
http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.
변환된 중국어를 복사하여 사용하시면 됩니다.

김진홍,조철효,김두영,Kim, Jin-Hong,Jo, Cheol-Hyo,Kim, Du-Yeong 한국정보처리학회 1994 정보처리논문지 Vol.1 No.4
True Color 영상은 전송 및 저장에 많은 데이터 량이 필요하지만, 적은 데이터를 가지고 컬러 모니터에 나타낼 때 인간 시각에 별무리없이 나타내고자 한다. 본 논문 에서는 RGB, YIQ/YUV 공간에서 256개의 컬러맵 생성 방법과 서로 다른 컬러맵을 한 화면에 동시에 표시하면 원 컬러 영상과 다르게 나타나므로 컬러맵간을 결합하여 공 통되는 컬러맵 표현 방법을 제시한다. RGB, YIQ/YUV 공간상에서 처리된 결과를 비교하 기 위해 PSNR, 표준편차, Sobel연산자를 이용한 에지보존율로서 측정하였다. 처리시간 은 새로운 컬러맵 생성은 3초, 컬러맵간의 결합은 2초 소요되었다. PSNR 값은 RGB 공 간이 YIQ 공간과 YUV 공간보다 평균적으로 0.15, 0.34[dB] 정도 높고, 표준편차는 평균적으로 0.15, 0.41정도 낮았다. 그러나 데이타 압축 면에서 YIQ/YUV공간은 색상 부분에서 8비트중 4비트만을 사용하였기 때문에, RGB 공간보다 1/3정도 압축 효율을 나타낸다. A true color image is needed many data on the occasion of the transmission and storage. Therefore, we want to describe color image by a minority data without unreasonableness at eyesight. In this paper, it is presented 256 colormap construction method in RGB, YIQ/YUV space and common colormap expression method at merge between colormaps by reason of dissimilar original color image to display at a monitor for each other colormap at the same time. In comparison with processed result in RGB, YIQ/YUV space, it was measured by PSNR, standard variation, and edge preservation rate using sobel operator. Process time is 3second in colormap construction and 2second in merge between colormaps. In the PSNR value, RGB space has higher 0.15, 0.34 on an average than YIQ and YUV spae. Standard variation has lower in 0.15, 0.41 on an average than Yiq and YUV space. But in the data compression, YIQ/YUV space have about 1/3 compression efficiency than RGB space by reason of use to only 4bit of 8bit in color component.

김진홍,김홍수,이문성,조성원,심찬섭,조영덕,김선주 대한소화기내시경학회 1990 Clinical Endoscopy Vol.11 No.1
Endoscopic biliary stents provide effective palliation of malignant obstructive jaundice in patients who are not surgical candidates. Unfortunately the stents in current use have a tendency to block. The clogging phenomenon also severely restricts the value of stents in patients with benign strictures. We studied the mechanism of the occlusion of biliary stents to find ways to prevent it. We have examined 17 blocked stents by electron microscopy(EM), infrared absorption spectrophotometry, and bacteriological cultures. The mean time to stent clogging with 10 french stents was 131 days, and with 12 French stents was 143 days. The differece between the clogging time of the two stents was statistically not sigificant. Scanning EM showed that the internal surfaces of the stent were covered with bacteria embedded in a condensed fibrillar intercellular matrix. The bacteris form a surrounding fibrillar extracellular product which anchors them to the stent. Inorganic crystals were rarely seen, because they presumable dissolved during the fixing for EM. These EM findings are typical of a biofilm. As major components of the occluding material calcium bilirubinate was identified in 15 stents by infrared absorption spectrophotometry. 7 different microorgainsms were isolated from the 17 blocked biliary stents. 6 of the isolates were gram-negative, and 1 was gram-positive. The most frequently isolated genus was Escherichia, which was found in 8 stents, followed by proteus, Pseudomonas, and Morganella, which was found in 2 stents respectvely. We propose that stent colgging is initiated by bacterial adhesion and growth of a biofilm. The bacteria then deconjugate bilirubin in bile and the lumen is progressively occluded by deposition of calcium bilirubinate and further biofilm formation.