• 제목/요약/키워드: Light field imaging

검색결과 131건 처리시간 0.025초

EPID의 적정관리 도구로서의 유용성에 관한 연구 (The useage of the EPID as a QA tools)

  • 조정희;방동완;윤성익;박재일
    • 대한방사선치료학회지
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    • 제11권1호
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    • pp.16-21
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    • 1999
  • Purpose : The aim of this study is to conform the possibility of the liquid type EPID as a QC tools to clinical indication and of replacement of the film dosimetry. Aditional aim is to describe a procedure for the use of a EPID as a physics calibration tool in the measurements of radiation beam parameters which are typically carried out with film. Method & Materials : In this study we used the Clinac 2100c/d with EPID. This system contains 65536 liquid-filled ion chambers arranged in a $256{\times}256$ matrix and the imaging area is $32.5{\times}32.5cm$ with liquid layer thickness of 1mm. The EPID was tested for different field sizes under typical clinical conditions and pixel values were calibrated against dose by producing images using various thickness of lead attenuators(lead step wedge) using 6 & 10MV x-ray. We placed various thickness of lead on the table of linear accelerator and set the portal vision an SDD of 100cm. To acquire portal image we change the field size and energy, and we recorded the average pixel value in a $3{\times}3$ pixel region of interest(ROI) at field center was recorded. The pixel values were also measured for different field sizes in order to evaluate the dependence of pixel value on x-ray energy spectrum and various scatter components. Result : The EPID, as a whole, was useful as a QA tool and dosimetry device. In mechanical check, cross-hair centering was well matched and the error was less than ?2mm and light/radiation field coincidence was less than 1mm also. In portal dosimetry the wider the field size the the higher the pixel value and as the lead thickness increase, the pixel value was exponentially decreased. Conclusions : The EPID was very suitable for QA tools and it can be used to measure exit dose during patients treatment with reasonable accuracy. But when indicate the EPID to clincal study deep consideration required

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도로터널 내/외부의 영상휘도 측정기 연구개발 (Research and development on image luminance meter of road tunnel internal and external)

  • 장순철;박성림;고석용;이미애
    • 한국터널지하공간학회 논문집
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    • 제17권1호
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    • pp.1-9
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    • 2015
  • 본 논문은 터널 조명 시스템을 적절하게 운영하기 위하여, 터널 내부/외부의 휘도를 측정하는 영상휘도계의 개발 내용을 소개한다. 터널을 측정하는 국제규격 CIE88의 L20법 및 광막법이 구현 가능하도록 개발하였으나 현재 주로 적용되는 L20법을 위주로 실험하였다. 독립적 운영을 위하여 컴퓨터가 내장되었으며 외부와는 이더넷 통신으로 연결된다. 내부에 자동 온도조절 기능과 앞면유리의 열선과 와이퍼 시스템이 구축되었다. 정확한 휘도 측정을 위하여 노출시간과 휘도량에 따른 비선형 특성을 보정하는 수식이 적용되었다. 개발된 휘도계의 공인기관 교정결과는 1%미만의 오차를 보여주었다. 개발된 휘도계를 이용하여 실제 터널에서 실험을 하였고, 실험결과 기준 휘도계측기들과 유사한 특성을 보였으며, 매우 안정적으로 작동함을 볼 수 있었다. 다만, 부분적 고휘도로 인한 센서 포화에 의한 측정오차를 해결하는 과제는 남아 있다.

Application of Three-Dimensional Light Microscopy for Thick Specimen Studies

  • Rhyu, Yeon Seung;Lee, Se Jeong;Kim, Dong Heui;Uhm, Chang-Sub
    • Applied Microscopy
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    • 제46권2호
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    • pp.93-99
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    • 2016
  • The thickness of specimen is an important factor in microscopic researches. Thicker specimen contains more information, but it is difficult to obtain well focused image with precise details due to optical limit of conventional microscope. Recently, a microscope unit that combines improved illumination system, which allows real time three-dimensional (3D) image and automatic z-stack merging software. In this research, we evaluated the usefulness of this unit in observing thick samples; Golgi stained nervous tissue and ground prepared bone, tooth, and non-transparent small sample; zebra fish teeth. Well focused image in thick samples was obtained by processing z-stack images with Panfocal software. A clear feature of neuronal dendrite branching pattern could be taken. 3D features were clearly observed by oblique illumination. Furthermore, 3D array and shape of zebra fish teeth was clearly distinguished. A novel combination of two channel oblique illumination and z-stack imaging process increased depth of field and optimized contrast, which has a potential to be further applied in the field of neuroscience, hard tissue biology, and analysis of small organic structures such as ear ossicles and zebra fish teeth.

