Abstract:
Stereoscopic system including a portal component, first sensor and first cable, second sensor and second cable, first display and second display. The portal component includes an axis, a first channel and second channel extending along the axis. The first sensor is secured within the first channel at a first angle with respect to the axis and directed inwardly toward a location. The first cable extends from the first sensor. The second sensor is secured within the second channel at a second angle with respect to the axis and directed inwardly toward the location. The first angle and second angle converge at the location to define a depth of perception. The second cable extends from the second sensor. The first display structure is disposed in proximity to a left aperture of an eyeframe, and the second display structure is disposed in proximity to a right aperture of the eyeframe.
Abstract:
A job control device, a multifunction device, and an operation method thereof are provided. The job control device includes a middleware unit that supports connection with a multifunction device comprising multiple devices having independent functions, and a job control unit that controls performing of a job by at least one device from among the plurality of devices through the middleware unit. A multifunction device includes a multiple devices that have independent functions and a middleware unit that requests a job call to the job control device. A device, from among the plurality of devices, called from the job control device through the middleware unit executes a corresponding function.
Abstract:
A method and device for indicating a scanning condition and a scanning apparatus and scanning system related thereto are provided. The method includes: converting a scanning condition of a scanning apparatus into a control instruction for controlling a light strip to provide an indication; and executing the control instruction to control the light strip to provide the indication in the case of the scanning condition, wherein the light strip is mounted on an exterior of the scanning apparatus. Thus, the scanning condition of a scanning apparatus is converted into a control instruction for controlling the light strip to provide the indication, and the control instruction can be executed to control the light strip on the exterior of the scanning apparatus to indicate the scanning process when the scanning condition of the medical-scanning apparatus occurs.
Abstract:
A characteristic line is used for converting an initial image into a modified image that is composed of two characteristic lines that have different contrast enhancement properties.
Abstract:
A medical image and data application service provider system provides a way of remotely viewing and manipulating medical images and data for diagnostic and visualization purposes by users unconstrained by geography. Medical images and data are stored on one or more servers running application service provider software along with meta-data such as access control information, origin of information and references to related data. A set of medical data consisting related information is sent as an encrypted stream to a viewing station running client software in a secure execution environment that is logically independent of the viewing station's operating system.
Abstract:
A radiation image capturing system includes at least one image capturing apparatus including a radiation detector, at least one image capturing apparatus including a stimulable phosphor panel for generating radiation image information, which is readable by an image reading apparatus, and at least one control device for controlling at least the image capturing apparatus and the image reading apparatus based on image capturing instruction information supplied from an external source. The control device includes a change setting unit for changing settings of the image capturing instruction information depending on whether the image capturing apparatus and the image reading apparatus are usable or not, and a controller for controlling the image capturing apparatus and the image reading apparatus based on the changed settings of the image capturing instruction information.
Abstract:
When an image group to be displayed and compared is transferred to a terminal during viewing and processing of an image in an image group on the terminal that enables viewing of a plurality of image groups, an image corresponding to the currently displayed image is promptly transferred and displayed. In response to determination of the image group to be displayed and compared with the image group currently displayed on the terminal, a server determines the image that belongs to the image group to be displayed and compared and corresponds to the image in the image group being displayed, and determines a range and order of transfer of images that are to be transferred and include the corresponding image in the determined image group. The server transfers the determined image group according to the range and order of transfer.
Abstract:
An imaging apparatus is provided and includes: an imaging section that repeatedly takes an image of a subject to obtain a plurality of subject images; a contrast calculating section that calculates a contrast of the image with respect to each of the plurality of subject images; a time trigger generating section that receives an operation during repeatedly taking the image at the imaging section and issues a time trigger representing a time at which the operation is received; and a display section that displays a subject image when the time trigger is issued from the time trigger generating section, in which the contrast of the subject image calculated by the contrast calculating section is the highest among a part of the subject images having image-taking times in a time region including the time represented by the time trigger.
Abstract:
A dental x-ray film viewing device includes a film reader having a digital video camera and an image display screen connected to the video camera for displaying an enlarged digital image of the x-ray film using signals transmitted directly from the video camera. The film reader includes a film illumination station that has a back-lighted film seat. The film seat includes a translucent plate and a non-transparent film anchoring wafer having an opening complimentary to the x-ray film for seating the x-ray film, and blocking light in an area surrounding the x-ray film. The film reader has a video camera having lens thereof focusing on the film window, and the lens has a distortion at the full field less than 3%. The device provides a substantially enlarged high resolution and high contrast digital image as an accurate representation of the original x-ray film, without digital processing by a computer.
Abstract:
A method of transmitting a data set comprising at least one medical data from a first imaging station to at least one other imaging station via a network interface in a DICOM standard communication system is provided. The method comprises the acts of selecting a first medical data from the data set for transmission; checking a memory of the first imaging station for a receipt of an acknowledgement signal indicative of a successful transmission of the first medical data to the at least one other imaging station; transmitting the medical data if the act of checking does not detect the receipt of acknowledgement signal; receiving the acknowledgment signal from the at least one other imaging station in response to a successful receipt of the first medical data at the at least one other imagine station; and storing the receipt of acknowledgement signal in the memory of the first imaging station.