Abstract:
In a cassette-type X-ray detection device, an X-ray detector and a self diagnostic circuit are contained in a cassette casing. When the cassette-type X-ray detection device gets a shock, the self diagnostic circuit is actuated. The self diagnostic circuit reads out from the X-ray detector an offset image being a dark current image, and analyzes the offset image. The self diagnostic circuit finds out an abnormal portion from the offset image, and diagnoses whether the X-ray detector is available, unavailable, or partly available based on the size and position of the abnormal portion. Shock detection and a diagnostic result are displayed on a touch panel provided in the cassette casing, and sent to a console device via a communication unit.
Abstract:
A radiographic image capture managing system includes an information storage unit for storing image information acquired by a radiation detector in chronological order, a usage status acquirer for acquiring information concerning a usage status of the radiation detector, a deterioration information acquirer for acquiring information concerning an extent of deterioration of the radiation detector based on the image information, a service life predictor for predicting a service life of the radiation detector based on the acquired information concerning the extent of deterioration and the acquired information concerning the usage status, a service life prolongation information setter for setting service life prolongation advice information required to prolong the predicted service life based on a preset relationship between the usage status and the extent of deterioration of the radiation detector and history information, and a service life prolongation advice output unit for transmitting service life prolongation advice information to at least a console.
Abstract:
A radiation detector includes a detection unit, a detection control unit, an image analyzing unit and a determination unit. The detection unit detects radiographic image data by plural pixels that convert applied radiation into electrical signals and store the electrical signals. The detection control unit controls the detection unit so as to determine that radiation has been applied if a read value obtained by reading the electric signals stored in the plural pixels is equal to or greater than a threshold value, and acquire radiographic image data corresponding to radiation that has passed through a subject. The image analyzing unit performs an image analysis with respect to the radiographic image if the read value is equal to or greater than the threshold value. The determination unit determines based on the result of the image analysis whether or not the radiographic image has been detected at an intended timing.
Abstract:
A method of processing images from an imaging device corrects defective pixels in an image acquired with the imaging device. The method includes a step of acquiring position information about continuous defective pixels from the position information about the defective pixels, a first correcting step of correcting the defective pixels with at least one normal pixel adjacent at least one defective pixels based on the position information about the defective pixels and a second correcting step of correcting the continuous defective pixels with a plurality of normal pixels adjacent at least one continuous defective pixels based on the position information about the continuous defective pixels. The second correcting step relies upon a greater number of normal pixels than the first correcting step to correct the defective pixels in a higher precision than the first correcting step.
Abstract:
A radiographic tomography image generating apparatus includes a radiographic image acquiring assembly for moving a radiation applicator, which is disposed in confronting relation to a radiation detecting device, successively to a plurality of positions, controlling the radiation applicator to apply radiation to a subject disposed over the radiation detecting device in different directions while the radiation applicator moves successively to the plurality of positions, and storing a plurality of radiographic images output successively from the radiation detecting device in an image memory. The radiographic tomography image generating apparatus also includes an image reconstructor for processing the radiographic images stored in the image memory in order to reconstruct a diagnostic tomography image of the subject according to a reconstructing process, and a preview display unit for displaying preview images on a display monitor based on the radiographic images output successively from the radiation detecting device.
Abstract:
A tomographic image capturing apparatus includes a plurality of radiation sources movable along a predetermined path, for applying respective radiation to a subject at different angles and at different times while moving along the predetermined path, a dose adjuster for adjusting the radiation sources to equalize doses of the radiation emitted from the radiation sources, a radiation detector for detecting radiation transmitted through the subject while the radiation sources move along the predetermined path, and converting the detected radiation into respective items of radiographic image information, and a tomographic image generator for generating a tomographic image of the subject based on the items of radiographic image information converted from the radiation and detected by the radiation detector.
Abstract:
The red eye detecting and correcting method detects red eye that occurred in an image during photographing and correcting the thus detected red eye to a specified color of pupil. Parameters employed in red eye detection and correction are altered in accordance with at least one of conditions as follows: type of the image, a camera model with which the image was recorded, a processing space for image data on the image, image processing steps to which the image is to be subjected before red eye detection and correction, format of the image, and scan condition.
Abstract:
An order processing apparatus is combined with a photographic printer, and processes an order of printing according to image data. Size reduced images are produced according to the image data. The size reduced images are displayed in a predetermined arrangement. A search query is entered. Retrieval information of the image data recorded in a storage medium is referred to according to the search query. Image data are selectively retrieved according to the search query among the image data. A size reduced image is displayed in association with the retrieved image data. Image data for use in printing is designated according to the displayed size reduced image. Furthermore, scene information of an image is entered. The image data are analyzed according to the scene information, so image data associated with a scene of the scene information are selectively retrieved.
Abstract:
The particular region detecting method and apparatus detect particular region candidates in an image, then perform face detection in a region including one of the detected particular region candidates and specify as a particular region of a detection target the one candidate included in the region where a face can be detected. In the method and apparatus, detection conditions is changed for at least one of the candidate detection and the face detection between main and non-main portion regions of the image, face information regarding the face detected in the region is stored and the face detection corresponding to a particular region candidate to be next subjected to the face detection is performed using the thus stored face information. The program is caused a computer to execute the method.
Abstract:
The image processing apparatus subjects input image data to predetermined image processing to create output image data to be output as a print. The processing apparatus includes an extracting device for extracting a main subject from the input image data and a first determining device for determining a print magnification and a frame position in accordance with a size of the extracted main subject and a previously designated print size. The processing apparatus optionally includes a second determining device for determining a use of the print from an identification code input when a photograph is taken. The certification photograph taking apparatus includes an inputting device for inputting an identification code indicating a use of a print and optionally a print size. The certification photograph creation system includes the certification photograph taking apparatus, an image inputting apparatus for inputting a photographed image, the image processing apparatus and a printer for outputting an image having been subjected to the image processing as a certification photograph. The processing apparatus, the taking apparatus and the system are capable of simply and easily taking and/or creating the certification photograph.