• 제목/요약/키워드: low contrast resolution

검색결과 137건 처리시간 0.025초

ACR 팬텀을 이용한 Cartesian Trajectory와 MultiVane Trajectory의 비교분석 : 영상강도 균질성과 저대조도 검체 검출률 test를 사용하여 (Comparative Analysis of Cartesian Trajectory and MultiVane Trajectory Using ACR Phantom in MRI : Using Image Intensity Uniformity Test and Low-contrast Object Detectability Test)

  • 남순권;최준호
    • 대한방사선기술학회지:방사선기술과학
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    • 제42권1호
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    • pp.39-46
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    • 2019
  • This study conducted a comparative analysis of differences between cartesian trajectory in a linear rectangular coordinate system and MultiVane trajectory in a nonlinear rectangular coordinate system axial T1 and axial T2 images using an American College of Radiology(ACR) phantom. The phantom was placed at the center of the head coil and the top-to-bottom and left-to-right levels were adjusted by using a level. The experiment was performed according to the Phantom Test Guidance provided by the ACR, and sagittal localizer images were obtained. As shown in Figure 2, slices # 1 and # 11 were scanned after placing them at the center of a $45^{\circ}$ wedge shape, and a total of 11 slices were obtained. According to the evaluation results, the image intensity uniformity(IIU) was 93.34% for the cartesian trajectory, and 93.19% for the MultiVane trajectory, both of which fall under the normal range in the axial T1 image. The IIU for the cartesian trajectory was 0.15% higher than that for the MultiVane trajectory. In axial T2, the IIU was 96.44% for the cartesian trajectory, and 95.97% for the MultiVane trajectory, which fall under the normal range. The IIU for the cartesian trajectory was by 0.47% higher than that for the MultiVane trajectory. As a result, the cartesian technique was superior to the MultiVane technique in terms of the high-contrast spatial resolution, image intensity uniformity, and low-contrast object detectability.

고주파수 초음파 영상을 위한 저잡음·광대역 수신 시스템 구현 (Implementation of low-noise, wideband ultrasound receiver for high-frequency ultrasound imaging)

  • 문주영;이준수;장진호
    • 한국음향학회지
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    • 제36권4호
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    • pp.238-246
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    • 2017
  • 고주파수, 고해상도 초음파 영상을 획득하기 위해서는 고주파수 초음파 변환기가 가지는 작은 구경에 따른 낮은 민감도와 침투 깊이에 따른 높은 감쇠량을 극복하여야 한다. 이는 고주파수 초음파 변환기의 본질적인 한계점이므로 수신 시스템을 통하여 그 한계점을 극복하여야 한다. 본 논문은 고주파수, 고해상도 초음파 영상을 위하여 고주파수 초음파 변환기의 본질적인 한계인 낮은 민감도와 높은 감쇠량을 극복할 수 있는 저잡음 광대역 수신 시스템 개발과 특성 평가 결과에 관한 것이다. 개발한 저잡음 광대역 수신 시스템은 80 MHz 이상의 동작 주파수 대역에서 최대 73 dB의 증폭 이득과 48 dB의 가변 이득 범위를 만족하며 ${\pm}1dB$의 증폭 이득 평탄도 성능을 가진다. 또한 개발한 수신 시스템은 상용 리시버에 비하여 8.4 dB 이상의 신호대잡음비 성능과 3.7 dB 이상의 대조도 성능이 우수함을 확인하였다.

