Abstract:
PURPOSE: A three-dimensional image producing method using a single camera is provided to rapidly implement a three-dimensional image by manufacturing a three-dimensional image by using one camera. CONSTITUTION: A three-dimensional image production system obtains N images by a camera(S301). The system selects two images. The system performs a geometric compensation process about the selected two images(S303). The system selects a pair of images having a small translation vector(S305). The system generates a three-dimensional image by using the selected images(S307). [Reference numerals] (AA) Start; (BB) End; (S301) Obtaining images of N; (S303) Geometric compensation; (S305) Select a pair of images; (S307) Generate a three-dimensional image
Abstract:
PURPOSE: A three dimensional image generation method from a two dimension medical image is provided to generate the three dimensional image with only single two dimensional image by a program which is able to execute in a general PC without a special equipment, thereby reducing time or cost for special equipment utilization or purchase. CONSTITUTION: A three dimensional image generation method is comprised of following procedures. A two dimension medical image is filtered by a predetermined filtering method(100). A depth map is generated by assigning a dept value according to a gray level of a pixel corresponding to each pixel of filtered image by a mapping rule which is mapping the depth value to the gray level according to a different profile with respect to each sub-interval dividing whole gray level range(104). A left image and right image comprising a stereoscopic image pair by applying the depth map to the two dimensional medical image are generated(106). A three dimensional stereoscopic image is displayed by formatting the left image and right image(108).
Abstract:
The present invention relates to cudrania tricuspidata leaf extract with enhanced kaempferol fermented by lactic acid bacteria enterococcus lactis SCL 1421 isolated from traditional soybean-fermented food. The cudrania tricuspidata leaf extract according to one embodiment of the present invention includes enterococcus lactis. According to the embodiment of the present invention, the cudrania tricuspidata leaf extract has antioxidative activity.
Abstract:
버블 포핑 장치는 공간 좌표를 인식하여 전송하고, 진동 촉감을 전달하기 위한 진동 촉각 데이터를 수신하여 진동을 발생하는 진동 촉각 마우스와 공간 좌표를 기초로 진동 촉각 마우스의 위치를 계산하여 그래픽 마우스로 표시하고, 진동 촉각 마우스에 대응되는 그래픽 마우스가 화면상에 생성된 구 형태의 그래픽 버블과 충돌하는지 판단하여 충돌하는 경우, 충돌 이벤트?상기 충돌 이벤트는 진동 촉각 데이터를 포함함?를 진동 촉각 마우스로 전송하는 디스플레이 장치를 제공한다.
Abstract:
버블 포핑 장치는 공간 좌표를 인식하여 전송하고, 진동 촉감을 전달하기 위한 진동 촉각 데이터를 수신하여 진동을 발생하는 진동 촉각 마우스와 공간 좌표를 기초로 진동 촉각 마우스의 위치를 계산하여 그래픽 마우스로 표시하고, 진동 촉각 마우스에 대응되는 그래픽 마우스가 화면상에 생성된 구 형태의 그래픽 버블과 충돌하는지 판단하여 충돌하는 경우, 충돌 이벤트―상기 충돌 이벤트는 진동 촉각 데이터를 포함함―를 진동 촉각 마우스로 전송하는 디스플레이 장치를 제공한다.
Abstract:
PURPOSE: A method for generating a high resolution depth map from a low resolution depth map and a recording medium thereof are provided to generate the high resolution depth map by using a high-frequency component extracted from the low resolution depth map, thereby improving definition of depth in the inside of an object and a boundary edge. CONSTITUTION: An image processing device extracts a high frequency component from a low resolution depth map generated in a depth sensor(S201). The image processing device interpolates the low resolution depth map by using the high frequency component(S203). The image processing device generates a high resolution depth map through an interpolation process(S205). [Reference numerals] (AA) Start; (BB) End; (S201) Extracting a high frequency component from a low resolution depth map; (S203) Interpolating using the high frequency component; (S205) Generating a high resolution depth map;