• 제목/요약/키워드: Resolution of imaging system

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비공학도를 위한 X-ray 영상촬영 시스템 해상력 평가 방법 (An Evaluation Method of X-ray Imaging System Resolution for Non-Engineers)

  • 우정은;이용금;배석환;김용권
    • 대한방사선기술학회지:방사선기술과학
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    • 제35권4호
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    • pp.309-314
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    • 2012
  • Digital Radiography(DR) 시스템은 임상현장에서 아날로그 시스템을 대체하고 널리 이용되고 있다. DR을 이용하여 얻어진 X선 영상의 해상력을 결정짓는 요소에는 이용되는 검출기의 고유 해상력, 피사체의 대조도 및 특성, X선 선질, X선원의 산란, DR 검출기의 성능, X선 변환효율 및 초점의 크기, 피사체의 움직임 등이 있다. DR 검출기를 구성하는 요소에는 X선 포획 요소, 커플링 요소, 정보수집 요소가 있는데 이들은 시스템의 성능에 영향을 미치며, 그 성능은 해상력으로 평가된다. 의료영상 시스템의 해상력은 촬영대상물의 조직 간의 해부학적 영상을 구분하는 능력을 나타낸다. 해상력 평가를 위해 Modulation Transfer Function(MTF)이 보편적으로 이용되고, MTF는 입력 공간주파수 성분에 대한 출력 공간주파수 성분의 비를 나타내는데, 수학적으로 MTF는 Point Spread Function(PSF) 입력에 대한 시스템의 주파수 응답이며 Edge Phantom을 이용한 결과 영상에서 추출된 Line Spread Function(LSF)을 Fourier Transform하면 얻을 수 있다. 일반적으로 임상현장에서 의료영상시스템의 이용 및 관리의 책임은 방사선사가 맡고 있지만, MTF를 측정하기 위해서는 공학적, 수학적 기초 및 C, Fortran, Matlab등의 프로그램 작성 능력이 필요하기 때문에 비 공학도는 정확한 측정이 불가능하다. 의료영상 시스템의 성능 관리 및 최상의 상태를 유지하기 위해 시스템의 성능평가가 이뤄져야 하는데, 이를 위해 본 연구에서는 비공학도가 해상력 성능평가를 할수 있도록 ImageJ 및 Excel을 이용하여 해상력 평가를 할 수 있도록 방법을 제시하고, 제안된 방법을 이용해 계산된 결과와 프로그래밍을 이용해 계산된 결과의 비교를 통해 본 논문에서 제시하는 방법의 유용성을 확인하였다.

Imaging Mode Design and Performance Characteristics of the X-band Small SAR Satellite System

  • Kwag, Young-Kil
    • 대한원격탐사학회지
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    • 제16권2호
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    • pp.157-175
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    • 2000
  • A synthetic aperture radar (SAR) system is able to provide all-weather, day-and- night superior imaging capability of the earth surface, and thus is extremely useful in surveillance for both civil and military applications. In this paper, the X-band high resolution spaceborne SAR system design is demonstrated with the key design performance for a given mission and system requirements characterized by the small satellite system. The SAR multi-mode imaging technique is presented with a critical parameter assessment, and the standard mode results are analyzed in terms of the image quality performances. In line with the system requirement X-band SAR payload and ground reception/processing subsystems are designed and the major design results are presented with the key performance characteristics. This small satellite SAR system shows the wide range of imaging capability with high resolution, and proves to be an effective surveillance systems in the light weight, high performance and cost-effective points of view.

Development of hand-held coded-aperture gamma ray imaging system based on GAGG(Ce) scintillator coupled with SiPM array

  • Jeong, Manhee;Hammig, Mark
    • Nuclear Engineering and Technology
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    • 제52권11호
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    • pp.2572-2580
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    • 2020
  • Emerging gamma ray detection applications that utilize neutron-based interrogation result in the prompt emission of high-energy (>2 MeV) gamma-rays. Rapid imaging is enabled by scintillators that possess high density, high atomic number, and excellent energy resolution. In this paper, we evaluate the bright (50,000 photons/MeV) oxide scintillator, cerium-doped Gd2Al2Ga3O12 (GAGG(Ce)). A silicon photomultiplier (SiPM) array is coupled to a GAGG(Ce) scintillator array (12 × 12 pixels) and integrated into a coded-aperture based gamma-ray imaging system. A resistor-based symmetric charge division circuit was used reduce the multiplicity of the analog outputs from 144 to 4. The developed system exhibits 9.1%, 8.3%, and 8.0% FWHM energy resolutions at 511 keV, 662 keV, and 1173.2 keV, respectively. In addition, a pixel-identification resolution of 602 ㎛ FWHM was obtained from the GAGG(Ce) scintillator array.