Acceptance Test and Clinical Commissioning of CT Simulator

  • An, Hyun Joon;Son, Jaeman;Jin, Hyeongmin;Sung, Jiwon;Chun, Minsoo
    • 한국의학물리학회지:의학물리
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    • 제30권4호
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    • pp.160-166
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    • 2019
  • This study examined the clinical use of two newly installed computed tomography (CT) simulators in the Department of Radiation Oncology. The accreditation procedure was performed by the Korean Institute for Accreditation of Medical Imaging. An Xi R/F dosimeter was used to measure the CT dose index for each plug of the CT dose index phantom. Image qualities such as the Hounsfield unit (HU) value of water, noise level, homogeneity, existence of artifacts, spatial resolution, contrast, and slice thickness were evaluated by scanning a CT performance phantom. All test items were evaluated as to whether they were within the required tolerance level. CT calibration curves-the relationship between CT number and relative electron density-were obtained for dose calculations in the treatment planning system. The positional accuracy of the lasers was also evaluated. The volume CT dose indices for the head phantom were 22.26 mGy and 23.70 mGy, and those for body phantom were 12.30 mGy and 12.99 mGy for the first and second CT simulators, respectively. HU accuracy, noise, and homogeneity for the first CT simulator were -0.2 HU, 4.9 HU, and 0.69 HU, respectively, while those for second CT simulator were 1.9 HU, 4.9 HU, and 0.70 HU, respectively. Five air-filled holes with a diameter of 1.00 mm were used for assessment of spatial resolution and a low contrast object with a diameter of 6.4 mm was clearly discernible by both CT scanners. Both CT simulators exhibited comparable performance and are acceptable for clinical use.

Cone beam형 전산화단층영상에서 골의 형태와 밀도의 평가 (Evaluation of imaging reformation with cone beam computed tomography for the assessment of bone density and shape in mandible)

  • 홍상우;김규태;최용석;황의환
    • Imaging Science in Dentistry
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    • 제38권1호
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    • pp.49-56
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    • 2008
  • Purpose: Diagnostic estimation of destruction and formation of bone has the typical limit according to capacity of x-ray generator and image detector. So the aim of this study was to find out how much it can reproduce the shape and the density of bone in the case of using recently developed dental type of cone beam computed tomography, and which image is applied by new detector and mathematic calculation. Materials and Methods: Cone beam computed tomography (PSR 9000N, Asahi Roentgen Ind. Co., Ltd., Japan) and soft x-ray radiography were executed on dry mandible that was already decalcified during 5 hours, 10 hours, 15 hours, 20 hours, and 25 hours. Estimating and comparing of those came to the following results. Results: The change of inferior border of mandible and anterior border of ramus in the region of cortical bone was observed between first 5 and 10 hours of decalcification. The reproduction of shape and density in the region of cortical bone and cancellous bone can be hardly observed at cone beam computed tomography compared with soft x-ray radiography. The difference of decrease of bone density according to hours of decalcification increase wasn't reproduced at cone beam computed tomography compared with soft x-ray radiography. Conclusion: CBCT images revealed higher spatial resolution. However, contrast resolution in region of low contrast sensitivity is the inferiority of images' property.

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Effective Adaptive Dynamic Quadrature Demodulation in Medical Ultrasound Imaging

  • Yoon, Heechul;Jeon, Kang-won;Lee, Hyuntaek;Kim, Kyeongsoon;Yoon, Changhan
    • Journal of Electrical Engineering and Technology
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    • 제13권1호
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    • pp.468-475
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    • 2018
  • In medical ultrasound imaging, frequency-dependent attenuation downshifts and reduces a center frequency and a frequency bandwidth of received echo signals, respectively. This causes considerable errors in quadrature demodulation (QDM), result in lowering signal-to-noise ratio (SNR) and contrast resolution (CR). To address this problem, adaptive dynamic QDM (ADQDM) that estimates center frequencies along depth was introduced. However, the ADQDM often fails when imaging regions contain hypoechoic regions. In this paper, we introduce a valid region-based ADQDM (VR-ADQDM) method to reject the misestimated center frequencies to further improve SNR and CR. The valid regions are regions where the center frequency decreases monotonically along depth. In addition, as a low-pass filter of QDM, Gaussian wavelet based dynamic filtering was adopted. From the phantom experiments, average SNR improvements of the ADQDM and the VR-ADQDM over the traditional QDM were 1.22 and 5.27 dB, respectively, and the corresponding maximum SNR improvements were 2.56 and 10.58 dB. The contrast resolution of the VR-ADQDM was also improved by 0.68 compared to that of the ADQDM. Similar results were obtained from in vivo experiments. These results indicate that the proposed method would offer promises for imaging technically-difficult patients due to its capability in improving SNR and CR.

