• 제목/요약/키워드: Sharpness of Image

검색결과 153건 처리시간 0.027초

공간-주파수 적응적 영상복원을 위한 Vaguelette-Wavelet분석 기술 (Space-Frequency Adaptive Image Restoration Using Vaguelette-Wavelet Decomposition)

  • 전신영;이은성;김상진;백준기
    • 대한전자공학회논문지SP
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    • 제46권6호
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    • pp.112-122
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    • 2009
  • 본 논문에서는 베이글릿-웨이블릿 분석(vaguelette-wavelet decomposition; VWD)을 이용한 공간-주파수 적응적 영상복원 알고리듬을 제안한다. 제안한 알고리듬은 웨이블릿 계수의 공간적 정보를 이용하여 평탄 영역과 에지 영역을 분리하고, 적응적 웨이블릿 계수축소(wavelet shrinkage)를 통해 잡음 성분을 억제한다. 뿐만 아니라, 에지 영역에서는 엔트로피(entropy)를 적용 하여 웨이블릿 부대역의 잡음 성분을 추정하고, 부대역 간의 상관관계를 이용하여 잡음 성분을 억제한다. 이렇게 억제된 웨이블릿 계수의 베이글릿 역변환을 통해 영상을 복원 할 수 있다. 제안한 알고리듬에 사용되는 베이글릿 함수는 잡음을 추정 및 억제 할 수 있을 뿐만 아니라 세밀한 에지 성분의 보존이 가능하도록 변형을 한다. 실험결과에서는 제안한 알고리듬이 잡음에 강건하고, 세밀한 에지 성분을 보전하면서 효과적으로 열화된 영상을 복원할 수 있음을 보여준다.

X선관의 실효초점 측정에 관한 고찰 (Measurement of Focal Spot Size of Heavy Loaded X-ray Tubes)

  • 장광현;임오수;김형기;송창욱;정경모;정환
    • 대한방사선기술학회지:방사선기술과학
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    • 제16권1호
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    • pp.101-106
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    • 1993
  • In order to assure safety of both patient and operator, and to provide uniform quality radiographs, it is necessary to perform periodic calibration of diagnostic X-ray equipment. A basic parameter of diagnostic equipment's and its image sharpness is the size(and shape the energy distribution) of the focal spot as viewed along the central X-ray beam. This size determines the resolution possible with the equipment and also determines the heat characteristics of an anode. A fine focus tube gives high resolution but causes high local heating of target. In past, the pin-hole and star pattern image measurement for evaluation of resolution have been widely used, but it produced blurring and inaccuracy of image. So newly inverted Ug-meter has advantage in more convenient measurement method and less out-put bias than other image measurement. The authors intended to compare measured focal size between Ug-meter and focal spot test tool, changed state from setting to now of units.

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Speckle Noise Reduction and Edge Enhancement in Ultrasound Images Based on Wavelet Transform

  • Kim, Yong-Sun;Ra, Jong-Beom
    • 대한의용생체공학회:의공학회지
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    • 제29권2호
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    • pp.122-131
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    • 2008
  • For B-mode ultrasound images, we propose an image enhancement algorithm based on a multi-resolution approach, which consists of edge enhancing and noise reducing procedures. Edge enhancement processing is applied sequentially to coarse-to-fine resolution images obtained from wavelet-transformed data. In each resolution, the structural features of each pixel are examined through eigen analysis. Then, if a pixel belongs to an edge region, we perform two-step filtering: that is, directional smoothing is conducted along the tangential direction of the edge to improve continuity and directional sharpening is conducted along the normal direction to enhance the contrast. In addition, speckle noise is alleviated by proper attenuation of the wavelet coefficients of the homogeneous regions at each band. This region-based speckle-reduction scheme is differentiated from other methods that are based on the magnitude statistics of the wavelet coefficients. The proposed algorithm enhances edges regardless of changes in the resolution of an image, and the algorithm efficiently reduces speckle noise without affecting the sharpness of the edge. Hence, compared with existing algorithms, the proposed algorithm considerably improves the subjective image quality without providing any noticeable artifacts.

