• 제목/요약/키워드: flat-screen

검색결과 123건 처리시간 0.026초

자궁경부 편평상피병변에서 자궁경부질도말 세포검사의 진단정확도 : 481예의 세포-조직 상관관계 (Diagnostic Accuracy of Cervicovaginal Cytology in the Detection of Squamous Epithelial Lesions of the Uterine Cervix; Cytologic/Histologic Correlation of 481 Cases)

  • 진소영;박상모;김미선;진윤미;김동원;이동화
    • 대한세포병리학회지
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    • 제19권2호
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    • pp.111-118
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    • 2008
  • Background : Cervicovaginal cytology is a screening test of uterine cervical cancer. The sensitivity of cervicovaginal cytology is less than 50%, but studies of cytologic/histologic correlation are limited. We analyzed the diagnostic accuracy of cervicovaginal cytology in the detection of the squamous epithelial lesions of the uterine cervix and investigate the cause of diagnostic discordance. Materials and Methods : We collected a total of 481 sets of cervicovaginal cytology and biopsies over 5 years. The cytologic diagnoses were categorized based on The Bethesda System and the histologic diagnoses were classified as negative, flat condyloma, cervical intraepithelial neoplasia (CIN) I, CIN II, CIN III, or squamous cell carcinoma. Cytohistologic discrepancies were reviewed. Results: The concordance rate between the cytological and the histological diagnosis was 79.0%. The sensitivity and specificity of cervicovaginal cytology were 80.6% and 92.6%, respectively. Its positive predictive value and negative predictive value were 93.7% and 77.7%, respectively. The false negative rate was 19.4%. Among 54 false negative cytology cases, they were confirmed by histology as 50 flat condylomas, 2 CIN I, 1 CIN III, and 1 squamous cell carcinoma. The causes of false negative cytology were sampling errors in 75.6% and interpretation errors in 24.4%. The false positive rate was 7.4%. Among 15 false positive cytology cases, they were confirmed by histology as 12 atypical squamous cells of undetermined significance (ASCUS) and 3 low grade squamous intraepithelial lesions (LSIL). The cause of error was interpretation error in all cases. The overall diagnostic accuracy of cervicovaginal cytology was 85.7%. Conclusions : Cervicovaginal cytology shows high overall diagnostic accuracy and is a useful primary screen of uterine cervical cancer.

잉크제트 프린터를 이용한 섬유인쇄 시 노즐 관에서의 입자 흐름 (Stokesian Dynamic Simulation of Pigment Flow in Ink Jet Printer Nozzle)

  • 김영대;이무성;최창남;이기영
    • 청정기술
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    • 제7권3호
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    • pp.169-178
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    • 2001
  • 섬유염색은 전 세계적으로 매우 큰 시장이나, 염료를 사용하여 섬유염색을 수행하는 기존 인쇄 공정의 경우 염료의 손실 및 환경오염의 문제점을 갖고 있다. 기존 공정들의 경우 섬유 인쇄 시 전처리 및 후처리 공정이 필요하고 이들 공정에서 폐수가 발생하게 된다. 이런 문제점들의 해결방안으로 전처리 및 후처리 공정이 필요없고 잉크를 효율적으로 사용할 수 있는 잉크제트 프린팅 기법을 섬유염색 기술에 적용하려는 노력이 진행중이다. 섬유인쇄를 위해 잉크제트 프린터를 사용할 경우 안료를 사용하기 때문에 잉크는 액체 상에 고체입자가 분산되어 있는 서스펜션 상태로 존재한다. 분자역학 모사 기법과 유사한 Stokesian 역학 모사 방법을 사용한 전산모사를 통해 외부에서 가해진 압력구배에 의해 노즐 관에 흐르는 분산잉크 중의 입자 분포 및 속도 분포 변화를 살펴보았다. 전산모사결과 입자의 부피분율이 낮을수록, 평균 무차원 서스펜션 속도가 낮을수록, 노즐 관과 입자 크기 사이의 비(H/a)가 클수록 입자들의 분포가 상당히 균일한 것으로 나타났다. 따라서 잉크제트 프린팅 기법을 사용하여 섬유인쇄를 수행하는 경우, 노즐 관에의 유속을 작게 하고 노즐 관과 입자 사이의 크기 비를 크게 해야 균일한 인쇄 성능을 얻을 수 있을 것으로 판단된다.

