IP Library Granted Patent US 8,437,520
Granted Patent B2
US 8,437,520 · App. 12/576,564 · Granted May 7, 2013

Medical image processor and medical image processing method

Inventors: Takahiro Manabe (Yokohama, JP); Yasuko Fujisawa (Otawara, JP)
Assignees: Kabushiki Kaisha Toshiba; Toshiba Medical Systems Corporation
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Quick Facts
Patent No.
US 8,437,520
App. No.
12/576,564
Granted
May 7, 2013
Kind
B2
Abstract

A medical image processor includes: an extraction unit configured to extract a longitudinal line from three-dimensional volume data for a medical image, the longitudinal line representing how a tubular structure runs; a longitudinal cross-sectional image generator configured to generate multiple longitudinal cross-sectional images extending along the longitudinal line, the longitudinal cross-sectional images being cross-sectional images of the tubular structure; a short-axis cross-sectional image generator configured to generate multiple short-axis cross-sectional images intersecting the longitudinal line, the short-axis cross-sectional images being cross-sectional images of the tubular structure; a structure element detector configured to detect a specific structural element of the tubular structure from each of the plurality of short-axis cross-sectional images; and a correction unit configured to correct the specific structural element detected from each of the multiple short-axis cross-sectional images on a basis of the multiple longitudinal cross-sectional images.

Claims (15)

1. A medical image processor comprising: an extraction unit configured to extract a longitudinal line from three-dimensional volume data for a medical image, the longitudinal line representing how a blood vessel runs; a longitudinal cross-sectional image generator configured to generate a plurality of longitudinal cross-sectional images which radially intersect one another on a line parallel with the longitudinal line, the longitudinal cross-sectional images being cross-sectional images of the blood vessel; a short-axis cross-sectional image generator configured to generate a plurality of short-axis cross-sectional images intersecting the longitudinal line, the short-axis cross- sectional images being cross-sectional images of the blood vessel; a structure element detector configured to detect a specific structural element of the blood vessel from each of the plurality of short-axis cross-sectional images and the plurality of longitudinal cross-sectional images, the specific structural element being a lumen and a calcification area of the blood vessel; and a correction unit, including a processor, configured to correct the specific structural element detected from each of the plurality of short-axis cross-sectional images on a basis of the plurality of longitudinal cross-sectional images so that a positional relationship becomes consistent between the specific structural element detected from each of the plurality of longitudinal cross-sectional images and the specific structural element detected from each of the plurality of short-axis cross-sectional images, wherein the correction unit extracts a plurality of contour points of the lumen of the blood vessel, and measures a distance between one of the contour points as a target contour point and a straight line joining two contour points located respectively before and after the target contour point, if the distance is larger than a certain distance, the correction unit determines that the target contour point is a front end point of a branch of the vessel, and the correction unit performs correction in which the lumen of the blood vessel is moved inside the blood vessel so that the lumen of the blood vessel is smoothed.

2. The medical image processor according to claim 1 , wherein the medical image is an X-ray CT image acquired by: convolving with reconstruction functions X-ray projection images of a subject which are taken in a plurality of directions, and

the correction unit performs correction in which the lumen of the blood vessel is moved inside the blood vessel so that influence of the reconstruction functions on the calcification area of the blood vessel is reduced.

3. A medical image processing method comprising:

extracting a longitudinal line from three-dimensional volume data for a medical image, the longitudinal line representing how a blood vessel runs;

generating a plurality of longitudinal cross-sectional images, which radially intersect one another on a line parallel with the longitudinal line, the longitudinal cross-sectional images being cross-sectional images of the blood vessel;

generating a plurality of short-axis cross-sectional images intersecting the longitudinal line, the short-axis cross-sectional images being cross-sectional images of the blood vessel;

detecting a specific structural element of the blood vessel from each of the plurality of short-axis cross-sectional images and the plurality of longitudinal cross- sectional images, the specific structural element being a lumen and a calcification area of the blood vessel;

correcting, by a processor, the specific structural element detected from each of the plurality of short-axis cross-sectional images on a basis of the plurality of longitudinal cross- sectional images so that a positional relationship becomes consistent between the specific structural element detected from each of the plurality of longitudinal cross-sectional images and the specific structural element detected from each of the plurality of short-axis cross-sectional images;

extracting a plurality of contour points of the lumen of the blood vessel;

measuring a distance between one of the contour points as a target contour point and a straight line joining two contour points located respectively before and after the target contour point;

determining that the target contour point is a front end point of a branch of the vessel if the distance is larger than a certain distance; and

performing correction in which the lumen of the blood vessel is moved inside the blood vessel so that the lumen of the blood vessel is smoothed.

4. The medical image processing method according to claim 3 , wherein the medical image is an X-ray CT image acquired by: convolving with reconstruction functions X-ray projection images of a subject which are taken in a plurality of directions, and

in correcting the specific structural element, correction is performed in which the lumen of the blood vessel is moved inside the blood vessel so that influence of the reconstruction functions on the calcification area of the blood vessel is reduced.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 3, 2016
From: KABUSHIKI KAISHA TOSHIBA
To: TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 038595/0569 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2009
From: MANABE, TAKAHIRO; FUJISAWA, YASUKO
To: KABUSHIKI KAISHA TOSHIBA; TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 023357/0969 →
Priority Claims (1)
JP 2008-264206 · Oct 10, 2008 · national
Continuity (1)
Related Publication 20100092053A1 · Apr 15, 2010