Abstract:
A three-dimensional image representing a patient's organ is obtained. The organ is extracted from the three-dimensional image. A treatment portion, at which desirable treatment for the organ is performed, on a surface of the organ is obtained. A pattern model including an outer surface, an inner surface having a surface form along an organ's outer surface of the organ, a guide wall connecting, along the treatment portion, the outer surface and the inner surface, and a positioning portion is generated. The positioning portion positions a predetermined imaging probe in such a manner that a tomographic image of a cross section of the organ including a target portion of the organ is imageable when the guide wall is arranged along the treatment portion on the organ.
Abstract:
There is provided an image registration device, method, and program that enable easy initial registration between a target object included in a video and a simulation image. A first registration unit performs first registration that is initial registration between an intraoperative video and a simulation image. At this time, a boundary image showing the boundary of the simulation image is displayed on a display so as to be superimposed on the intraoperative video. An operator performs registration between a target object included in the intraoperative video and the boundary image. After the end of the first registration, a second registration unit performs second registration between the simulation image and the target object included in the intraoperative video based on the result of the first registration.
Abstract:
An image processing apparatus, an image display system, an image processing method, and a program by which it is possible to display an optimum three dimensional image when display is switched from a two dimensional tomographic image to a three dimensional image are provided. The processor (14) outputs a tomographic image display signal representing a two dimensional tomographic image included in a first tomographic image group based on first imaging data obtained by imaging a subject, extracts a second tomographic image group having a smaller interval between tomographic images than the first tomographic image group, on the basis of second imaging data acquired in imaging corresponding to the imaging for acquiring the first imaging data, if a display switching signal indicating switching from display of the two dimensional tomographic image to display of a three dimensional image is acquired, and outputs a three dimensional image display signal representing a three dimensional image generated on the basis of the extracted second tomographic image group.
Abstract:
A display control device includes: a first display control unit that displays, on a display screen, a display region in which a plurality of display frames are arranged and a selection region in which a list of a plurality of thumbnail images obtained by reducing each of a plurality of examination images is displayed; a receiving unit that receives an operation of selecting the plurality of thumbnail images from the selection region to select the plurality of examination images corresponding to the plurality of thumbnail images; a comparison unit that recognizes the number of selected examination images and compares the recognized number of selected examination images with the current number of display frames; a change unit that changes the number of display frames in the display region and adds the display frame in the display region in a case in which the number of display frames is less than the number of selected examination images; and a second display control unit that lays out and displays the plurality of selected examination images in the plurality of display frames.
Abstract:
A point within a three dimensional region represented by volume data is set as a target point. A three dimensional angular range having the target point as its apex is set, and a plurality of line of sight vectors directed toward the target point are set within the three dimensional angular range. A plurality of projected images are generated by projecting the three dimensional region onto projection planes perpendicular to the line of sight vectors for each of the line of sight vectors. The generated projected images are arranged and displayed on a screen.
Abstract:
A functional image generating section that generates a functional image that represents the functions of a subject, based on 3D medical image data obtained by imaging the subject; a projected 3D image generating section that generates a projected 3D image that represents the appearance of the subject, based on the 3D medical image data; a display control section that displays the functional image and the projected 3D image; and a specified position data obtaining section that obtains position data regarding a position specified within the functional image, are provided. The projected 3D image generating section generates the projected 3D image which is projected in a projection direction such that a position within the projected 3D image corresponding to the specified position faces forward, based on the position data. The display control section displays the projected 3D image having the projection direction.
Abstract:
A medical image display control device includes a reception unit that receives an input instruction, a creation unit that creates a display image having a tab and a viewer region in which at least a medical image is displayed, the creation unit creating a new display image having a tab and a viewer region different from a viewer region of a display image displayed on a display unit based on the input instruction received by the reception unit, a display controller that performs control such that the tab of the new display image created by the creation unit and the already displayed tab are displayed so as to be selectable on the display unit, and a switching display controller that performs control such that in a case where any tab of the tabs displayed on the display unit is selected, the viewer region corresponding to the selected tab is switched with the already displayed viewer region and is displayed on the display unit.
Abstract:
A display control device includes: a first display control unit that display, on a display screen, a display region in which a plurality of display frames are arranged and a selection region in which a list of a plurality of thumbnail images is displayed; a first receiving unit that receives an operation of selecting the plurality of thumbnail images to select the plurality of examination images; a second receiving unit that receives an operation of designating an arrangement direction of the plurality of selected examination images in the display region in a state in which the plurality of thumbnail images are selected and before the plurality of examination images are laid out in the plurality of display frames; and a second display control unit that lays out the plurality of examination images in the plurality of display frames in the designated arrangement direction and displays the plurality of examination images on the display screen.
Abstract:
A rib extraction unit extracts a rib from a three-dimensional image, a core line setting unit sets a core line of the rib, and a specific axis direction determination unit determines a specific axis direction in a cross section crossing the core line of the rib. An image generation unit moves a position of the core line in the specific axis direction according to an instruction to move the core line in the specific axis direction and generates a developed image of at least one rib based on a cross section along the core line at the moved position.