Development and evaluation of a compact gamma camera for radiation monitoring

  • Dong-Hee Han;Seung-Jae Lee;Hak-Jae Lee;Jang-Oh Kim;Kyung-Hwan Jung;Da-Eun Kwon;Cheol-Ha Baek
    • Nuclear Engineering and Technology
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    • 제55권8호
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    • pp.2873-2878
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    • 2023
  • The purpose of this study is to perform radiation monitoring by acquiring gamma images and real-time optical images for 99mTc vial source using charge couple device (CCD) cameras equipped with the proposed compact gamma camera. The compact gamma camera measures 86×65×78.5 mm3 and weighs 934 g. It is equipped with a metal 3D printed diverging collimator manufactured in a 45 field of view (FOV) to detect the location of the source. The circuit's system uses system-on-chip (SoC) and field-programmable-gate-array (FPGA) to establish a good connection between hardware and software. In detection modules, the photodetector (multi-pixel photon counters) is tiled at 8×8 to expand the activation area and improve sensitivity. The gadolinium aluminium gallium garnet (GAGG) measuring 0.5×0.5×3.5 mm3 was arranged in 38×38 arrays. Intrinsic and extrinsic performance tests such as energy spectrum, uniformity, and system sensitivity for other radioisotopes, and sensitivity evaluation at edges within FOV were conducted. The compact gamma camera can be mounted on unmanned equipment such as drones and robots that require miniaturization and light weight, so a wide range of applications in various fields are possible.

심전도 게이트를 사용한 다관점 도플러 광 단층촬영법 (Electrocardiogram-Gated Multi-Angle Doppler Optical Coherence Tomography)

  • 안예찬
    • 대한기계학회논문집B
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    • 제35권7호
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    • pp.685-691
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    • 2011
  • 본 연구는 도플러 광 단층촬영법이 미세유동 및 미세구조를 동시에 측정하는 첨단 장비임을 보일뿐 아니라 기존의 도플러 광 단층촬영법의 한계를 극복한 새로운 방법을 제시하였다. 기존의 도플러 광단층촬영법은 샘플로 입사되는 광과 같은 방향의 속도성분만을 측정할 수 있다. 본 연구에서는 임의의 속도벡터의 세 성분을 동시에 측정할 수 있는 다관점 도플러 광 단층촬영법을 개발하였고 심전도 게이트를 사용하여 맥동혈류유동의 3 차원 공간 내에서 위상속도 벡터장을 측정하는 심전도 게이트 다관점 도플러 광 단층촬영법의 타당성 조사를 햄스터 모래주머니 모델을 사용하여 수행하였다. 이를 통해 측정 가능한 속도성분의 수를 증가할 뿐 아니라 프레임 레이트가 심박에 비해 상대적으로 느리기 때문에 발생하는 엘리아싱 문제를 해결하였다.

