Abstract:
Provided is a magnetic resonance imaging (MRI) apparatus including: a display configured to display a three-dimensional (3D) image on an inner wall of a bore within a gantry; a head coil comprising at least one opening formed at a region that corresponds to eyes of a target object and an optical element disposed in the at least one opening; and a controller configured to adjust a perspective of the 3D image based on an input received from the target object or an input received from a user.
Abstract:
A medical diagnostic apparatus includes a data obtainer, which obtains an image frame included in a region to be imaged; and a data processor, which processes the obtained frame and obtains a medical image. The data obtainer includes a composite image generator, which generates a composite image by using the image frame; and a medical image obtainer, which compensates the composite image by using the image frame and boundary conditions corresponding to image signals included in the composite image and obtains the medical image by using the compensated composite image.
Abstract:
A magnetic resonance imaging (MRI) apparatus and a method of controlling the MRI apparatus are provided. The MRI apparatus includes a signal transceiver configured to transmit a radio frequency (RF) signal to an object, and receive a magnetic resonance (MR) signal from the object. The MRI apparatus further includes a controller configured to control the signal transceiver based on sequence information that is used according to an imaging protocol, determine a degree at which the object is able to move based on the sequence information, to generate operation information, and control a device connected to the MRI apparatus to provide the operation information.
Abstract:
A medical image processing apparatus and method are provided. The medical image processing apparatus includes a controller configured to acquire an icon based on information in a medical image file of an object, the icon having a shape of the object and comprising one or more sub-icons, and a display configured to display the icon. Each of the one or more sub-icons corresponds to an anatomical region of the object is configured to accept input to perform one or more image processing functions associated with the corresponding anatomical region.