• 제목/요약/키워드: High-Resolution Computed Tomography

검색결과 152건 처리시간 0.02초

GATE 시뮬레이션을 통한 고해상도 저선량용 소동물 영상화를 위한 CdTe 검출기 기반의 SPECT 기기 연구 (A Low-Dose High-Resolution SPECT System with CdTe for Small-Animal Imaging Applications: A GATE Simulation Study)

  • 박수진;유아람;김예슬;이영진;김희중
    • 한국의학물리학회지:의학물리
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    • 제24권3호
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    • pp.162-170
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    • 2013
  • 인간의 질병연구를 위한 소동물용 픽셀화 반도체 검출기 기반의 단일광자단층촬영(SPECT, single photon emission computed tomography)시스템 개발이 이루어지고 있다. 본 연구에서는 CdTe검출기 기반의 SPECT시스템의 고해상도 및 저선량 소동물 영상화 가능성을 알아보고자 NaI(Tl) 섬광결정 검출기로 구축된 SPECT 시스템과 비교 평가하였다. CdTe 검출기는 $44.8{\times}44.8$ mm의 크기이며 $0.35{\times}0.35{\times}5$ mm크기의 픽셀로 구성되어 있다. 검출기의 내인성 분해능은 0.35 mm 이며 이는 픽셀 크기와 동일하다. GATE 시뮬레이션 방법을 통하여 두 시스템간의 성능 평가를 수행하고 비교 분석하였다. 시스템의 공간 분해능과 민감도는 10 MBq의 $^{99m}Tc$ 점 선원을 사용하여 평가하였다. 복셀화된 MOBY (mouse whole-body) 팬텀을 사용하여 정량적 평가 및 흡수선량을 계산하였다. 점선원과 조준기 사이의 거리가 30 mm 일 때, NaI(Tl) 섬광결정 검출기 기반의 SPECT의 분해능은 1.54 mm, 민감도는 83 cps/MBq였으며, CdTe검출기 기반의 SPECT시스템의 분해능은 1.32 mm, 민감도는 116 cps/MBq로 더욱 향상된 공간 분해능과 민감도를 나타내었다. 두 시스템의 정량적 통계 분석은 CNR 계산을 통해 이루어졌으며, 주입 선량을 다양하게 설정하여 두 시스템에서의 CNR을 획득하였다. Mouse brain내 striatum의 주입선량이 160 Bq/voxel일 경우, CdTe검출기 기반의 SPECT에서 획득한 CNR은 2.30이었으며 섬광결정 검출기 SPECT에서 획득한 CNR은 1.85로 CdTe검출기 기반의 SPECT에서 더욱 큰 CNR을 지니고 있었다. 또한, CdTe기반의 SPECT를 사용할 경우 NaI(Tl) 섬광결정 검출기 기반의 SPECT 시스템을 사용하는 것보다 동일한 정량적 수치획득을 위한 소동물의 피폭선량을 감소시켜줄 수 있었다. 본 연구에서는 반도체 검출기 CdTe기반의 SPECT은 NaI(Tl) 섬광결정 검출기 SPECT 시스템보다 공간 분해능과 민감도 측면에서 높은 성능을 보였음을 증명하였다. 실제 시스템과의 검증 등의 추가 연구가 필요하지만, 본 연구 결과는 향후 피폭 선량을 줄이는 동시에 영상의 질을 높일 수 있는 소동물용 SPECT 시스템 구축에 응용될 수 있을 것이다.

Quantitative Analysis of Tooth Mineral Content by High Resolution Micro-computed Tomography