3차원 영상을 위한 다초점 방식 영상획득장치 (Multi-Focusing Image Capture System for 3D Stereo Image)

  • 함운철;권혁재;투멘자르갈 엔크바타르
    • 로봇학회논문지
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    • 제6권2호
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    • pp.118-129
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    • 2011
  • In this paper, we suggest a new camera capturing and synthesizing algorithm with the multi-captured left and right images for the better comfortable feeling of 3D depth and also propose 3D image capturing hardware system based on the this new algorithm. We also suggest the simple control algorithm for the calibration of camera capture system with zooming function based on a performance index measure which is used as feedback information for the stabilization of focusing control problem. We also comment on the theoretical mapping theory concerning projection under the assumption that human is sitting 50cm in front of and watching the 3D LCD screen for the captured image based on the modeling of pinhole Camera. We choose 9 segmentations and propose the method to find optimal alignment and focusing based on the measure of alignment and sharpness and propose the synthesizing fusion with the optimized 9 segmentation images for the best 3D depth feeling.

CLS 기반 공간 적응적 영상복원 (Spatially Adaptive CLS Based Image Restoration)

  • 백준기;문준일;김상구
    • 한국통신학회논문지
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    • 제21권10호
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    • pp.2541-2551
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    • 1996
  • 인간의 시각체계는 영상의 밝기의 정도가 균일한 연에서는 잡음에 민감하지만, 변화하는 부분에서는 에지(edge)의 정도가 심할수록 잡음에 둔감하고, 에지부분에서 멀어질수록 잡음에 대한 민감도가 급격하게 증가한다. 이러한 인간의 시각 특성에 기반을 둔 여러가지 영상복원 방식이 제안되고 있는데, 본 논문에서는 영상을 복원함에 있어서 윤곽 부분에서는 변화하는 부분의 선명도를 높이고, 영상이 평탄한 부분에서는 잡음 성분을 많이 억제 시켜서 영상을 주관적으로 향상시키는 적응적 영상복원 방식을 소개한다. 이 방법은 에지 검출을 하기 위해서 각 화소를 기준으로 지역 분산값(local variance)을 사용하여 시각 함수(visibility function)를 구하고, 이 값에 따라 정규화 매개변수를 변환시켜 적응적으로 영상을 복원한다. 즉 영상을 평탄한 부분에서 에지부분까지 몇 단계로 나누어서 각각의 단계에 해당하는 유한 임펄스 CLS 필터를 구현해서 영상을 복원한다.

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다중필터와 이방성 확산을 이용한 극 저조도 조건에서의 미광증폭장비 영상 개선 (Image Enhancement of Image Intensifying Device in Extremely Low-Light Levels using Multiple Filters and Anisotropic Diffusion)

  • 문진규
    • 한국산학기술학회논문지
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    • 제19권7호
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    • pp.36-41
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    • 2018
  • 미광증폭장비는 밤과 같이 어두운 환경에서 주로 가시광선 대역의 약한 빛을 증폭시켜 육안으로 관측할 수 있을 정도의 밝기로 만들어주는 장비이다. 이러한 방식은 어느 정도의 약한 빛이 존재하는 환경에서는 그 증폭 효과를 제대로 발휘하여 선명한 영상을 얻을 수 있지만, 달빛조차 존재하지 않는 극 저조도 환경에서는 기본적으로 증폭시킬 빛이 부족하여 출력 영상에 많은 노이즈로 인하여 화면의 선명도가 저하된다. 본 연구에서는 이러한 극 저조도 환경에서 발생하는 미광증폭 장비의 출력 노이즈를 다중 필터와 이방성 확산을 이용하여 화질을 개선하는 방법을 제안하였다. 실험을 위하여 극 저조도 조건에 맞는 환경을 구성한 상태에서 미광증폭장비의 출력 영상을 촬영한 후, 화질 개선을 위한 신호처리를 하였다. 신호처리를 위한 필터의 구성은 영상에 나타나는 주된 노이즈인 점 노이즈 제거와 가우시안 노이즈의 효과적인 제거를 위하여 메디안 필터, 위너 필터를 적용시킨 후 이방성 확산을 이용하였다. 실험 결과 화질이 개선됨을 육안으로 확인할 수 있었고, 정량 지표인 PSNR 및 SSIM으로 비교하여 측정한 방법에서도 모두 개선된 값을 보여주었다.

