Abstract:
An ultrasound image display method displays an ultrasound image, detects a shadow pattern for determining an internal state of an object displayed in the ultrasound image, determines the number of the detected shadow patterns, and displays the determined number of shadow patterns.
Abstract:
A method of and apparatus for processing ultrasound data acquired from an object is provided. With the methods and apparatuses of the exemplary embodiments, speckles in an ultrasound image are reduced by using scan line information of an ultrasound signal applied to the object prior to scan conversion of the ultrasound image.
Abstract:
A Computer-Aided Diagnosis (CAD) apparatus for correctly detecting a nodule is provided. The CAD apparatus includes an input device for receiving a first image captured by emitting X-rays towards a user and a second image that is discriminated from the first image and is an image of the user; an information acquisition device for acquiring a bone model of the user by using the second image; and a CAD device for compensating for the first image by using the bone model.
Abstract:
Disclosed are a display device and method for image processing. An image processing method of a display device according to the present invention includes: a step of receiving an input of a plurality of image frames configuring content; a step of analyzing the plurality of image frames to determine a motion of a camera capturing an image of the content; a step of determining a sense of motion sickness on the basis of the camera motion captured; and a step of performing image processing on the plurality of image frames on the basis of the camera motion, when the determined sense of motion sickness is equal to or greater than a predefined value. Accordingly, the display device can reduce the sense of motion sickness for image content having a high possibility of inducing a sense of motion sickness.
Abstract:
A transparent panel is provided. The transparent panel includes a polarization plate, a transparent diffusion plate which is disposed on one side of the polarization plate and is configured to transmit light incident from a side of the polarization plate and to reflect and diffuse a light incident from an opposite side of the polarization plate, a ¼ wavelength plate which is disposed on one side of the transparent diffusion plate and is configured to convert a polarization direction of an incident light, and a lens part which is disposed on one side of the ¼ wavelength plate. The lens part includes a lens array comprising a birefringent material having different refractive indexes according to a polarization direction of an incident light, and a refractive index alignment member configured to transmit or refract the light according to a polarization direction of a light that penetrates the lens array.
Abstract:
An ultrasound medical imaging method includes: displaying an ultrasound image on a screen; determining a view plane, on which the displayed ultrasound image is captured, among view planes; and setting a region of interest corresponding to the determined view plane on the ultrasound image.
Abstract:
A vehicle display device and a control method thereof are provided. The present vehicle display device comprises: a camera for photographing a driver; a sensing unit for measuring the distance to an external object; a display for providing operating information of a vehicle; and a processor, which analyzes an image captured through a camera so as to track a driver's gaze, determines an external object present at the location at which the tracked driver's gaze is directed, calculates the distance to the determined object through the sensing unit, and controls the display such that the operating information is displayed on the basis of the driver's gaze and the distance to the object.
Abstract:
A medical image processing apparatus includes an image processor configured to detect an anatomical organ from a three-dimensional (3D) brain image and determine a plane-of-interest (POI) from the 3D brain image, based on the detected anatomical organ, and an output unit configured to output an image of the POI.
Abstract:
Provided is a magnetic resonance imaging (MRI) apparatus. The MRI apparatus includes: a data acquisition unit configured to acquire a first k-space including a first missing line by undersampling an MR signal received from an object at a first time point, acquire a second k-space including a first acquired line corresponding to the first missing line by undersampling an MR signal received from the object at a second time point, and acquire a third k-space including a second acquired line corresponding to the first missing line by undersampling an MR signal received from the object at a third time point; and an image processor configured to interpolate data in the first missing line based on data in the first and second acquired lines.