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정확한 깊이 맵을 위한 전처리 과정과 다이나믹 프로그래밍에 관한 연구
김영섭,송응열,Kim, Young-Seop,Song, Eung-Yeol 한국반도체디스플레이기술학회 2010 반도체디스플레이기술학회지 Vol.9 No.3
The stereoscopic vision system is the algorithm to obtain the depth of target object of stereo vision image. This paper presents an efficient disparity matching method using nagao filter, octree color quantization and dynamic programming algorithm. we describe methods for performing color quantization on full color RGB images, using an octree data structure. This method has the advantage of saving a lot of data. We propose a preprocessing stereo matching method based on Nagao-filter algorithm using color information. using the nagao filter, we could obtain effective depth map and using the octree color quantization, we could reduce the time of computation.
김영섭,이재현 한국반도체디스플레이기술학회 2011 반도체디스플레이기술학회지 Vol.10 No.3
System to urinalysis using FT-IR instruments is presented based on fuzzy logic knowledge. Linguistic expressions of the possibility of infection and the importance were quantified and membership functions were determined based on general quantitative criteria. Diseases considered were Diabetes Mellitus, Proteinuria, Microalbuminuria. Glucose, Protein, Albumin, Creatinine in 30 samples were analyzed by the present system, which resulted in 74% accuracy. The simple mathematical formulation of present system would enable an easy implementation in commercial analysis instruments. Also, the identical fuzzy logic can be applied to similar diagnostic environments in general.
김영섭,김영혜,김종빈,이동우,강현정,장대수 한국패류학회 2010 The Korean Journal of Malacology Vol.28 No.3
Reproductive biology of the purplish Washington clam, Saxidomus purpuratus was investigated based on the samples captured in Jinhae Bay, the East China Sea from January to December 2002. The gonad index (GI) began to increase in January, reached the maximum value in March. The reproductive cycle of this species can be divided into five successive stages: the early active stage (from November to January), the late active stage (from December to February), the ripe stage (from February to May and October), the spawned stage (from May to December), and inactive stage (from November to December). The spawning period was from April to December, and the main spawning occurred between June and August. The shell length at 50% group maturity was estimated to be 71.85 mm. The Sex ratio of this species was not significantly different a 1:1 sex ratio (P > 0.05). 개조개 표본은 동중국해의 진해만에서 잠수선에 의해 어획된 것을 2002년 1월부터 12월까지 매월 120개체씩 채집된것이다. 생식소 발달단계는 비활성기 (11월-12월), 초기활성기(11월-이듬해 1월), 후기활성기 (12월-이듬해 2월), 성숙기 (2월-5월과 10월), 산란기 (4월-12월) 등 5단계로 구분되었다. 주산란시기 6월부터 8월까지이었다. 성숙각장은 71-85mm로추정되었다. 암컷과 수컷 성비 (♀:♂)는 유의한 차가 없었으므로 1:1이었다.
새끼 하마에서 Clostridium perfringens Type A 감염 증례
김영섭,임숙경,신남식 한국임상수의학회 2008 한국임상수의학회지 Vol.25 No.4
C. perfringens is the most important enteric clostridial pathogen of animals. C. perfringens type A has been associated with hemorrhagic enteritis in a wide lange of domestic and wild mammals. But all types of C. perfringens can be normal inhabitants of the intestine of most mammals. We have a special case that showed C. perfringens type A infection in a hippopotamus (Hippopotamus amphibius) cub at Seoul Grand Park Zoo. Male, hippopotamus cub died in 3 days after birth. Clinical features of the hippopotamus cub have showed lethargy and anorexia before death. Gross post-mortem findings of the hippopotamus were hemorrhagic enteritis of intestine. Histopathologically, ruminant stomach and intestine showed hemorrhagic lesions and the lumen of the small intestine was filled with mucoid and hemorrhagic fluid. Also, intestine and stomach of hippopotamus were distended with gas and hemorrhagic fluid. C. perfringens was isolated in culture of small intestine and the presence of C. perfringens type A was confirmed by PCR. This case indicated that C. perfringens type A could be considered as a virulence factor responsible for causing death of a newborn hippopotamus.
텍스쳐 분류 및 검출을 위한 강인한 특징이미지에 관한 연구
김영섭,안종영,김상범,허강인 한국인터넷방송통신학회 2010 한국인터넷방송통신학회 논문지 Vol.10 No.5
본 논문에서는 이미지에 대한 공간 특성(Spatial properties) 및 통계적 특성(Statistical properties)을 포함한 특징이미지를 구성하고, 지역 분산 크기를 이용한 공분산 행렬을 생성하여 텍스쳐 분류에 이용함으로서 조도(illumination) 및 노이즈(Noise) 그리고 회전(Rotation)에 강인한 텍스쳐 분류 방법을 제안한다. 또한 영역 합계의 빠른 연산을 위해 사용된 중간 이미지 표현인 적분 이미지(Integral Image)를 이용함으로서 텍스쳐 검출 프로세스의 수행 시간을 최소화 하는 방법을 제공한다. 제안한 방법의 성능 평가를 위해 브로다츠(Brodatz) 질감 이미지를 이용하여 잡음 추가 및 히스토그램 명세화 그리고 회전 이미지를 생성하여 실험하였으며, 96% 이상의 성능을 얻을 수 있었다. In this paper, we make up a feature image including spatial properties and statistical properties on image, and format covariance matrices using region variance magnitudes. By using it to texture classification, this paper puts a proposal for tough texture classification way to illumination, noise and rotation. Also we offer a way to minimalize performance time of texture classification using integral image expressing middle image for fast calculation of region sum. To estimate performance evaluation of proposed way, this paper use a Brodatz texture image, and so conduct a noise addition and histogram specification and create rotation image. And then we conduct an experiment and get better performance over 96%