CT 정도관리에서 ACR 팬텀을 이용한 딥러닝 모델 적용에 관한 연구 (A Study on the Application of Deep Learning Model by Using ACR Phantom in CT Quality Control)

  • 최은빈;김시온;최승원;김재희;김영균;한동균
    • 대한방사선기술학회지:방사선기술과학
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    • 제46권6호
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    • pp.535-542
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    • 2023
  • This study aimed to implement a deep learning model that can perform quantitative quality control through ACTS software used for quantitative evaluation of ACR phantom in CT quality control and evaluate its usefulness. By changing the scanning conditions, images of three modules of the ACR phantom's slice thickness (ST), low contrast resolution (LC), and high contrast resolution (HC) were obtained and classified as ACTS software. The deep learning model used ResNet18, implementing three models in which ST, HC, and LC were learned with epoch 50 and an integrated model in which three modules were learned with Epoch 10, 30, and 50 at once. The performance of each model was evaluated through Accuracy and Loss. When comparing and evaluating the accuracy and loss function values of the deep learning models by ST, LC, and HC modules, the Accuracy and Loss of the HC model were the best with 100% and 0.0081, and in the integrated model according to the Epoch value, Accuracy and Loss with epoch 50 were the best with 96.29% and 0.1856. This paper showed that quantitative quality control is possible through a deep learning model, and it can be used as a basis and evidence for applying deep learning to the CT quality control.

MDCT에서 화질과 방사선량에 관한 연구 (The Evaluation of Image Quality and Radiation Dose in Multi-Detector CT)

  • 한동균;양한준;김문찬;고신관
    • 대한방사선기술학회지:방사선기술과학
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    • 제30권2호
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    • pp.129-138
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    • 2007
  • 본 연구는 MDCT장치에 있어 화질평가와 선량평가 방법을 통하여 장치의 항상성을 유지하며 양질의 의료영상을 제공하는 기초자료로 사용함과 더불어, MDCT의 각 장비에 따른 선량을 평가하고 제시하고자 서울소재 14대의 MDCT장치를 대상으로 시행하여 그 기준을 정량화 하였다. MDCT를 이용한 화질측정 즉, CT number와 노이즈, 균일도, 공간분해능, 대조도 분해능과 선량 측정 즉, CTDI와 CTDIw, CTDIw/100 mAs의 결과는 다음과 같았다. CT number는 평균 $0.56{\pm}0.70\;HU$, 노이즈는 평균 $0.39{\pm}0.09\;HU$, 균일도는 평균 $1.08{\pm}0.52\;HU$이었다. 그리고 공간분해능은 평균 $0.48{\pm}0.05\;mm$, 대조도 분해능은 평균 $3.65{\pm}1.1\;6mm$이었다. CTDI는 head phantom을 이용한 경우 중앙부는 평균 $43.2{\pm}15.4\;mGy$, 주변부는 $45.6{\pm}17.5\;mGy$이었다, 그리고 body phantom에 있어 중앙부 평균은 $13.5{\pm}4.5\;mGy$, 주변부는 $29.2{\pm}10.2\;mGy$이었다. 주변부가 중앙부에 비해 2.16배 증가되어 나타났다. head phantom을 이용한 경우 CTDIw는 평균 $44.8{\pm}16.8\;mGy$, CTDIw/100\;mAs는 평균 $18.8{\pm}5.3\;mGy$, body phantom을 이용한 경우 CTDIw는 평균 $24.0{\pm}8.3\;mGy$이고, CTDIw/100 mAs는 평균 $10.1{\pm}2.5\;mGy$이었다. 위에서 알 수 있듯 MDCT의 CT number와 노이즈, 균일도, 공간분해능, 대조도 분해능과 CTDI와 CTDIw, CTDIw/100 mAs는 전체 장치에서 모두 우수하게 나타났다.