No-reference Image Blur Assessment Based on Multi-scale Spatial Local Features

  • Sun, Chenchen;Cui, Ziguan;Gan, Zongliang;Liu, Feng
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제14권10호
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    • pp.4060-4079
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    • 2020
  • Blur is an important type of image distortion. How to evaluate the quality of blurred image accurately and efficiently is a research hotspot in the field of image processing in recent years. Inspired by the multi-scale perceptual characteristics of the human visual system (HVS), this paper presents a no-reference image blur/sharpness assessment method based on multi-scale local features in the spatial domain. First, considering various content has different sensitivity to blur distortion, the image is divided into smooth, edge, and texture regions in blocks. Then, the Gaussian scale space of the image is constructed, and the categorized contrast features between the original image and the Gaussian scale space images are calculated to express the blur degree of different image contents. To simulate the impact of viewing distance on blur distortion, the distribution characteristics of local maximum gradient of multi-resolution images were also calculated in the spatial domain. Finally, the image blur assessment model is obtained by fusing all features and learning the mapping from features to quality scores by support vector regression (SVR). Performance of the proposed method is evaluated on four synthetically blurred databases and one real blurred database. The experimental results demonstrate that our method can produce quality scores more consistent with subjective evaluations than other methods, especially for real burred images.

Computed Radiography의 영상특성에 관한 연구 (Study of Image Properties for Computed Radiography)

  • 류기현;정재은
    • 대한디지털의료영상학회논문지
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    • 제10권2호
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    • pp.23-31
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    • 2008
  • Computed radiography(CR) has been widely used in the field of diagnostic radiography since digital X-ray image was introduced. The imaging performance of CR system was studied by analyzing the digital image data of the CR images which are the outcomes of the whole imaging system composed of image plate(IP), laser digitizer, analoge-digital convertor, and a given image processing unit. In this study, we used a conventional CR system made by Agfa. From the flat field image of 150$\times$150 image pixels, signal-to-noise ratio(SNR) was calculated. SNR of the CR image increases in proportion to logarithm value of the X-ray exposure irradiated on the IP. SNR is less than about 6 at the exposure below 0.2mR and is more than 10 at the exposure above 0.54mR. In our study, most of images obtained by the smaller exposures less than 2.0mR can not be readable. In general, the minimum value of the SNR ranges from 3 to 5. We obtained modulation transfer function(MTF) by analyzing the bar pattern image which was made under conditions as follows: X-ray tube potential was 55kVp, the IP exposure was 0.54 mR, and the distance between X-ray source to IP was 2m, where bar pattern was located on the IP. MTF is 23% at 2.5lp/mm spatial frequency. Provided that the MTF of noise equivalent modulation is 10%, the CR system has the limiting spatial resolution of 3.2lp/mm. If the image sharpness is evaluated by the spatial frequency where MTF is 50%. the corresponding spatial frequency is 0.5$\sim$0.75lp/mm. MTFA(Modulation Transfer Function Area) is 1.0lp/mm. Compared with the Fuji CR whose MTFA is 1.1lp/mm, Agfa CR in this study shows almost same MTFA performance.