Spatial resolution and natural image quality assessment evaluation of gamma camera image using pinhole collimator in lutetium-yttrium oxyorthosilicate scintillation detector

  • Kyuseok Kim;Youngjin Lee
    • Nuclear Engineering and Technology
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    • 제55권7호
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    • pp.2567-2571
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    • 2023
  • Scintillator materials are widely used in the medical and industrial fields for imaging systems using gamma cameras. In this study, image evaluation is performed by modeling a gamma camera system based on a lutetium-yttrium oxyorthosilicate (LYSO) scintillation detector using a pinhole collimator that can improve the spatial resolution. A LYSO detector-based gamma camera system is modeled using a Monte Carlo simulation tool. The geometric concept of the pinhole collimator is designed using various magnification factors, and the spatial resolution is measured using the acquired source image. To evaluate the resolution, the full width at half maximum (FWHM) and natural image quality assessment (NIQE), a no-reference-based parameter, are used. We confirm that the FWHM and NIQE values decrease simultaneously when the diameter of the pinhole collimator increases. Additionally, we confirm that the spatial resolution improves as the magnification factor increases under the same pinhole diameter condition. Particularly, a 0.57 mm FWHM value is obtained using the modeled gamma camera system with a LYSO scintillation detector. In conclusion, our results demonstrate that a pinhole collimator with a LYSO scintillation detector is a promising gamma camera imaging system.

SAR Imaging에서 Physical Array와 합성 Array 신호의 Subspace 비교를 통한 Wavefront Inversion 기법 입증 (Verification of Wavefront Inversion Scheme via Signal Subspace Comparison Between Physical and Synthesized Array Data in SAT Imaging)

  • 최정희
    • 전자공학회논문지D
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    • 제36D권4호
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    • pp.34-41
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    • 1999
  • Synthetic Aperture Radar 시스템은 레이더 또는 목적물을 일정거리 또는 시간 간격동안 움직여가면서 반사되는 신호를 측정하여 동시에 처리해 줌으로써 안테나 크기를 크게 하는 효과를 가지게 되므로 목적물의 형체를 파악하는 Imaging 시스템의 일종이다. Imaging의 성패는 어떤 Modeling 과 Inversion 과정을 거치느냐에 달려 있는데 본 논문에서는 가장 Approximation이 적은 Wavefront reconstruction 기법을 적용하여 SAR 모델에서 획득한 데이터와 같은 크기의 실제 안테나가 있다고 가정하였을 때의 데이터와 이론적이고 실험적인 Signal Subspace 비교를 수행하였다. 이 연구를 통해 새로운 기법인 Wavefront reconstruction 알고리즘을 충분히 뒷받침해 줄 수 있는 결과를 얻을 수 있다.

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Development and performance evaluation of large-area hybrid gamma imager (LAHGI)

  • Lee, Hyun Su;Kim, Jae Hyeon;Lee, Junyoung;Kim, Chan Hyeong
    • Nuclear Engineering and Technology
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    • 제53권8호
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    • pp.2640-2645
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    • 2021
  • We report the development of a gamma-ray imaging device, named Large-Area Hybrid Gamma Imager (LAHGI), featuring high imaging sensitivity and good imaging resolution over a broad energy range. A hybrid collimation method, which combines mechanical and electronic collimation, is employed for a stable imaging performance based on large-area scintillation detectors for high imaging sensitivity. The system comprises two monolithic position-sensitive NaI(Tl) scintillation detectors with a crystal area of 27 × 27 cm2 and a tungsten coded aperture mask with a modified uniformly redundant array (MURA) pattern. The performance of the system was evaluated under several source conditions. The system showed good imaging resolution (i.e., 6.0-8.9° FWHM) for the entire energy range of 59.5-1330 keV considered in the present study. It also showed very high imaging sensitivity, successfully imaging a 253 µCi 137Cs source located 15 m away in 1 min; this performance is notable considering that the dose rate at the front surface of the system, due to the existence of the 137Cs source, was only 0.003 µSv/h, which corresponds to ~3% of the background level.