  • Song, Dae-Sung;Kim, Jung-Woo;Hwang, Hee-Su;Oh, Sin-Hye;Song, Ju Han;Kim, Il-Shin;Hwang, Yun-Chan;Koh, Jeong-Tae
    • International Journal of Oral Biology
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    • 제42권4호
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    • pp.155-161
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    • 2017
  • Teeth and bones are highly mineralized tissues containing inorganic minerals such as calcium phosphate, and a growing number of evidences show that their mineral content is associated with many diseases. Although the quantification of mineral contents by micro-computed tomography(micro- CT) has been used in diagnosis and evaluation for treating bone diseases, its application for teeth diseases has not been well established. In this study, we attempted to estimate a usefulness of a high-resolution micro-CT in analysis of human teeth. The teeth were scanned by using the Skyscan 1172 micro-CT. In order to measure tooth mineral content, beam hardening effect of the machine was corrected with a radiopaque iodine-containing substance, iodoacetamide. Under the maximum resolution of $6.6{\mu}m$, X-ray densities in teeth and hydroxyapatite standards were obtained with Hounsfield unit (HU), and they were then converted to an absolute mineral concentration by a CT Analyzer software. In enamel layer of cusp area, the mean mineral concentration was about $2.14mg/mm^3$ and there was a constant mineral concentration gradient from the enamel surface to the dentinoenamel junction. In the dentin of middle 1/3 of tooth, the mean mineral concentration was approximately $1.27mg/mm^3$ and there was a constant mineral concentration gradient from the outer of root to the pulp side, ranging from 1.3 to $1.06mg/mm^3$. In decay region of dentin, the mineral content was gradually decreased from the intact inner side to the decayed surface. These results suggest that high-resolution micro-CT can be as a useful tool for non-invasive measurement of mineral concentration in teeth.

상완신경총의 영상 (Imaging of the Brachial Plexus)

  • 서경진;이정현;이경규
    • Investigative Magnetic Resonance Imaging
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    • 제11권2호
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    • pp.119-126
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    • 2007
  • 상완신경총의 영상 진단은 복잡한 해부학적인 구조와 다양하게 침범하는 병들로 인해 어렵고 도전적이다. 상완신경총 영상 진단의 일차적인 목표는 외상성 손상과 비외상성 손상의 구별이다. MRI의 급속경사와 전용표면코일을 이용한 적절한 공간분해능을 가진 영상기기의 발전과 이를 이용한 다양한 펄스열의 개발이 상완신경총의 외상성 손상과 비외상성 손상에 대한 구별에 많은 도움을 주어 정확한 진단으로 수술 여부의 결정에 이용된다. MRI는 비외상성 상완신경총 병변의 진단에 가장 좋은 영상진단이며, CT 척수강조영술은 상완신경총을 침범하는 신경근견열 병변의 검사에 많이 이용된다. 그리고 일반적으로 고화질, 고해상력의 MRI 가 상완신경총 비외상성병변의 진단에 일차적인 영상검사로 중요한 역할을 하고 있다.

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자기공명영상장치(磁氣共鳴映像裝置)에서 움직임허상(虛像)의 위치제어(位置制御)에 관(關)한 연구(硏究) (A Study on Locational Control of Motion Ghost in Magnetic Imaging System)

  • 이후민
    • 대한방사선기술학회지:방사선기술과학
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    • 제16권2호
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    • pp.19-26
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    • 1993
  • Magnetic Resonance Image represents three-dimensional diagnostic imaging technique using both nuclear magnetic resonance phenomenon and computer. Compared with computed tomography (CT), MRI have advantages harmless to patient's body, three-dimensional image with high resolution and disadvantages long data acquisition time because of long T1 relaxation time, relatively low signal to noise ratio, high cost of setting, also. As physiologic motion of tissue results in motion ghost in MRI, high 2.0Tesla make improve low signal to noise ratio. This study have aim to improve image quality with controling motion ghost of tissue. Supposing a moving pixel in constant frequency, one pixel make two ghosts which are same size and different anti-phase. So, this study will show adjust parameter on locational control of motion ghost. Author made moving phantom replaced by respiratory movement of human, researched change of motion frequency, FOV by location shift, and them decided optimal FOV (field of view). The results are as follows: 1. The frequency content of the motion determines how far the image always appear in phase-encoding direction, the morphology of the ghost image is characteristic of the direction of the motion and its amplitude. 2. Double FOV of fixed signal object for locational control of motion ghost is recommended. Decreasement of spatial resolution by increasing FOV can compensate on increasing of matrix in spite of scan time increasement.

