of interest, with second medical image data acquired using an imaging condition for obtaining a different contrast.

10. The medical image processing apparatus of claim 1 , wherein said processor is configured to perform display processing for overlapping the image data, in the region of interest, within a predetermined range, from the region corresponding to the region of the interest, of the second medical image data.

11. The medical image processing apparatus of claim 1 , wherein said processor is configured to perform display processing for overlapping the image data, in the region of interest, with a position of the second medical image data, the position being designated using said operator input port or another input port.

12. The medical image processing apparatus of claim 1 , wherein said processor is configured to perform enlargement processing or reduction processing of the image data in region of the interest, according to a spatial resolution of the image data in the region of interest.

13. The medical image processing apparatus of claim 1 , wherein said processor is configured to perform display processing for overlapping image data, in a corresponding region of interest of at least one frame of third medical image data belonging to a third series out of the plural series, on a position different from each of a corresponding region of the second medical image data and a position of the image data in the region of interest of the at least one frame of the first medical image data.

14. A magnetic resonance imaging apparatus comprising:

an imaging system configured to acquire plural series of image data, each series including frames of medical image data corresponding to at least one of slice positions and time phases, by magnetic resonance imaging; and

at least one data processor provided with digital storage an operator input port and an operator display output port, said processor being configured to perform display processing to display image data in a region of interest of at least one frame of first medical image data belonging to a first series out of the plural series, the image data in the region of interest being overlapped with a different region of at least one frame of second medical image data belonging to a second series out of the plural series, the different region of the at least one frame of the second medical image data being different from a region corresponding to the region of interest wherein the second medical image data, in which the image data in the region of interest in the first medical image data are overlapped with the region different from the region corresponding to the region of interest are switched and displayed in a slice direction or a time phase direction in the second series at a switching frequency different from a switching frequency of the image data in the region of the interest, the second medical image data being switched and displayed responsive to an instruction for switching the first medical image data in a slice direction or a time phase direction in the first series, the instruction being input from the operator input port.

15. A medical image processing method comprising:

configuring and

using a data processor provided with digital storage, an operator input port and an operator display output port to effect

acquiring plural series of image data, each series including frames of medical image data corresponding to at least one of slice positions and time phases; and

performing display processing to display image data in a region of interest of at least one frame of first medical image data belonging to a first series out of the plural series, the image data in the region of interest being overlapped with a different region of at least one frame of second medical image data belonging to a second series of the plural series, the region of the at least one frame of the second medical image data being different from a region corresponding to the region of interest wherein the second medical image data, in which the image data in the region of interest in the first medical image data are overlapped with the region different from the region corresponding to the region of interest are switched and displayed in a slice direction ora time phase direction in the second series at a switching frequency different from a switching frequency of the image data in the region of the interest, the second medical image data being switched and displayed responsive to an instruction for switching the first medical image data in a slice direction or a time phase direction in the first series, the instruction being input from the operator input port.

16. A magnetic resonance imaging (MRI) method comprising:

Using an MRI system to acquire plural series of image data, each series including frames of medical image data corresponding to at least one of slice positions and time phases, by magnetic resonance imaging; and

using at least one data processor to perform display processing to display image data in a region of interest of at least one frame of first medical image data belonging to a first series out of the plural series, the image data in the region of interest being overlapped with a different region of at least one frame of second medical image data belonging to another series, the different region of the at least one frame of the second medical image data being different from a region corresponding to the region of interest wherein the second medical image data, in which the image data in the region of interest in the first medical image data are overlapped with the region different from the region corresponding to the region of interest are switched and displayed in a slice direction or a time phase direction in the second series at a switching frequency different from a switching frequency of the image data in the region of the interest, the second medical image data being switched and displayed responsive to an instruction for switching the first medical image data in a slice direction or a time phase direction in the first series, the instruction being input from the operator input port.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2016
From: KABUSHIKI KAISHA TOSHIBA
To: TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 038735/0277 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2014
From: OOSHIMA, KIYOMI; IGARASHI, TSUTOMU
To: KABUSHIKI KAISHA TOSHIBA; TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 034200/0062 →
Priority Claims (1)
JP 2012-139224 · Jun 20, 2012 · national
Continuity (2)
Continuation PCTJP2013066073 · Jun 11, 2013
Related Publication 20150070016A1 · Mar 12, 2015