THE CURRENT STATUS OF BIOMEDICAL ENGINEERING IN THE USA

  • Webster, John G.
    • 대한의용생체공학회:학술대회논문집
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    • 대한의용생체공학회 1992년도 춘계학술대회
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    • pp.27-47
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    • 1992
  • Engineers have developed new instruments that aid in diagnosis and therapy Ultrasonic imaging has provided a nondamaging method of imaging internal organs. A complex transducer emits ultrasonic waves at many angles and reconstructs a map of internal anatomy and also velocities of blood in vessels. Fast computed tomography permits reconstruction of the 3-dimensional anatomy and perfusion of the heart at 20-Hz rates. Positron emission tomography uses certain isotopes that produce positrons that react with electrons to simultaneously emit two gamma rays in opposite directions. It locates the region of origin by using a ring of discrete scintillation detectors, each in electronic coincidence with an opposing detector. In magnetic resonance imaging, the patient is placed in a very strong magnetic field. The precessing of the hydrogen atoms is perturbed by an interrogating field to yield two-dimensional images of soft tissue having exceptional clarity. As an alternative to radiology image processing, film archiving, and retrieval, picture archiving and communication systems (PACS) are being implemented. Images from computed radiography, magnetic resonance imaging (MRI), nuclear medicine, and ultrasound are digitized, transmitted, and stored in computers for retrieval at distributed work stations. In electrical impedance tomography, electrodes are placed around the thorax. 50-kHz current is injected between two electrodes and voltages are measured on all other electrodes. A computer processes the data to yield an image of the resistivity of a 2-dimensional slice of the thorax. During fetal monitoring, a corkscrew electrode is screwed into the fetal scalp to measure the fetal electrocardiogram. Correlations with uterine contractions yield information on the status of the fetus during delivery To measure cardiac output by thermodilution, cold saline is injected into the right atrium. A thermistor in the right pulmonary artery yields temperature measurements, from which we can calculate cardiac output. In impedance cardiography, we measure the changes in electrical impedance as the heart ejects blood into the arteries. Motion artifacts are large, so signal averaging is useful during monitoring. An intraarterial blood gas monitoring system permits monitoring in real time. Light is sent down optical fibers inserted into the radial artery, where it is absorbed by dyes, which reemit the light at a different wavelength. The emitted light travels up optical fibers where an external instrument determines O2, CO2, and pH. Therapeutic devices include the electrosurgical unit. A high-frequency electric arc is drawn between the knife and the tissue. The arc cuts and the heat coagulates, thus preventing blood loss. Hyperthermia has demonstrated antitumor effects in patients in whom all conventional modes of therapy have failed. Methods of raising tumor temperature include focused ultrasound, radio-frequency power through needles, or microwaves. When the heart stops pumping, we use the defibrillator to restore normal pumping. A brief, high-current pulse through the heart synchronizes all cardiac fibers to restore normal rhythm. When the cardiac rhythm is too slow, we implant the cardiac pacemaker. An electrode within the heart stimulates the cardiac muscle to contract at the normal rate. When the cardiac valves are narrowed or leak, we implant an artificial valve. Silicone rubber and Teflon are used for biocompatibility. Artificial hearts powered by pneumatic hoses have been implanted in humans. However, the quality of life gradually degrades, and death ensues. When kidney stones develop, lithotripsy is used. A spark creates a pressure wave, which is focused on the stone and fragments it. The pieces pass out normally. When kidneys fail, the blood is cleansed during hemodialysis. Urea passes through a porous membrane to a dialysate bath to lower its concentration in the blood. The blind are able to read by scanning the Optacon with their fingertips. A camera scans letters and converts them to an array of vibrating pins. The deaf are able to hear using a cochlear implant. A microphone detects sound and divides it into frequency bands. 22 electrodes within the cochlea stimulate the acoustic the acoustic nerve to provide sound patterns. For those who have lost muscle function in the limbs, researchers are implanting electrodes to stimulate the muscle. Sensors in the legs and arms feed back signals to a computer that coordinates the stimulators to provide limb motion. For those with high spinal cord injury, a puff and sip switch can control a computer and permit the disabled person operate the computer and communicate with the outside world.

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The Detailed Design of the NISS onboard NEXTSat-1

  • Jeong, Woong-Seob;Park, Sung-Joon;Moon, Bongkon;Lee, Dae-Hee;Park, Won-Kee;Lee, Duk-Hang;Ko, Kyeongyeon;Pyo, Jeonghyun;Kim, Il-Joong;Park, Youngsik;Nam, Ukwon;Kim, Minjin;Ko, Jongwan;Im, Myungshin;Lee, Hyung Mok;Lee, Jeong-Eun;Shin, Goo-Hwan;Chae, Jangsoo;Matsumoto, Toshio
    • 천문학회보
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    • 제40권2호
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    • pp.39.3-40
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    • 2015
  • The NISS (Near-infrared Imaging Spectrometer for Star formation history) onboard NEXTSat-1 is the near-infrared instrument optimized to the first small satellite of NEXTSat series. The capability of both imaging and low spectral resolution spectroscopy in the near-infrared range is a unique function of the NISS. The major scientific mission is to study the cosmic star formation history in local and distant universe. For those purposes, the main targets are nearby galaxies, galaxy clusters, star-forming regions and low background regions. The off-axis optical design of the NISS with two linear variable filters is optimized to have a wide field of view ($2deg.{\times}2deg.$) as well as the wide wavelength range from 0.95 to $3.8{\mu}m$. The mechanical structure is considered to endure the launching condition as well as the space environment. The dewar inside the telescope is designed to operate the infrared detector at 80K stage. From the thermal analysis, we confirmed that the telescope and the dewar can be cooled down to around 200K and 80K, respectively in order to reduce the large amount of thermal noise. The stray light analysis is shown that a light outside a field of view can be reduced below 1%. After the fabrications of the parts of engineering qualification model (EQM), the NSS EQM was successfully assembled and integrated into the satellite. To verify operations of the satellite in space, the space environment tests such as the vibration, shock and thermal-vacuum test were performed. Here, we report the results of the critical design review for the NISS.

