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:
An X-ray photographing apparatus and a method of operating the X-ray photographing method are disclosed. The X-ray photographing apparatus includes a plurality of X-ray generators configured to generate an X-ray; a plurality of X-ray detectors facing the plurality of X-ray generators and configured to detect X-rays that are transmitted through an object; and a plurality of sensors, which are provided between the plurality of X-ray generators and the plurality of X-ray detectors, and which are configured to sense the object.
Abstract:
A mobile terminal including a touch screen and a method of controlling a medical apparatus by using the mobile terminal are provided. The method may include displaying, in response to determining that at least one medical apparatus is within a certain range from the mobile terminal based on location information of the at least one medical apparatus, at least one piece of identification information that corresponds to the at least one medical apparatus, detecting a user input for selecting first identification information from the at least one piece of identification information, and displaying, in response to a user input, a user interface for controlling a first medical apparatus that corresponds to the first identification information, on the touch screen.
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:
An apparatus for X-ray imaging includes a cylindrical X-ray generator assembly including linear X-ray generators arranged along a circumference of a cylinder and having a linear shape, a linear X-ray detector disposed inside the cylindrical X-ray generator assembly, and a rotation driver rotating the linear X-ray detector along an inner circumference of the cylindrical X-ray generator assembly.
Abstract:
An X-ray includes: electron emission devices that are arranged in one dimension or in two dimensions and are configured to emit electrons; and an anode electrode configured to emit an X-ray by using the electrons emitted by the electron emission devices and comprising regions having irregular thicknesses.