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대형 Digital TV용 Display Unit의 강성 측정 (Elastic Modulus Measurement of a Large Size Digital TV Display Unit)

  • 김창희;문성인;최재붕;김영진;이정권;구자춘
    • 한국정밀공학회지
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    • 제22권3호
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    • pp.115-122
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    • 2005
  • As the digital TV markets rapidly growing, many manufacturers introduce large size flat screen TV units. There are two different display types available to large size models which are plasma and TFT-LCD. Since both are constructed with thin large panels that are mostly fragile to even moderate mechanical shock inputs. Some large size panels are severely resonated by the acoustic sound generated TV which deteriorates video quality. Recognizing the potential problems of large displays, accurate measurement of the panels is to be an essential task for the reliable design. Measurement of mechanical properties of a thin large crystallized panel such as TFT-LCD display with traditional material testing equipments is challenging. Since TFT-LCDs are constructed with combination of brittle glass panels, polymer sheets, and liquid crystal, their properties are not only anisotropic but also usually non-linear. Accurate measurement of the properties often requires very expensive facilities. Especially when the size of the test sample is as large as 40-inch or wider, direct measurement cost is prohibitive. Even worse, machining of the large TFT-LCD to make a smaller size specimen that could be fit into a material tester is not possible because of liquid crystal leakage. A new method fer the measurement of elastic modulus of large TFT-LCD panel is presented in this article. The suggested method provides a simple, economic, and user-friendly way fer measuring the elastic modulus of large panels with considerable level of accuracy.

몰드와 전자기파에 의한 PDP격벽의 성형에 관한 연구 (A Study on Plasma Display Panel Barrier Rib Fabrication by Mold and Electromagnetic Wave)

  • 손재혁;임용관;정영대;정성일;정해도
    • 한국정밀공학회지
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    • 제19권6호
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    • pp.176-183
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    • 2002
  • Plasma Display Panel(PDP) is a type of flat panel display utilizing the light emission produced by gas discharge. Barrier Ribs of PDP separating each sub-pixel prevents optical and electrical crosstalks from adjacent sub-pixels. The mold for forming the barrier ribs has been newly researched to overcome the disadvantages of conventional manufacturing processes such as screen printing, sand-blasting and photosensitive glass methods. The mold for PDP barrier ribs have stripes of micro grooves transferring glass-material wall. In this paper , Stripes of grooves of which width 48$\mu$m, depth 124$\mu$m , pitch 274$\mu$m was acquired by machining of single crystal silicon with dicing saw blade. Maximum roughness of the bottom of the grooves was 59.6 nm Ra in grooving Si. Barrier ribs were farmed with silicone rubber mold, which is transferred from grooved Si forming hard mold. Silicone rubber mold has the elasticity, which enable to accommodate the waviness of lower glass plate of PDP. The methods assisted by the microwave and UV was adopted for reducing the forming time of glass paste.

PDP 격벽 성형용 몰드 제작과 성형에 대한 연구 (A Study on Mold Fabrication and Forming for PDP Barrier Ribs)

  • 조인호;정상철;정해도;손재혁
    • 한국정밀공학회지
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    • 제18권5호
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    • pp.171-176
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    • 2001
  • Plasma Display Panel(PDP) is a type of flat panel display utilizing the light emission produced by gas discharge. Barrier Ribs of PDP separating each sub-pixel prevents optical and electrical crosstalks from adjacent sub-pixels. Mold for forming barrier ribs has been newly researched to overcome the disadvantages of conventional manufacturing process such as screen printing, sand-blasting and photosensitive glass methods. Mold for PDP barrier ribs have stripes of micro grooves transferring glass-material wall. In this paper, Stripes of grooves of which width 48${\mu}{\textrm}{m}$ and 270${\mu}{\textrm}{m}$, depth 124${\mu}{\textrm}{m}$, pitch 274${\mu}{\textrm}{m}$ was acquired by machining hard and brittle materials of WC, Silicon, Alumina with dicing saw blade. Maximum roughness of the bottom and sidewall of the grooves was respectively 120nm, 287nm in grooving WC. Maximum tilt angle caused by difference between upper-most width and lower-most width was 2$^{\circ}$. Maximum Radius of bottom curvatures was 7.75${\mu}{\textrm}{m}$. This results satisfies the specification for barrier ribs of 50 inch XGA PDP if the groove form of mold was fully transferred to the barrier ribs. Barrier ribs were formed with Silicone rubber mold, which is transferred from grooved hard materials. Silicone rubber mold has elasticity accommodating the waveness of lower glass plate of PDP.