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Improvement of Fat Suppression and Artifact Reduction Using IDEAL Technique in Head and Neck MRI at 3T

  • Hong, Jin Ho;Lee, Ha Young;Kang, Young Hye;Lim, Myung Kwan;Kim, Yeo Ju;Cho, Soon Gu;Kim, Mi Young
    • Investigative Magnetic Resonance Imaging
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    • 제20권1호
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    • pp.44-52
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    • 2016
  • Purpose: To quantitatively and qualitatively compare fat-suppressed MRI quality using iterative decomposition of water and fat with echo asymmetry and least-squares estimation (IDEAL) with that using frequency selective fat-suppression (FSFS) T2- and postcontrast T1-weighted fast spin-echo images of the head and neck at 3T. Materials and Methods: The study was approved by our Institutional Review Board. Prospective MR image analysis was performed in 36 individuals at a single-center. Axial fat suppressed T2- and postcontrast T1-weighted images with IDEAL and FSFS were compared. Visual assessment was performed by two independent readers with respect to; 1) metallic artifacts around oral cavity, 2) susceptibility artifacts around upper airway, paranasal sinus, and head-neck junction, 3) homogeneity of fat suppression, 4) image sharpness, 5) tissue contrast of pathologies and lymph nodes. The signal-to-noise ratios (SNR) for each image sequence were assessed. Results: Both IDEAL fat suppressed T2- and T1-weighted images significantly reduced artifacts around airway, paranasal sinus, and head-neck junction, and significantly improved homogeneous fat suppression in compared to those using FSFS (P < 0.05 for all). IDEAL significantly decreased artifacts around oral cavity on T2-weighted images (P < 0.05, respectively) and improved sharpness, lesion-to-tissue, and lymph node-to-tissue contrast on T1-weighted images (P < 0.05 for all). The mean SNRs were significantly improved on both T1- and T2-weighted IDEAL images (P < 0.05 for all). Conclusion: IDEAL technique improves image quality in the head and neck by reducing artifacts with homogeneous fat suppression, while maintaining a high SNR.

POCS 이론을 이용한 개선된 S&A 방법에 의한 영상의 화질 향상 (Image Resolution Enhancement by Improved S&A Method using POCS)

  • 윤수아;이태균;이상헌;손명규;김덕규;원철호
    • 한국멀티미디어학회논문지
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    • 제14권11호
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    • pp.1392-1400
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    • 2011
  • 최근 대부분의 디지털 이미지 응용분야에서는 영상 처리 및 분석을 위해 고해상도 이미지나 비디오가 요구되고 있다. 한편, 일반적인 영상획득시스템으로부터 획득한 영상신호는 획득하는 과정에서 물리적 영향, 제조 기술의 한계 및 환경적인 영향 등으로 인하여 영상의 화질 저하를 가져온다. 이러한 문제를 해결하기위해 연구되고 있는 방법 중 하나인 초해상도 복원 기술은 동일한 물체를 촬영한 다수의 저해상도 영상으로 고해상도 영상을 만들어내는 영상복원기술이다. 본 논문에서는 S&A (Shift & Add) 방법에 POCS (Projection onto Convex Sets) 이론을 적용하여 기존의 방법보다 개선된 알고리즘을 제안한다. 기존의 알고리즘은 잡음에 약하다는 문제점이 있다. 이를 해결하기 위해 제안한 방법에서는 복원단계에 사용되는 참조영상을 POCS이론에 적용하여 기존의 S&A방법과 결합하였다. 또한 광학적 왜곡에 해당하는 카메라 블러(blur) 연산자로 주파수 영역에서 BLPF (Butterworth Low-pass Filter)를 사용하여 기존방법의 문제점인 링잉현상을 해결하였다. 실험결과를 통해 잡음에 강하고 영상의 고주파영역을 향상시킨 제안한 초해상도 방법의 우수성을 확인하였고, 객관적 평가를 위해 기존의 방법과 PSNR (peak signal to noise ratio)을 비교하였다.