Abstract:
A bucky tray for an X-ray imaging apparatus includes a first plate on which an X-ray detecting device is mountable, and a second plate configured to be coupled to the first plate to be movable to at least one of a first location where the X-ray detecting device of a first size is accommodated and a second location where another X-ray detecting device of a second size is accommodated. The X-ray detecting device is configured to be mounted on the bucky tray.
Abstract:
A method of setting operating conditions of a detector in an imaging system includes searching for a detector that is not registered in the imaging system; acquiring detector profile information from the searched detector; registering the detector based on the detector profile information; allocating a predetermined marker to the registered detector to represent activation or non-activation thereof; transmitting control information including the allocated predetermined marker to the detector; receiving detector correction information from the detector; and setting operating conditions of the detector based on the received detector correction information.
Abstract:
An apparatus is provided for controlling an X-ray radiation field of an X-ray imaging apparatus including an X-ray generator and an X-ray detector arranged opposite to the X-ray generator. The apparatus includes a light-emitting unit configured to emit light and disposed adjacent to one of the X-ray generator and the X-ray detector, a light-receiving unit configured to detect the light emitted by the light-emitting unit and disposed adjacent to the other one of the X-ray generator and the X-ray detector, a radiation field setter configured to set an X-ray radiation field based on the detected light, and an X-ray driver configured to control driving of the X-ray generation units which correspond to the set X-ray radiation field, to emit an X-ray.
Abstract:
A method of setting operating conditions of a detector in an imaging system includes searching for a detector that is not registered in the imaging system; acquiring detector profile information from the searched detector; registering the detector based on the detector profile information; allocating a predetermined marker to the registered detector to represent activation or non-activation thereof; transmitting control information including the allocated predetermined marker to the detector; receiving detector correction information from the detector; and setting operating conditions of the detector based on the received detector correction information.
Abstract:
An apparatus for imaging a breast using an X-ray includes a support having a through-hole, a holder having a cylindrical shape, disposed in the through-hole of the support, and accommodating a breast of a patient, a linear X-ray generator disposed outside the holder and emitting an X-ray having a linear beam section that is lengthy in a vertical direction of the holder, a linear X-ray detector arranged outside the holder, and a rotation driver rotating the linear X-ray generator and the linear X-ray detector along an outer circumference of the holder.
Abstract:
A method of and apparatus for changing lesion classification data, the method including determining whether at least one mass is included in an image of an object, determining whether the at least one mass corresponds to a lesion by using first data including at least one first information, selecting a false negative (FN) mass which has been determined as not corresponding to the lesion among the at least one mass, based on a first input, and changing the first data to second data by using second information of the selected FN mass.
Abstract:
An X-ray apparatus includes a controller controlling generation of an X-ray and adjusting at least one of a plurality of image frames generated based on the X-ray passed through an object, and an X-ray generator generating the X-ray. The X-ray corresponds to a pulse signal including a plurality of pulses, in which at least one of a pulse rate or a pulse amplitude is variable.
Abstract:
An X-ray imaging apparatus includes an X-ray detecting device, an accommodation unit configured to accommodate the X-ray detecting device, and a bucky tray configured to be accommodated in and discharged from the accommodation unit. The bucky tray includes a base and a first plate on which the X-ray detecting device is mounted and which is configured to rotate with respect to the base.
Abstract:
A workstation includes a receiver configured to receive identification information of an X-ray detector from the X-ray detector; a controller configured to set assign indicator information of the X-ray detector, based on the received identification information of the X-ray detector; an output unit configured to display the set assign indicator information of the X-ray detector; and a transmitter configured to transmit the set assign indicator information of the X-ray detector to the X-ray detector. The X-ray detector includes a transmitter configured to transmit the identification information of the X-ray detector to the workstation; a receiver configured to receive the assign indicator information from the workstation after the transmitter transmits the identification information of the X-ray detector to the workstation; and an output unit configured to display an assign indicator based on the received assign indicator information.
Abstract:
An X-ray photographing apparatus and a method of operating the X-ray photographing method are disclosed. The X-ray photographing apparatus includes an X-ray generator configured to generate an X-ray; an X-ray detector configured to detect the X-ray that is transmitted through an object; and a panel that is provided between the X-ray generator and the X-ray detector and configured to contact the object, wherein a distance between a center axis of the X-ray generator and the X-ray detector is maintained to be uniform during a time period, and a radiation angle of the X-ray generated by the X-ray generator with respect to the object changes over the time period.