IP Library Granted Patent US 8,478,006
Granted Patent B2
US 8,478,006 · App. 12/546,412 · Granted Jul 2, 2013

Image processing apparatus and image processing method

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Quick Facts
Patent No.
US 8,478,006
App. No.
12/546,412
Granted
Jul 2, 2013
Kind
B2
Abstract

An extraction unit extracts a centerline of a tubular structure from a volume data set. A generation unit generates a plurality of image data sets concerning a plurality of curved planes based on the volume data set. Each of the curved planes contains the centerline. The plurality of image data sets have a plurality of image lengths respectively and contain a plurality of centerlines respectively. A first specification unit specifies a first image data set or a second image data set from the plurality of image data sets. The first image data set is specified based on the plurality of image lengths of the plurality of image data sets. The second image data set is specified based on gradients of the plurality of centerlines of the plurality of image data sets. A display unit displays the first image or the second image.

Claims (28)

1. An image processing apparatus comprising:

a storage unit configured to store a volume data set containing a tubular structure in a predetermined coordinate system;

an extraction unit configured to extract a centerline of the tubular structure from the volume data set;

an image generation unit configured to generate data for a first curved multi-planar reconstruction (CPR) digital image for a first curved plane along the centerline and a second CPR digital image for a second curved plane along the centerline based on the volume data set;

an image specification unit configured to select one of the first CPR digital image and the second CPR digital image that has an image length that is longer than the other one; and

a display unit configured to display the selected one of the first CPR digital image and the second CPR digital image,

wherein the image generation unit generates the first curved plane and the second curved plane based upon a plurality of cutting lines passing through points along the centerline respectively at a first predetermined angle and a second predetermined angle,

wherein the image specification unit determines a first image length based upon the image length of the first CPR digital image along an axis that is perpendicular to a direction of the cutting lines at the first predetermined angle and a second image length based upon the image length of the second CPR digital image along an axis that is perpendicular to a direction of the cutting lines at the second predetermined angle, the image specification unit selecting a longer one of the first image length and the second image length.

2. An image processing apparatus comprising:

a storage unit configured to store a volume data set containing a tubular structure in a predetermined coordinate system;

an extraction unit configured to extract a centerline of the tubular structure from the volume data set;

an image generation unit configured to generate data for a first curved multi-planar reconstruction (CPR) digital image for a first curved plane along the centerline and a second CPR digital image for a second curved plane along the centerline based on the volume data set;

an image specification unit configured to select one of the first CPR digital image and the second CPR digital image; and

a display unit configured to display the selected one of the first CPR digital image and the second CPR digital image,

wherein the image generation unit generates the first curved plane and the second curved plane based upon a plurality of cutting lines passing through points along the centerline respectively at a first predetermined angle and a second predetermined angle,

wherein the image specification unit determines a plurality of first gradients as each specified by a gradient of the center line that is perpendicular to a direction of the cutting lines at the first predetermined angle, the image specification unit selecting a largest one of the first gradients as a first maximum gradient, the image specification unit determines a plurality of second gradients as each specified by a gradient of the center line that is perpendicular to a direction of the cutting lines, the image specification unit selecting a largest one of the second gradients as a second maximum gradient, the image specification unit selecting one of the first CPR digital image and the second CPR digital image that has a smaller one of the first maximum gradient and the second maximum gradient.

3. An image processing method comprising:

storing a digital volume data set containing a tubular structure in a predetermined coordinate system;

extracting a centerline of the tubular structure from the digital volume data set;

generating digital data for a first curved multi-planar reconstruction (CPR) digital image for a first curved plane along the centerline and a second CPR digital image for a second curved plane along the centerline based on the volume data set, wherein the first curved plane and the second curved plane are generated based upon a plurality of cutting lines passing through points along the centerline respectively at a first predetermined angle and a second predetermined angle;

selecting one of the first CPR digital image and the second CPR digital image that has an image length that is longer than the other one, wherein a first image length is based upon the image length of the first CPR digital image along an axis that is perpendicular to a direction of the cutting lines at the first predetermined angle while a second image length is based upon the image length of the second CPR digital image along an axis that is perpendicular to a direction of the cutting lines at the second predetermined angle, the selected one of the first CPR digital image and the second CPR digital image having a longer one of the first image length and the second image length; and

displaying the selected one of the first CPR digital image and the second CPR digital image.

4. An image processing method comprising:

storing a volume digital data set containing a tubular structure in a predetermined coordinate system;

extracting a centerline of the tubular structure from the volume digital data set;

generating data for a first curved multi-planar reconstruction (CPR) digital image for a first curved plane along the centerline and a second CPR digital image for a second curved plane along the centerline based on the volume data set, wherein the first curved plane and the second curved plane are generated based upon a plurality of cutting lines passing through points along the centerline respectively at a first predetermined angle and a second predetermined angle;

selecting one of the first CPR digital image and the second CPR digital image, wherein a plurality of first gradients are each specified by a gradient of the center line that is perpendicular to a direction of the cutting lines at the first predetermined angle, a largest one of the first gradients being defined as a first maximum gradient, a plurality of second gradients are being each specified by a gradient of the center line that is perpendicular to a direction of the cutting lines at the second predetermined angle, a largest one of the second gradients being defined as a second maximum gradient, one of the first CPR digital image and the second CPR digital image is selected for having a smaller one of the first maximum gradient and the second maximum gradient; and

displaying the selected one of the first CPR digital image and the second CPR digital image.

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 Aug 26, 2009
From: ARAKITA, KAZUMASA; SATO, TOSHIYUKI
To: KABUSHIKI KAISHA TOSHIBA; TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 023150/0633 →