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Progress Report on NISS onboard NEXTSat-1

  • Jeong, Woong-Seob;Park, Sung-Joon;Park, Kwijong;Moon, Bongkon;Lee, Dae-Hee;Pyo, Jeonghyun;Park, Youngsik;Kim, Il-Joong;Park, Won-Kee;Lee, Duk-Hang;Park, Chan;Ko, Kyeongyeon;Nam, Ukwon;Han, Wonyong;Im, Myungshin;Lee, Hyung Mok;Lee, Jeong-Eun;Shin, Goo-Hwan;Chae, Jangsoo;Matsumoto, Toshio
    • 천문학회보
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    • 제39권1호
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    • pp.49.1-49.1
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    • 2014
  • The NISS (Near-infrared Imaging Spectrometer for Star formation history) onboard NEXTSat-1 is the near-infrared instrument onboard NEXTSat-1 which is being developed by KASI. The imaging low-resolution spectroscopic observation in the near-infrared range for nearby galaxies, low background regions, star-forming regions and so on will be performed on orbit. After the System Requirement Review, the optical design is changed from on-axis to the off-axis telescope which has a wide field of view (2 deg. ${\times}$ 2 deg.) as well as the wide wavelength range from 0.95 to $3.8{\mu}m$. The mechanical structure is considered to endure the launching condition as well as the space environment. The design of relay optics is optimized to maintain the uniform optical performance in the required wavelength range. The stray light analysis is being made to evade a light outside a field of view. The dewar is designed to operate the infrared detector at 80K stage. From the thermal analysis, we confirmed that the telescope can be cooled down to around 200K in order to reduce the large amount of thermal noise. Here, we report the current status of the NISS development.

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중심 구멍이 있는 구면거울과 평면거울을 이용한 가시광용 반사굴절식 전방위 광학계 (Catadioptric Omnidirectional Optical System Using a Spherical Mirror with a Central Hole and a Plane Mirror for Visible Light)

  • 서현진;조재흥
    • 한국광학회지
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    • 제26권2호
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    • pp.88-97
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    • 2015
  • 전방위 광학계는 360도의 방위각과 지평선 위와 아래의 수직화각에 대한 상을 동시에 결상이 가능한 광학계이다. 본 논문에서는 제작을 쉽게 하면서 크기가 작아지도록 하기 위해서 가운데에 구멍이 뚫려있는 옵스큐레이션(obscuration)을 갖는 구면거울 1장과 평면거울 1장으로 이루어진 거울계 및 이 거울계에서 반사하여 구면거울의 옵스큐레이션을 통과한 시야각 범위 안의 광을 결상하는 구면렌즈 3개와 하나의 구면 이중렌즈로 구성된 결상렌즈계를 사용하는 가시광용 반사굴절식 전방위 광학계를 설계하고 제작하여 전방위 영상을 실제로 결상하였다. 그리고 자동차 앞, 뒷번호판의 영상을 보고 이 전방위 광학계의 통과 공간주파수를 측정하고, ISO 12233 차트의 영상으로부터 전방위 광학계의 수직화각을 측정하여 광학계의 성능을 평가하였다. 이 결과 전방위 광학계의 수직화각은 $+53^{\circ}{\sim}-17^{\circ}$이며, 방위각은 $360^{\circ}$이고, 3 m 거리에서 자동차 앞번호판의 숫자를 구별할 수 있었는데, 이는 135 lp/mm의 통과 공간주파수에 해당한다.

RGB/NIR CMOS 센서에서 정면 영상과 측면 영상을 동시에 결상하는 캡슐 내시경용 개선된 반사굴절식 전방위 광학계의 광학 설계 (Optical Design of a Modified Catadioptric Omnidirectional Optical System for a Capsule Endoscope to Image Simultaneously Front and Side Views on a RGB/NIR CMOS Sensor)

  • 홍영기;조재흥
    • 한국광학회지
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    • 제32권6호
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    • pp.286-295
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    • 2021
  • RGB/NIR CMOS 센서를 사용하여 가시광에서의 정면 시야각과 가시광(RGB) 및 근적외선(near-infrared, NIR)에서의 측면 시야각을 갖는 캡슐 내시경용 개선된 반사굴절식 전방위 광학계(modified catadioptric omnidirectional optical system, MCOOS)를 설계한다. 전방 시야각 내의 영상은 반사굴절식 전방위 광학계(catadioptric omnidirectional optical system, COOS)의 부경 뒤에 배치된 3개의 추가된 렌즈와 COOS의 결상 렌즈계로 구성된 MCOOS의 전방 결상 렌즈계로 결상한다. 측면 영상은 COOS로부터 얻어진다. 이 센서에 대한 가시광과 근적외선에서의 나이퀴스트 주파수는 각각 90 lp/mm와 180 lp/mm이다. 설계 사양에서 전장길이, F-수, 전방과 측면 반화각은 각각 12 mm, 3.5, 70°, 50°-120°로 결정하였다. MCOOS의 COOS에 대한 변조전달함수 0.3에서의 공간주파수, 초점심도, 가시광과 근적외선 영역에서의 공차에 따른 누적 확률은 각각 154 lp/mm, -0.051-+0.052 mm, 99%이다. MCOOS의 정면 결상광학계의 변조전달함수 0.3에서의 공간주파수, 초점 심도, 가시광 영역에서 공차에 따른 누적 확률은 각각 170 lp/mm, -0.035-0.051 mm, 99.9%이다.