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A Numerical Study of Different Types of Collimators for a High-Resolution Preclinical CdTe Pixelated Semiconductor SPECT System

  • Jeong, Hyun-Woo;Kim, Jong Seok;Bae, Se Young;Seo, Kanghyen;Kim, Seung Hun;Kang, Seong Hyeon;Shin, Dong Jin;Lee, Chang-Lae;Kim, Kyuseok;Lee, Youngjin
    • Journal of the Optical Society of Korea
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    • 제20권6호
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    • pp.663-668
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    • 2016
  • In single-photon-emission computed tomography (SPECT) with a pixelated semiconductor detector (PSD), not only pinhole collimators but also parallel-hole collimators are often used in preclinical nuclear-medicine imaging systems. The purpose of this study was to evaluate and compare pinhole and parallel-hole collimators in a PSD. For that purpose, we paired a PID 350 (Ajat Oy Ltd., Finland) CdTe PSD with each of the four collimators most frequently used in preclinical nuclear medicine: (1) a pinhole collimator, and (2) low-energy high-resolution (LEHR), (3) low-energy general-purpose (LEGP), and (4) low-energy high-sensitivity (LEHS) parallel-hole collimators. The sensitivity and spatial resolution of each collimator was evaluated using a point source and a hot-rod phantom. The highest sensitivity was achieved using LEHS, followed by LEGP, LEHR, and pinhole. Also, at a source-to-collimator distance of 2 cm, the spatial resolution was 1.63, 2.05, 2.79, and 3.45 mm using pinhole, LEHR, LEGP, and LEHS, respectively. The reconstructed hot-rod phantom images showed that the pinhole collimator and the LEHR parallel-hole collimator give a fine spatial resolution for preclinical SPECT with PSD. In conclusion, we successfully compared different types of collimators for a preclinical pixelated semiconductor SPECT system.

3D Segmentation for High-Resolution Image Datasets Using a Commercial Editing Tool in the IoT Environment

  • Kwon, Koojoo;Shin, Byeong-Seok
    • Journal of Information Processing Systems
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    • 제13권5호
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    • pp.1126-1134
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    • 2017
  • A variety of medical service applications in the field of the Internet of Things (IoT) are being studied. Segmentation is important to identify meaningful regions in images and is also required in 3D images. Previous methods have been based on gray value and shape. The Visible Korean dataset consists of serially sectioned high-resolution color images. Unlike computed tomography or magnetic resonance images, automatic segmentation of color images is difficult because detecting an object's boundaries in colored images is very difficult compared to grayscale images. Therefore, skilled anatomists usually segment color images manually or semi-automatically. We present an out-of-core 3D segmentation method for large-scale image datasets. Our method can segment significant regions in the coronal and sagittal planes, as well as the axial plane, to produce a 3D image. Our system verifies the result interactively with a multi-planar reconstruction view and a 3D view. Our system can be used to train unskilled anatomists and medical students. It is also possible for a skilled anatomist to segment an image remotely since it is difficult to transfer such large amounts of data.

Micro-computed tomography in preventive and restorative dental research: A review

  • Ghavami-Lahiji, Mehrsima;Davalloo, Reza Tayefeh;Tajziehchi, Gelareh;Shams, Paria
    • Imaging Science in Dentistry
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    • 제51권4호
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    • pp.341-350
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    • 2021
  • Purpose: The use of micro-computed tomography (micro-CT) scans in biomedical and dental research is growing rapidly. This study aimed to explore the scientific literature on approaches and applications of micro-CT in restorative dentistry. Materials and Methods: An electronic search of publications from January 2009 to March 2021 was conducted using ScienceDirect, PubMed, and Google Scholar. The search included only English-language articles. Therefore, only studies that addressed recent advances and the potential uses of micro-CT in restorative and preventive dentistry were selected. Results: Micro-CT is a tool that enables 3-dimensional imaging on a small scale with very high resolution. In this method, there is no need for sample preparation or slicing. Therefore, it is possible to examine the internal structure of tissue and the internal adaptation of materials to surfaces without destroying them. Due to these advantages, micro-CT has been recommended as a standard imaging tool in dental research for many applications such as tissue engineering, endodontics, restorative dentistry, and research on the mineral density of hard tissues and bone growth. However, the high costs of micro-CT, the time necessary for scanning and reconstruction, computer expertise requirements, and the enormous volume of information are drawbacks. Conclusion: The potential of micro-CT as an emerging, accurate, non-destructive approach is clear, and the valuable research findings reported in the literature provide an impetus for researchers to perform future studies focusing on employing this method in dental research.