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셀룰로오스 혼방 니트 편포의 착색번아웃 날염복합기술에 관한 연구 (A Study on the Cellulose Blend Knit Fabrics using Burn-out Printing Convergence Technology)

  • 조호현;정명희;이종렬
    • 한국의상디자인학회지
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    • 제16권4호
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    • pp.229-235
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    • 2014
  • This study conducted a research on burn-out printing convergence technology for cellulose blend knit fabrics. Printing technology, which forms color pattern on the fabric, can be generally classified into four according to printer or printing method, e.g. screen printing, roller printing, rotary printing, digital printing. However, these printing methods are flat in design or pattern, which have limitation to overcome monotonousness of fabric, so that recently burn-out process method, which expresses three-dimensional pattern effect by treating chemical on the surface of fabric as the method to appeal its esthetics to the customers. Particularly, in case of cellulose/polyester composite material, first, it is proceeded in 2 processes, by dyeing cellulose or polyester fabric and burning out cellulose fabric, in this process, due to pollution caused by disperse dye migration, color of polyester fabric part could be discolored, which has high falt risk. This research considered coloring burn-out technique, which simultaneously proceed dyeing and burn-out by reducing dyeing and burn-out process to 1 stage, which were proceeded in 2 stages previously. As the research result, it was confirmed that reasonable depth of roller was 0.04~0.06mm in roller printing process, heat treatment condition of burn-out far-infrared radiation was $185^{\circ}C{\times}30m/min$. Color fastness to washing was confirmed to be 4-5 grade, color fastness to rubbing, 3-4 grade, color fastness to light, 4 grade. Also, it was confirmed that energy reduction effect appeared 38.19%, in case of energy cost per yard compared to the existing production, also, 19.74%, in case of production cost.

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입자침전법을 이용한 광도전체 필름의 X선 반응 특성에 관한 연구

  • 최치원;강상식;조성호;권철;남상희
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2007년도 하계학술대회 논문집 Vol.8
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    • pp.176-176
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    • 2007
  • Flat-panel direct conversion detectors used in compound substance of semiconductor are being studied for digital x-ray imaging. Recently, such detectors are deposited by physical vapor deposition(PVD) generally. But, most of materials (HgI2, PbI2, TlBr, PbO) deposited by PVD have shown difficult fabrication and instability for large area x-ray imaging. Consequently, in this paper, we propose applicable potentialities for screen printing method that is coated on a substrate easily. It is compared to electrical properties among semiconductors such as $HgI_2$, $PbI_2$, PbO, HgBrI, InI, and $TlPbI_3$ under investigation for direct conversion detectors. Each film detector consists of an ~25 to $35\;{\mu}m$ thick layer of semiconductor and was coated onto the substrate. Substrates of $2cm{\times}2cm$ have been used to evaluate performance of semiconductor radiation detectors. Dark current, sensitivity and physics properties were measured. Leakage current of $HgI_2$ as low as $9pA/mm^2$ at the operation bias voltage of ${\sim}1V/{\mu}m$ was observed. Such a value is not better than PVD process, but it is easy to be fabricated in high quality for large area x-ray Imaging. Our future efforts will concentrate on optimization of growth of film thickness that is coated onto a-Si TFT array.

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Evolution of spatial light modulator for high-definition digital holography

  • Choi, Ji Hun;Pi, Jae-Eun;Hwang, Chi-Young;Yang, Jong-Heon;Kim, Yong-Hae;Kim, Gi Heon;Kim, Hee-Ok;Choi, Kyunghee;Kim, Jinwoong;Hwang, Chi-Sun
    • ETRI Journal
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    • 제41권1호
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    • pp.23-31
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    • 2019
  • Since the late 20th century, there has been rapid development in the display industry. Only 30 years ago, we used big cathode ray tube displays with poor resolution, but now most people use televisions or smartphones with very high-quality displays. People now want images that are more realistic, beyond the two-dimensional images that exist on the flat screen, and digital holography-one of the next-generation displaysis expected to meet that need. The most important parameter that determines the performance of a digital hologram is the pixel pitch. The smaller the pixel pitch, the higher the level of hologram implementation possible. In this study, we fabricated the world-smallest $3-{\mu}m$-pixel-pitch holographic backplane based on the spatial light modulator technology. This panel could display images with a viewing angle of more than $10^{\circ}$. Furthermore, a comparative study was conducted on the fabrication processes and the corresponding holographic results from the large to the small pixel-pitch panels.

