IP Library Patent Application 11117242
Patent Application
App. No. 11/117,242

Ultrasonic diagnostic apparatus and image processing method

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Quick Facts
Patent No.
US None
App. No.
11/117,242
Abstract

A three-dimensional image data memory stores three-dimensional image data including that of a imaging target. A digitization processor unit applies a digitizing process to the three-dimensional image data using a first threshold value to extract data corresponding to the target. A user sets a two-dimensional region of interest surrounding a portion in which the extraction of data using the first threshold value is inaccurate and a 3D region-of-interest generator unit generates a three-dimensional region of interest from the two-dimensional region of interest which is set. The digitization processor unit applies a digitizing process using a second threshold value to the three-dimensional image data within the three-dimensional region of interest.

Claims (48)

1 . An ultrasonic diagnostic apparatus comprising:

an image data generation unit which transmits and receives an ultrasound to and from a space including a target to generate ultrasonic image data;

a target extraction unit which applies a digitizing process to the ultrasonic image data using a first threshold value to extract data corresponding to the target; and

a region-of-interest setting unit which sets a region of interest within the ultrasonic image data, wherein

the target extraction unit applies a digitizing process, using a second threshold value, to the ultrasonic image data within the set region of interest.

2 . An ultrasonic diagnostic apparatus according to claim 1 , wherein

the region-of-interest setting unit sets a region of interest surrounding a portion within the ultrasonic image data in which the extraction of data using the first threshold value is inaccurate.

3 . An ultrasonic diagnostic apparatus comprising:

a three-dimensional image data generation unit which transmits and receives an ultrasound to and from a space including a target to generate three-dimensional image data;

a target extraction unit which applies a digitizing process to the three-dimensional image data using a first threshold value to extract data corresponding to the target;

a cross-sectional image data generation unit which generates, from the three-dimensional image data, cross-sectional image data after application of the digitizing process using the first threshold value; and

a three-dimensional region-of-interest setting unit which sets a three-dimensional region of interest within the three-dimensional image data based on a two-dimensional region of interest which is set within the cross-sectional image data, wherein

the target extraction unit applies a digitizing process, using a second threshold value, to the three-dimensional image data within the set three-dimensional region of interest.

4 . An ultrasonic diagnostic apparatus according to claim 3 , wherein

the two-dimensional region of interest is set surrounding a portion in which the extraction of data using the first threshold value is inaccurate.

5 . An ultrasonic diagnostic apparatus according to claim 4 , wherein

the cross-sectional image data generation unit generates three sets of cross-sectional image data which are orthogonal to each other, and

the two-dimensional region of interest is set within at least one set of cross-sectional image data from among the three sets of cross-sectional image data.

6 . An ultrasonic diagnostic apparatus according to claim 5 , wherein

the two-dimensional region of interest is set based on a drawing operation which is performed by a user while viewing a cross-sectional image.

7 . An ultrasonic diagnostic apparatus according to claim 5 , wherein

the two-dimensional region of interest is selected from among a plurality of shape data which are recorded in advance.

8 . An ultrasonic diagnostic apparatus according to claim 4 , wherein

the three-dimensional region-of-interest setting unit generates a plurality of two-dimensional regions of interest by stepwise reduction of the two-dimensional region of interest and generates the three-dimensional region of interest by superimposing the plurality of two-dimensional regions of interest with a predetermined spacing between each other.

9 . An ultrasonic diagnostic apparatus according to claim 4 , wherein

the three-dimensional region-of-interest setting unit generates the three-dimensional region of interest by rotating the two-dimensional region of interest.

10 . An ultrasonic diagnostic apparatus according to claim 4 , wherein

a display image in which the target is projected onto a plane is generated using a volume rendering method based on the three-dimensional image data in which the digitizing processes are applied using the first threshold value and the second threshold value and the data corresponding to the target is extracted.

11 . An image processing method comprising the steps of:

applying a digitizing process to three-dimensional image data including a target using a first threshold value to extract data corresponding to the target;

generating cross-sectional image data after the digitizing process using the first threshold value from the three-dimensional image data;

setting a three-dimensional region of interest within the three-dimensional image data based on a two-dimensional region of interest which is set within the cross-sectional image data; and

applying a digitizing process to the three-dimensional image using a second-threshold value within the set three-dimensional region of interest.

12 . An image processing method according to claim 11 , wherein

a plurality of two-dimensional regions of interest are generated by stepwise reduction of the two-dimensional region of interest and the three-dimensional region of interest is generated by superimposing the plurality of two-dimensional regions of interest with a predetermined spacing between each other.

13 . An image processing method according to claim 12 , wherein

the two-dimensional region of interest is set surrounding a portion in which the extraction of data using the first threshold value is inaccurate.

14 . An image processing method according to claim 13 , wherein

three sets of cross-sectional image data which are orthogonal to each other are generated as the cross-sectional image data, and

the two-dimensional region of interest is set within at least one set cross-sectional image data from among the three sets of cross-sectional image data.

15 . An image processing method according to claim 14 , wherein

the two-dimensional region of interest is set based on a drawing operation which is performed by a user while viewing a cross-sectional image.

16 . An image processing method according to claim 14 , wherein

the two-dimensional region of interest is selected from among a plurality of shape data which are recorded in advance.

17 . An image processing method according to claim 14 , wherein

a display image in which the target is projected onto a plane is generated using a volume rendering method based on the three-dimensional image data in which the digitizing processes are applied using the first threshold value and the second threshold value and data corresponding to the target is extracted.

18 . An image processing method according to claim 11 , wherein

the three-dimensional region of interest is generated by rotating the two-dimensional region of interest.

Assignments (2)
CHANGE OF NAME Recorded Jan 25, 2012
From: ALOKA CO., LTD.
To: HITACHI ALOKA MEDICAL, LTD.
Reel/Frame 027595/0575 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2005
From: MURASHITA, MASARU; HIROTA, KOJI
To: ALOKA CO., LTD.
Reel/Frame 016523/0848 →