Three-dimensional comparison of 2 digital models obtained from cone-beam computed tomographic scans of polyvinyl siloxane impressions and plaster models

  • Park, Jin-Yi;Kim, Dasomi;Han, Sang-Sun;Yu, Hyung-Seog;Cha, Jung-Yul
    • Imaging Science in Dentistry
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    • 제49권4호
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    • pp.257-263
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    • 2019
  • Purpose: This study was performed to evaluate the dimensional accuracy of digital dental models constructed from cone-beam computed tomographic (CBCT) scans of polyvinyl siloxane (PVS) impressions and cast scan models. Materials and Methods: A pair of PVS impressions was obtained from 20 subjects and scanned using CBCT (resolution, 0.1 mm). A cast scan model was constructed by scanning the gypsum model using a model scanner. After reconstruction of the digital models, the mesio-distal width of each tooth, inter-canine width, and inter-molar width were measured, and the Bolton ratios were calculated and compared. The 2 models were superimposed and the difference between the models was measured using 3-dimensional analysis. Results: The range of mean error between the cast scan model and the CBCT scan model was -0.15 mm to 0.13 mm in the mesio-distal width of the teeth and 0.03 mm to 0.42 mm in the width analysis. The differences in the Bolton ratios between the cast scan models and CBCT scan models were 0.87 (anterior ratio) and 0.72 (overall ratio), with no significant difference (P>0.05). The mean maxillary and mandibular difference when the cast scan model and the CBCT scan model were superimposed was 53 ㎛. Conclusion: There was no statistically significant difference in most of the measurements. The maximum tooth size difference was 0.15mm, and the average difference in model overlap was 53 ㎛. Digital models produced by scanning impressions at a high resolution using CBCT can be used in clinical practice.

3D Non-Rigid Registration for Abdominal PET-CT and MR Images Using Mutual Information and Independent Component Analysis

  • Lee, Hakjae;Chun, Jaehee;Lee, Kisung;Kim, Kyeong Min
    • IEIE Transactions on Smart Processing and Computing
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    • 제4권5호
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    • pp.311-317
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    • 2015
  • The aim of this study is to develop a 3D registration algorithm for positron emission tomography/computed tomography (PET/CT) and magnetic resonance (MR) images acquired from independent PET/CT and MR imaging systems. Combined PET/CT images provide anatomic and functional information, and MR images have high resolution for soft tissue. With the registration technique, the strengths of each modality image can be combined to achieve higher performance in diagnosis and radiotherapy planning. The proposed method consists of two stages: normalized mutual information (NMI)-based global matching and independent component analysis (ICA)-based refinement. In global matching, the field of view of the CT and MR images are adjusted to the same size in the preprocessing step. Then, the target image is geometrically transformed, and the similarities between the two images are measured with NMI. The optimization step updates the transformation parameters to efficiently find the best matched parameter set. In the refinement stage, ICA planes from the windowed image slices are extracted and the similarity between the images is measured to determine the transformation parameters of the control points. B-spline. based freeform deformation is performed for the geometric transformation. The results show good agreement between PET/CT and MR images.

Efficacy of Induced Sputum for the Diagnosis of Pulmonary Tuberculosis in Adults Unable to Expectorate Sputum

  • Park, Jae Seuk
    • Tuberculosis and Respiratory Diseases
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    • 제78권3호
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    • pp.203-209
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    • 2015
  • Background: Induced sputum (IS) has been used to collect airway secretions in subjects who have inadequate sputum production. The aim of this study was to investigate the efficacy of IS for the diagnosis of pulmonary tuberculosis (PTB) in adults unable to expectorate sputum. Methods: Medical records of 39 PTB patients who underwent IS due to absence of spontaneous sputum production between January 2011 and March 2014 at a tertiary hospital in South Korea were reviewed. Results of acid fast bacilli smear, Mycobacterium tuberculosis culture and polymerase chain reaction assay for M. tuberculosis (TB-PCR) of IS specimens from these patients were analyzed. Clinical and high-resolution computed tomography (HRCT) characteristics were also analyzed to find characteristics associated with IS culture positivity. Results: Of the 39 IS specimens from PTB patients, 7 (17.9%) were smear positive and 31 (79.5%) were culture positive. Twenty-four IS specimens were tested for TB-PCR and 13 (54.2%) were positive on TB-PCR. Multivariate analysis showed that younger age (p=0.04) and presence of tree-in-bud appearance on HRCT (p=0.03) were independent predictors of IS culture positivity. Conclusion: IS is useful for the diagnosis of PTB in adults unable to expectorate sputum. Younger age and tree-in-bud appearance on HRCT were associated with IS culture positivity in these patients.