양방향 정전기력 구동 구조에 기반한 고출력 햅틱 진동 액추에이터 모듈 및 인터페이스 개발 (Development of high-power haptic vibration actuator module and interface based on bidirectional electrostatic force driving structure)

  • 김재익;이재경;박영환;서정태;양태헌
    • 문화기술의 융합
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    • 제7권1호
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    • pp.662-667
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    • 2021
  • 진동 햅틱 피드백은 최신 터치 디스플레이의 주요한 기능으로, 화면의 인터페이스와 상호 작용할 때 사용자의 조작성 및 몰입감을 크게 향상시킨다. 본 연구에선 정전기력 기반의 메커니즘을 적용하여 강한 진동 출력을 생성할 수 있으면서도, 얇은 평판 타입으로 제작이 가능하여 중대형 디스플레이의 뒷면에 탑재하기에 적합한 진동 햅틱 액추에이터를 제안하고자 한다. 제안된 액추에이터는 방사형 판스프링에 매달려 전기적으로 접지된 Mass를 이격 되어 있는 상하의 전극에 의해 정전기력으로 상하로 교번하여 진동력을 증폭시킬 수 있는 구조로 개발되었다. 성능평가 결과, 개발된 액추에이터가 2개 내장된 Bar-Type 모듈에서 170 Hz에서 최대 3.3g의 우수한 진동 출력을 보여, 중대형 터치 디스플레이에서 햅틱 피드백 제공에 대한 가능성이 확인되었다.

영상유도 양성자치료를 위한 콘빔 CT 재구성 알고리즘: 기하학적 보정방법에 관한 연구 (Geometric Calibration of Cone-beam CT System for Image Guided Proton Therapy)

  • 김진성;조민국;조영빈;윤한빈;김호경;윤명근;신동호;이세병;이레나;박성용;조관호
    • 한국의학물리학회지:의학물리
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    • 제19권4호
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    • pp.209-218
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    • 2008
  • IMRT, 양성자 치료와 같이 방사선 치료 기술이 발전할수록 치료 시 환자의 위치를 확인하고 그 정확성을 평가하는 기술의 중요성이 강조되고 있다. 현재 국립암센터 양성자치료센터에 설치되어 있는 양성자 치료기의 단순 X-선 영상시스템을 이용하여 콘빔 CT (cone-beam CT) 3차원 영상을 획득, 영상유도 방사선 치료의 가능성을 확인하고자 하였다. 양성자 치료기에 설치되어있는 X-선 영상시스템(SDD: 2,108 mm, SOD: 1,511 mm, Varian a277 x-ray tube & Varian Paxscan 4030: a-Si+DRZ screen)을 이용하여 양성자 갠트리를 $2^{\circ}$씩 회전시켜가면서 기하학적인 오차 측정을 위한 팬톰과 인체 팬톰 (Humanoid phantom, Rando, CA, USA)의 투사영상을 획득하였다. 현재 시스템적으로 연속적인 회전과 영상획득이 지원되지 않아서 영상획득 후 갠트리를 회전하는 방법으로 투사영상을 획득하였다. 기하학적 오차측정을 위한 팬텀과 두경부 팬텀에 대해서 $360^{\circ}$를 회전하며 180장의 투사영상($2,304{\times}3,200$, 14 bit with 127${\mu}m$ pixel pitch)을 관전압 85 kVp, 관전류 80 mA, 조사시간 0.5 s의 조건으로 촬영하였다. 콘빔 CT 영상재구성을 위해 Ram-Lak filter를 적용한 Feldkamp cone-beam 알고리즘을 사용하였으며, 획득한 180장의 투사영상을 사용하여 $0.4{\times}0.4{\times}0.4mm^3$의 voxel size를 가진 $512{\times}512{\times}512$ CT영상을 재구성하였다. 기하학적인 오차 측정방법을 통해 X-선 선원, 검출기와 갠트리의 기하학적 정보를 측정하였다. 측정된 결과에 의하면 검출기가 $0.25^{\circ}$ 회전된 오차를 보이는 것을 발견하였다. 기하학적 교정으로 재구성된 콘빔 CT 영상을 multi-planar view (axial, sagittal and coronal view) 및 3차원 영상으로 재구성하여 비교 평가 하였다. 현재 양성자치료기에 설치되어있는 단순 X-선 영상 시스템에서 기하학적 오차 측정을 위한 볼 팬텀을 이용하여 시스템의 오차를 측정하였다. 측정한 오차를 바탕으로 기하학적 교정을 통해서 두경부 및 복부 팬텀에 대한 3차원 영상인 콘빔 CT 영상들을 재구성하였다. 추후 연속적인 회전을 통한 영상획득이 가능하게 된다면, 보다 정확하고 신속한 영상재구성이 가능 하며 콘빔 CT가 영상유도 양성자 치료에 매우 유용할 것으로 사려된다.

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