초음파 영상장치에서 측방향 해상도 향상에 관한 연구 (A Study on the Improvement a Lateral Resolution of the Ultrasound Imaging System)

  • 이후정;이행세
    • 대한의용생체공학회:의공학회지
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    • 제9권1호
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    • pp.87-92
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    • 1988
  • In this paper, a new focusing method, to be called the pipelined sampled delay focusing (PSDF), is implemented. This method improves the lateral resolution in ultrasound imaging system. In PSDF, the analog belay lines are no longer necessary because sampling sum process can replace the conventional delay sum process. Also, the method offers continuous dynamic focusing on the resolution pixel basis, and eliminates the constraint that the maximum delay time is less than the sampling interval. Second order sampling is adopted in order to extend the sampling interval.

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MRI의 현황과 전망

  • 전희국
    • 대한의용생체공학회:의공학회지
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    • 제9권1호
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    • pp.125-130
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    • 1988
  • In the conventional infrared imaging system, complex infrared lens systems are usually used for directing collimated narrow infrared beams into the high speed 2-dimensional optic scanner. In this paper, a simple reflective infrared optic system with a 2-dimensional optic scanner is proposed for the realization of medical infrared thermography system. It has been experimentally proven that the intfrared thermography system composed of the proposed optic system has the temperature resolution of $0.1^{\circ}C$ under the spatial resolution of lmrad, the image matrix size of $256 {\times} 240, $ and tile imaging time of 4 seconds.

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초해상도 영상복원을 이용한 집적영상의 해상도 향상 (Resolution enhanced integral imaging using super-resolution image reconstruction algorithm)

  • 홍기훈;박재형;이병호
    • 한국통신학회논문지
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    • 제34권10B호
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    • pp.1124-1132
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    • 2009
  • 본 논문은 집적영상의 요소영상을 초해상도 영상복원에 이용하여 집적영상의 해상도를 향상시키는 방법을 제안한다. 집적영상에서 전체 요소영상의 인접한 단일 요소영상들 사이에는 대상물체의 동일한 부분의 상을 포함하는 공통부분이 존재한다. 이러한 공통부분들을 초해상도 영상복원의 저해상도 영상으로 이용하게 되면 CCD(Charge Coupled Device) 등의 영상취득 장치의 제한된 해상도로 인한 집적영상의 낮은 해상도 문제를 보완 할 수 있게 된다. 전체 요소영상과 제안된 방법을 이용하여 해상도를 향상시킨 전체 요소영상을 비교하여 제안된 방법의 타당성을 증명하였다.

Rotating-Gantry-Based X-Ray Micro-Tomography System with the Sliding Mechanism Capable of Zoom-In Imaging

  • Cho, Min-Hyoung;Lee, Dong-Hun;Han, Byung-Hee;Lee, Soo-Yeol
    • 대한의용생체공학회:의공학회지
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    • 제29권2호
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    • pp.107-113
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    • 2008
  • We introduce a rotating-gantry-based x-ray micro-tomography system to be used for small animal imaging studies. It has the zoom-in imaging capability for high resolution imaging of a local region inside the animal subject without any contrast anomalies arising from truncation of the projection data. With the sliding mechanism mounted on the rotating gantry holding the x-ray source and the x-ray detector, we can control the magnification ratio of the x-ray projection data. By combining the projection data from the large field of view (FOV) scan of the whole animal subject and the projection data from the small FOV scan of the region of interest, we can obtain artifact-free zoomed-in images of the region of interest. For the acquisition of x-ray projection data, we use a $1248{\times}1248$ flat-panel x-ray detector with the pixel pitch of 100 mm. It has been experimentally found that the developed system has the spatial resolution of up to 121p/mm when the highest magnification ratio of 5:1 is applied to the zoom-in imaging. We present some in vivo rat femur images to demonstrate utility of the developed system for small animal imaging.