Abstract:
A medical imaging control apparatus includes a hardware processor that causes a display to display a plurality of examinations of a same patient and different patients; specifies one examination from the plurality of examinations displayed on the display; causes the display to display a list of imaging order information corresponding to the specified one examination and imaging order information corresponding to another examination of the same patient as the one examination; and causes the display to display the imaging order information corresponding to the specified one examination so as to be distinguishable from the imaging order information corresponding to the other examination.
Abstract:
A radiographic image capturing system is described. If a hardware processor determines that an image processor and an image analyzing unit are capable of sharing image data via an identical memory, the image processor stores image data in the memory and the image analyzing unit analyzes the image data with reference to the memory. If the hardware processor determines that the image processor and the image analyzing unit can send and receive the data via a wired network, the image processor transfers the data to the image analyzing unit, and the image analyzing unit analyzes the data. If the hardware processor determines that the image processor and the image analyzing unit can send and receive the data via a wireless network, the image processor compresses the data or decimates partial data and transfers the data to the image analyzing unit, and the image analyzing unit decompresses and analyzes the data.
Abstract:
A control device includes a hardware processor that obtains a plurality of radiographs satisfying a predetermined condition, and identifies a radiograph to be subjected to a predetermined process, from among the plurality of radiographs obtained.
Abstract:
A radiographic image capturing apparatus includes: a two-dimensional array of radiation detecting elements that generate one or more electric charges in proportion to a dose of incident radiation; and a control unit that performs control, at least, to read the electric charges from the radiation detecting elements and generate image data. An image capturing mode is switchable between a controlled mode in which the radiographic image capturing apparatus is under control of an external console and a stand-alone mode in which the radiographic image capturing apparatus autonomously performs image capturing without the control of the console. When the image capturing mode is switched to the controlled mode or the stand-alone mode, the control unit changes its own process so as to meet the switched image capturing mode.
Abstract:
An imaging control device includes a hardware processor. The hardware processor generates second dynamic image data from first dynamic image data that is image data of a dynamic image having multiple frame images received from a radiographic image capturing device, the second dynamic image data being image data of a dynamic image having only a part of the multiple frame images; and transmits, to an external device, the second dynamic image data and information indicating a first radiation dose that is information corresponding to a radiation dose in imaging for obtaining the first dynamic image data.
Abstract:
Disclosed is a control device, comprising: a hardware processor that acquires a radiographic image, wherein the hardware processor acquires an imaging condition of the radiographic image, automatically selects a type and a processing condition of predetermined processing to be executed on the acquired radiographic image based on the acquired imaging condition, and executes the selected predetermined processing on the radiographic image.
Abstract:
A radiographic image capturing apparatus includes: a two-dimensional array of radiation detecting elements that generate one or more electric charges in proportion to a dose of incident radiation; and a control unit that performs control, at least, to read the electric charges from the radiation detecting elements and generate image data. An image capturing mode is switchable between a controlled mode in which the radiographic image capturing apparatus is under control of an external console and a stand-alone mode in which the radiographic image capturing apparatus autonomously performs image capturing without the control of the console. When the image capturing mode is switched to the controlled mode or the stand-alone mode, the control unit changes its own process so as to meet the switched image capturing mode.
Abstract:
A radiographic image capturing device includes the following. A two-dimensional array of radiation detectors generate electrical charges corresponding to a dose of incident radiation. A control unit reads the electrical charges discharged from the radiation detectors in a form of image data. The control unit has radiographic modes including a still image mode for still image radiography, a moving image mode for moving image radiography, and a continuous radiographic mode for reading the image data without distinguishing between the still image radiography and the moving image radiography. The control unit selects the continuous radiographic mode to sequentially read the image data when an instruction on performing the still image radiography or the moving image radiography is not sent from an external control device or a user or when the radiographic mode is unknown due to communication failure with the external control device.
Abstract:
A radiographic imaging support apparatus includes a hardware processor. The hardware processor performs notification of information on imaging equipment to be used by a photographer at a destination. The imaging equipment is determined based on examination information on a subject to be subjected to radiographic imaging by a movable radiographic imaging apparatus.
Abstract:
A mobile radiographic imaging apparatus includes: two independent power supply units; two control devices each being driven with power supplied from each of the two power supply units; a first hardware processor in one of the two control devices includes; and a second hardware processor in the other one of the two control device. The first hardware processor inquires of the second hardware processor about a state of the other control device when a predetermined condition is satisfied, and shuts down the one control device or cancels shutdown of the one control device according to a response from the other control device.