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Histogram Matching of Sentinel-2 Spectral Information to Enhance Planetscope Imagery for Effective Wildfire Damage Assessment

  • Kim, Minho;Jung, Minyoung;Kim, Yongil
    • 대한원격탐사학회지
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    • 제35권4호
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    • pp.517-534
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    • 2019
  • In abrupt fire disturbances, high quality images suitable for wildfire damage assessment can be difficult to acquire. Quantifying wildfire burn area and severity are essential measures for quick short-term disaster response and efficient long-term disaster restoration. Planetscope (PS) imagery offers 3 m spatial and daily temporal resolution, which can overcome the spatio-temporal resolution tradeoff of conventional satellites, albeit at the cost of spectral resolution. This study investigated the potential of augmenting PS imagery by integrating the spectral information from Sentinel-2 (S2) differenced Normalized Burn Ratio (dNBR) to PS differenced Normalized Difference Vegetation Index (dNDVI) using histogram matching,specifically for wildfire burn area and severity assessment of the Okgye wildfire which occurred on April 4th, 2019. Due to the difficulty in acquiring reference data, the results of the study were compared to the wildfire burn area reported by Ministry of the Interior and Safety. The burn area estimates from this study demonstrated that the histogram-matched (HM) PS dNDVI image produced more accurate burn area estimates and more descriptive burn severity intervals in contrast to conventional methods using S2. The HM PS dNDVI image returned an error of only 0.691% whereas the S2 dNDVI and dNBR images overestimated the wildfire burn area by 5.32% and 106%, respectively. These improvements using PS were largely due to the higher spatial resolution, allowing for the detection of sparsely distributed patches of land and narrow roads, which were indistinguishable using S2 dNBR. In addition, the integration of spectral information from S2 in the PS image resolved saturation effects in areas of low and high burn severity.

Assessment of DVC measurement uncertainty on GFRPs with various fiber architectures

  • Bartulovic, Ante;Tomicevic, Zvonimir;Bubalo, Ante;Hild, Francois
    • Coupled systems mechanics
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    • 제11권1호
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    • pp.15-32
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    • 2022
  • The comprehensive understanding of the fiber reinforced polymer behavior requires the use of advanced non-destructive testing methods due to its heterogeneous microstructure and anisotropic mechanical proprieties. In addition, the material response under load is strongly associated with manufacturing defects (e.g., voids, inclusions, fiber misalignment, debonds, improper cure and delamination). Such imperfections and microstructures induce various damage mechanisms arising at different scales before macrocracks are formed. The origin of damage phenomena can only be fully understood with the access to underlying microstructural features. This makes X-ray Computed Tomography an appropriate imaging tool to capture changes in the bulk of fibrous materials. Moreover, Digital Volume Correlation (DVC) can be used to measure kinematic fields induced by various loading histories. The correlation technique relies on image contrast induced by microstructures. Fibrous composites can be reinforced by different fiber architectures that may lead to poor natural contrast. Hence, a priori analyses need to be performed to assess the corresponding DVC measurement uncertainties. This study aimed to evaluate measurement resolutions of global and regularized DVC for glass fiber reinforced polymers with different fiber architectures. The measurement uncertainties were evaluated with respect to element size and regularization lengths. Even though FE-based DVC could not reach the recommended displacement uncertainty with low spatial resolution, regularized DVC enabled for the use of fine meshes when applying appropriate regularization.

Development of 2.32-inch $320{\times}350$ LTPS TFT-LCD for Advanced Mobile Phones Using SLS Technology

  • Zhang, Lintao;Kang, Myung-Koo;Lee, Joong-Sun;Park, Jong-Hwa;Joo, Seung-Yong;Moon, Kuk-Chul;Kim, Il-Kon;Kim, Sung-Ho;Park, Kyung-Soon;Yoo, Chun-Ki;Kim, Chi-Woo
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2005년도 International Meeting on Information Displayvol.II
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    • pp.1035-1037
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    • 2005
  • 2.32-inch $320{\times}350$ TFT-LCD with high resolution (206PPI) for advanced mobile phones could be successfully developed. The compact pixel design based on PMOS SLS technique is used to achieve this high resolution. Gate driver and part of data driver are integrated onto the glass substrate. High brightness (170cd) and contrast ratio (400:1) were obtained with very low flickering and crosstalk levels.

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