Abstract:
A window management method in an electronic device and an electronic device thereof are provided. The method includes receiving, by a controller, a user input event generated in association with a selection of an item displayed in a display area of a display; and outputting, to the display, by a display control module, a plurality of windows corresponding to the selected item and information indicating at least one output capable window corresponding to the selected item and available to be output in a specified form in a specified area.
Abstract:
Disclosed herein are glass bubbles that are surface treated to obtain a metallic texture, and have a similar specific gravity to that of plastic. Thus, there is a low possibility of occurrence of appearance defects even when a material obtained by compounding the glass bubbles and the plastic is injection molded and a master batch including the glass bubbles and plastic to improve a miscibility of the glass bubbles and the plastic. The glass bubbles each include a spherical shell and a surface treatment layer formed on a surface of the shell, the spherical shell having a hollow hole so as to decrease a specific gravity of the glass bubbles and the surface treatment layer being formed by surface treatment to obtain a metallic texture.
Abstract:
A method of creating a model of an organ, includes creating a shape model, including a blood vessel structure, of the organ based on three-dimensional (3D) images of the organ, and compartmentalizing the shape model into areas based on an influence of a blood vessel tree with respect to a deformation of the shape model, the blood vessel tree indicating the blood vessel structure. The method further includes deforming the blood vessel structure of the shape model to fit a blood vessel structure of a two-dimensional (2D) image of the organ, and creating the model of the organ based on the deformed blood vessel structure and the areas.
Abstract:
Provided is an apparatus and method to create a model of a target organ of a patient. The apparatus and method generate a deformation matrix between at least two shape models of a target organ based on at least two three-dimensional (3D) images of the target organ. The apparatus and method also extract constraints about the target organ from a two-dimensional (2D) image of the target organ. The apparatus and method create the model of the target organ based on the constraints and the deformation matrix.
Abstract:
A semiconductor memory device may include includes a bit line and a back gate strap line extending on a substrate, an active pattern on the bit line and the back gate strap line, a word line on a first side wall of the active pattern, a back gate electrode on a second side wall of the active pattern and connected to the back gate strap line, a data storage pattern connected to a face of the active pattern, and a word line contact plug connected to the word line. A first face of the back gate electrode and a first face of the word line may face the bit line and the back gate strap line. The first face of the back gate electrode may be connected to the back gate strap line. A second face of the word line may be connected to the word line contact plug.
Abstract:
Disclosed are a display apparatus including a display panel on which an image is displayed, a cover including a side portion configured to cover upper and lower side surfaces and left and right side surfaces of the display panel and a rear portion configured to cover an outer peripheral region of a rear surface of the display panel, and a rear cover coupled to the middle cover and configured to cover the rear surface of the display panel, and a hot stamping system for the same. A thin film having a particular color is attached to the side portion via the hot stamping system, which enables easy manufacture of the display apparatus having various colors of covers.
Abstract:
Provided is a method and apparatus for computing an amount of deformation of an object. A parameter used to compute an amount of deformation in real time may be derived based on a shape model of the object, prior to computing an amount of deformation in real time. Accordingly, an amount of deformation of the object in real time may be predicted based on the parameter.
Abstract:
A vessel segmentation method includes acquiring an image of a blood vessel, including cross sections, using a contrast medium. The method further includes setting a threshold value for each of the cross sections based on data of an intensity of the contrast medium. The method further includes performing vessel segmentation based on the image and the threshold value for each of the cross sections.
Abstract:
Disclosed are a display apparatus including a display panel on which an image is displayed, a cover including a side portion configured to cover upper and lower side surfaces and left and right side surfaces of the display panel and a rear portion configured to cover an outer peripheral region of a rear surface of the display panel, and a rear cover coupled to the middle cover and configured to cover the rear surface of the display panel, and a hot stamping system for the same. A thin film having a particular color is attached to the side portion via the hot stamping system, which enables easy manufacture of the display apparatus having various colors of covers.