• 제목/요약/키워드: Laser arrays

검색결과 73건 처리시간 0.017초

화살의 이동궤적을 위한 하드웨어 구성 및 패러독스 측정 (Hardware Configuration and Paradox Measurement for the Determination of Arrow Trajectory)

  • 정영상;유정원;이한수;김성신
    • 한국생산제조학회지
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    • 제21권3호
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    • pp.459-464
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    • 2012
  • The point of impact, the shot group, and the flight traces depend on the combination of unique features which decide moving traces of the arrow (paradox of the archer, length of the arrow shaft, weight, angle of the feather, and spline of the arrow shaft). The more dense the impact points in the shot group and the earlier elimination of paradox of the archer, the higher assessment is given for the product. However, there is no way to objectively assess the efficiency and quality of the arrow, and there is no numeric data to be used as the basis for comparison with other products. Although capturing the images of flying arrow using a high-speed motion picture camera is possible, we are limited to observation from specific view angle only. Hence, the criteria for efficiency and quality assessment are mostly based on subjective opinions of experts or hunters, or review on consumers' remarks. In this paper, we propose a hardware composition that are based on three detection frames consisting of line lasers and photo diode arrays without the high-speed motion picture camera. Predicated on measured coordinates data, a nobel method for the archer's paradox measurement, a key parameter that determine the arrow's trajectory, and corresponding numerical analysis model is proposed.

A Multi-detection Fluorescence Dye with 5-ALA and ICG Using Modified Light Emitting Diodes

  • Yoon, Kicheol;Kim, Eunji;Kim, Kwanggi;Lee, Seunghoon;Yoo, Heon
    • Current Optics and Photonics
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    • 제3권3호
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    • pp.256-262
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    • 2019
  • Extensive tumor resection accompanied by radiotherapy and chemotherapy is the standard of care for malignant gliomas. However, there is a significant obstacle to the complete resection of the tumor due to the difficulty of distinguishing tumor and normal brain tissue with a conventional surgical microscope. Recently, multiple studies have shown the possibility of fluorescence-guided surgery in malignant gliomas. The most used fluorescence dyes for brain tumor surgery are 5-aminolevulinic acid (5-ALA) and indocyanine green (ICG). In this paper, a new fluorescence guided operation system, which can detect both 5-ALA and ICG fluorescent images simultaneously, is presented. This operation system consists of light emitting diodes (LEDs) which emits 410 nm and 740 nm wavelengths. We have performed experiments on rats in order to verify the operation of the newly developed operation system. Oral administration and imaging were performed to observe the fluorescence of 5-ALA and ICG fluorescence in rats. When LEDs at wavelengths of 410 nm and 740 nm were irradiated on rats, 628 nm wavelength with a violet fluorescence color and 825 nm wavelength with a red fluorescence color were expressed in 5-ALA and ICG fluorescent material, respectively, thus we were able to distinguish the tumor tissues easily. Previously, due to the poor resolution of the conventional surgical microscope and the fact that the color of the vein is similar to that of the tumor, the tumor resection margin was not easy to observe, thus increasing the likelihood for cancer recurrence. However, when the tumor is observed through the fluorescence guided operation system, it is possible to easily distinguish the color with the naked eye and it can be completely removed. Therefore, it is expected that surgical removal of cancerous tumors will be possible and surgical applications and surgical microscopes for cancer tumor removal surgery will be promising in the future.

파노라믹 스캔 라이다 시스템용 4-채널 차동 CMOS 광트랜스 임피던스 증폭기 어레이 (Four-Channel Differential CMOS Optical Transimpedance Amplifier Arrays for Panoramic Scan LADAR Systems)

  • 김상균;정승환;김성훈;;최한별;홍채린;이경민;어윤성;박성민
    • 전자공학회논문지
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    • 제51권9호
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    • pp.82-90
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    • 2014
  • 본 논문에서는 선형성을 가진 파노라믹 스캔 라이다(PSL) 시스템용의 4-채널 차동 트랜스임피던스 증폭기 어레이를 0.18-um CMOS 공정을 이용하여 구현하였다. PSL시스템을 위한 성능의 비교분석을 위하여 전류모드 및 전압모드의 두 종류 트랜스임피던스 어레이 칩을 각각 구현하였으며, 채널당 1.25-Gb/s 동작속도를 갖도록 설계하였다. 먼저 전류모드 칩의 경우, 각 채널 광 수신입력단은 전류미러 구조로 구현하였으며, 특히 로컬 피드백 입력구조로 개선하여 낮은 입력저항과 낮은 잡음지수를 가질 수 있도록 설계하였다. 칩 측정 결과, 채널 당 $69-dB{\Omega}$ 트랜스임피던스 이득, 2.2-GHz 대역폭, 21.5-pA/sqrt(Hz) 평균 잡음 전류 스펙트럼 밀도, -20.5-dBm 수신감도, 및 1.8-V 전원전압에서 4채널 총 147.6-mW 소모전력을 보이며, 1.25-Gb/s 동작속도에서 크고 깨끗한 eye-diagram을 보인다. 한편, 전압모드 칩의 경우, 각 채널 광 수신입력단은 인버터 입력구조로 구현하여 낮은 잡음지수를 갖도록 설계하였다. 칩 측정 결과, 채널 당 $73-dB{\Omega}$ 트랜스임피던스 이득, 1.1-GHz 대역폭, 13.2-pA/sqrt(Hz) 평균 잡음 전류 스펙트럼 밀도, -22.8-dBm수신감도, 및 4채널 총 138.4-mW 소모전력을 보이며, 1.25-Gb/s 동작속도에서 크고 깨끗한 eye-diagra을 보인다.