Abstract:
An x-ray imaging apparatus and a method of controlling the x-ray imaging apparatus are provided. The x-ray imaging apparatus includes x-ray detectors, and a user interface configured to display sizes of the x-ray detectors, and display a modality in which an x-ray detector, among the x-ray detectors, is usable, while a size of the x-ray detector is displayed.
Abstract:
Disclosed herein is a portable expansion module, an X-ray detector, and a method of controlling the X-ray detector. The portable expansion module includes a connecting portion configured to connect to a connector of an X-ray detector, and a display configured to operate using power supplied from the X-ray detector to the portable expansion module based on the connecting portion being connected to the connector, receive data from the X-ray detector based on the connecting portion being connected to the connector, and display state information of the X-ray detector based on the data received from the X-ray detector.
Abstract:
An x-ray imaging apparatus and a method of controlling the x-ray imaging apparatus are provided. The x-ray imaging apparatus includes x-ray detectors, and a user interface configured to display sizes of the x-ray detectors, and display a modality in which an x-ray detector, among the x-ray detectors, is usable, while a size of the x-ray detector is displayed.
Abstract:
An x-ray imaging apparatus and a method of controlling the x-ray imaging apparatus are provided. The x-ray imaging apparatus includes x-ray detectors configured to store detector identification data of the x-ray detectors, and a controller configured to receive the detector identification data from the x-ray detectors, and search for detector pairing data of usable x-ray detectors that match with the received detector identification data.
Abstract:
An X-ray imaging apparatus uses a camera image to set various types of parameters related to X-ray imaging including an X-ray irradiation region and automatically controls X-ray imaging. An X-ray imaging apparatus includes an imaging device that captures a camera image, an X-ray source on which a collimator adjusting an X-ray irradiation region is mounted, a storage unit that maps and stores an X-ray imaging region for each of a plurality of X-ray imaging protocols, an input unit that receives a selection of one among the X-ray imaging protocols from the plurality of X-ray imaging protocols, and a controller that extracts an X-ray imaging region mapped to the selected X-ray imaging protocol from the camera image and controls the collimator such that the X-ray irradiation region corresponds to the extracted X-ray imaging region.
Abstract:
Disclosed herein is a server collectively managing rejection codes for each type of a medical image and determining accuracy of the codes for the medical image transmitted from a medical imaging apparatus, providing a feedback, and a method of controlling the same. A medical imaging apparatus disclosed herein assigns rejection codes based on feedback received from the server and a method disclosed controls the same. The server includes a communication circuitry configured to communicate with a medical imaging apparatus, and a controller configured to control the communication circuitry to receive a medical image and a rejection code assigned to the medical image from the medical imaging apparatus, perform an image processing on the medical image to determine the rejection code of the medical image, and compare the determined rejection code and the received rejection code to generate information associated with a result of the comparison.
Abstract:
An X-ray imaging apparatus includes an X-ray source configured to generate X-rays, and to irradiate the X-rays; an imaging unit configured to photograph an object image; a controller configured to acquire object direction information from the object image, and to determine whether the object direction information corresponds to information about an irradiation direction of X-rays; and a user interface configured to output a warning if the object direction information does not correspond to the information about the irradiation direction of X-rays.
Abstract:
Disclosed is a radiographic apparatus including a detachable manipulation panel which includes a capturing device to generate X-rays and to irradiate the X-rays to a subject so as to capture the subject, a controller connected to the capturing device to control the capturing device, and a manipulation device mounted to the capturing device to allow an inspector to input commands to control the capturing device, wherein the manipulation device is detachably mounted to the capturing device and, in a state in which the manipulation device is separated from the capturing device, is connected to the controller using a wireless interface to control the capturing device.