Abstract:
A method for generating a projection image from three-dimensional image data, including the steps of determining first three-dimensional image data to be projected from the three-dimensional image data, generating a first projection image by projecting the first three-dimensional image data in a first projection direction by maximum intensity projection or minimum intensity projection, specifying a first coordinate position in the first projection image, determining second three-dimensional image data to be projected from the three-dimensional image data, generating a second projection image by projecting the second three-dimensional image data in a second projection direction different from the first projection direction, and displaying a second coordinate position, in the second projection image, obtained by projecting a first voxel in the three-dimensional image data, which corresponds to the pixel at the first coordinate position in the first projection image, onto the second projection image from the second projection direction.
Abstract:
Specification is received regarding which structure identifying information, each corresponding to an anatomical structure, is specified as display target structure identifying information to be displayed with a display target image when displaying the display target image, in which the positions of each pixel correspond to positions within an original image. The position of the anatomical structure identified by the structure identifying information is specified, based on structure information, in which structure identifying information that identifies anatomical structures and structure position information that represents the positions of the anatomical structures within the original image are correlated, and the correspondence of positions between the original image and the display target image. The display target structure identifying information is displayed with the display target image such that a user can recognize that the anatomical structure identified by the display target structure identifying information is displayed at the specified position.
Abstract:
An image processing apparatus having improved detection performance for detecting an abnormal shadow, such as a tumor, and reducing a burden on the user is disclosed. In the image processing apparatus, an aligning unit aligns a previous image and a current diagnosis image with each other, and a corresponding position calculating unit calculates a position on a subject in the current diagnosis image corresponding to the position of an abnormal shadow on the subject in the previous image based on positional information of the abnormal shadow on the subject in the previous image and alignment information. A current diagnosis image abnormal shadow detecting unit detects the abnormal shadow in the current diagnosis image from the vicinity of the corresponding position in the current diagnosis image.
Abstract:
A medical image is obtained and displayed. An electronic image interpretation report of the medical image is generated and displayed. The position of a lesion region in the medical image is input. A link character linked by a hyperlink to the medical image including the input position of the lesion region is inserted into the image interpretation report in such a manner that the link character is distinguishably displayed. The distinguishably displayed link character in the image interpretation report is selected. An index representing the position of the lesion region is displayed in the medical image based on the selection of the link character.
Abstract:
An image display apparatus and an image display program includes image acquiring section which acquires cross-section image groups which include cross-section images on cut positions arranged in a predetermined direction of a subject, a place setting section which sets places on the cross-section images in the cross-section image groups, an image group extracting section which extracts a series of image groups which continue along the cross-section images and include the image on the places from the cross-section image groups, a cut position calculating section which calculates cut positions whose positional feature in the respective image groups is common among the image groups, on the image groups, and an image display section which arranges to display cross-section images in the cross-section image groups.
Abstract:
A steering system includes: a tilt mechanism including a pivotal shaft which extends in a sidewise direction of the vehicle, the tilt mechanism being adapted to pivot the movable column portion upward and downward around the pivotal shaft, the tilt mechanism controlling the movable column portion to be secured in a certain upper pivotal position and a certain lower pivotal position; a telescope mechanism adapted to pull out and push in in a forward-backward direction of the vehicle the movable column portion including the pivotal shaft; a pop up mechanism for allowing the movable column portion to make a popping up over an uppermost pivotal position defined by the tilt mechanism; and a pop up mechanism controlling mechanism for controlling the popping up of the movable column portion by the pop up mechanism until the movable column portion pulled out by the telescope mechanism has a certain length.
Abstract:
A catalyst converter for cleaning the exhaust of a vehicle, and in particular for a vehicle such as a car or motorcycle. The catalyst converter is provided with a case containing and holding a honeycomb-shaped ceramic catalyst body, with the case being divided into two halves in the axial direction. The catalyst body is covered in the front and rear with members supporting the end edges in the axial direction and the outer peripheral portions. The halves of the case are integrally combined while being pressed toward each other.
Abstract:
Recording a plurality of lesion area extraction processing data generated in advance according to a plurality of types of lesion areas, recording a radiology which includes a character string having a lesion description character and being related to position information of a lesion area in the medical image, determining lesion area extraction processing data used for the extraction from the plurality of lesion area extraction processing data based on the lesion description character provided in the radiology report, and performing the extraction using the determined lesion area extraction processing data and the position information of the lesion area related to the character string.
Abstract:
A medical image display apparatus includes an image database for recording a three-dimensional standard image of a model subject, a three-dimensional anatomical image corresponding to the three-dimensional standard image, and anatomical information on living tissue names, an image acquirer for acquiring a three-dimensional medical image of an examinee, a medical tomographic image identifier for identifying a medical tomographic image in the three-dimensional medical image based on a user's instruction, a standard tomographic image identifier for identifying a standard tomographic image in the three-dimensional standard image, which corresponds to the medical tomographic image, an anatomical tomographic image identifier for identifying an anatomical tomographic image in the three-dimensional anatomical image, which corresponds to the standard tomographic image, and a display controller for displaying the medical tomographic image and the anatomical tomographic image on a display unit, while displaying the living tissue names over the anatomical tomographic image based on the anatomical information.
Abstract:
A shadow area in a lung-field area of a subject is detected from tomographic images constituting a three-dimensional image representing the subject. A hilum-of-lung area in the lung-field area of the subject is detected from the tomographic images. Further, a slice image that passes through a first point that is a predetermined point in the detected shadow area, a second point that is a predetermined point in the detected hilum-of-lung area, and an arbitrary point that has been set in advance is generated. The generated slice image is displayed.