• 제목/요약/키워드: Localization Imaging

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Basic Physical Principles and Clinical Applications of Computed Tomography

  • Jung, Haijo
    • 한국의학물리학회지:의학물리
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    • 제32권1호
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    • pp.1-17
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    • 2021
  • The evolution of X-ray computed tomography (CT) has been based on the discovery of X-rays, the inception of the Radon transform, and the development of X-ray digital data acquisition systems and computer technology. Unlike conventional X-ray imaging (general radiography), CT reconstructs cross-sectional anatomical images of the internal structures according to X-ray attenuation coefficients (approximate tissue density) for almost every region in the body. This article reviews the essential physical principles and technical aspects of the CT scanner, including several notable evolutions in CT technology that resulted in the emergence of helical, multidetector, cone beam, portable, dual-energy, and phase-contrast CT, in integrated imaging modalities, such as positron-emission-tomography-CT and single-photon-emission-computed-tomography-CT, and in clinical applications, including image acquisition parameters, CT angiography, image adjustment, versatile image visualizations, volumetric/surface rendering on a computer workstation, radiation treatment planning, and target localization in radiotherapy. The understanding of CT characteristics will provide more effective and accurate patient care in the fields of diagnostics and radiotherapy, and can lead to the improvement of image quality and the optimization of exposure doses.

자기공명영상과 PET/CT를 중심으로 한 전립선 암의 영상 진단 (Imaging Assessment of Primary Prostate Cancer, Focused on Advanced MR Imaging and PET/CT)

  • 장진희;변재영;김민성;이영준;오순남;나성은;유이령
    • Investigative Magnetic Resonance Imaging
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    • 제12권2호
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    • pp.89-99
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    • 2008
  • 전립선 암은 종양 영상 분야에서 가장 어려운 분야 중 하나이다. 술전 영상 검사를 통한 전립선 암의 발견 (detection), 정위 (localization) 그리고 병기결정(staging)은 여전히 영상의학과 의사의 도전이 필요한 분야이다. 자기공명 영상은 우수한 연부 조직 대조를 보이며 여러 고형 장기의 영상에 널리 쓰이나, 전립선의 술전 자기공명 영상의 결과는 기대에 미치지 못한다. 전산화단층촬영 영상과 결합된 양전자방출단층촬영술 (PET/CT)은 종양 영상의 발달에 획기적인 기여를 하였으나, 전립선암의 평가에는 어려움이 많다. 최근에 이러한 불충분한 정확도를 극복하기 위하여 발전된 자기공명 영상 기법과 PET/CT을 이용한 전립선암 영상에 대한 연구들이 발표되었다. 본 종설에서는 새로운 기법의 자기 공명 영상과 PET/CT 영상을 중심으로 전립선암의 다양한 영상법과 그 소견을 살펴볼 것이다.

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Multipath Ghosts in Through-the-Wall Radar Imaging: Challenges and Solutions

  • Abdalla, Abdi T.;Alkhodary, Mohammad T.;Muqaibel, Ali H.
    • ETRI Journal
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    • 제40권3호
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    • pp.376-388
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    • 2018
  • In through-the-wall radar imaging (TWRI), the presence of front and side walls causes multipath propagation, which creates fake targets called multipath ghosts. They populate the scene and reduce the probability of correct target detection, classification, and localization. In modern TWRI, specular multipath exploitation has received considerable attention for reducing the effects of multipath ghosts. However, this exploitation is challenged by the requirements of the reflecting geometry, which is not always available. Currently, the demand for a high radar image resolution dictates the use of a large aperture and wide bandwidth. This results in a large amount of data. To tackle this problem, compressive sensing (CS) is applied to TWRI. With CS, only a fraction of the data are used to produce a high-quality image, provided that the scene is sparse. However, owing to multipath ghosts, the scene sparsity is highly deteriorated; hence, the performance of the CS algorithms is compromised. This paper presents and discusses the adverse effects of multipath ghosts in TWRI. It describes the physical formation of ghosts, their challenges, and existing suppression techniques.

진단용 자기공명영상장치의 삽입 코일에 관한 연구 (A Study on the Insertional Coil of MRI Device for Diagnosis)

  • 이용문;임근호;서대건;김왕곤;홍진웅
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2003년도 제5회 학술대회 논문집 일렉트렛트 및 응용기술연구회
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    • pp.33-37
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    • 2003
  • Endovaginal and endorectal receiver only surface coil were designed for MR imaging(MRI) and $^1H$ MR spectroscopy(MRS) for the uterine cervix and the prostate. The shape of endovaginal coil wire was rectangular with round comer. The shape of endorectal coil wire was long elliptic shape during insertion and circular shape after insertion. Conventional spin echo and fast spin echo sequences were used as T1 and T2 weighted imaging sequences, respectively. 3D volume localized in vivo $^1H$ MR spectroscopy of the human cervix and prostate was performed using PRESS or STEAM localization method. Using home-built endvaginal and endorectal coils, excellent T1 and T2 images were obtained to visualize early cervical and prostate tumors. 3D volume localized in vivo $^1H$ MRS was useful to differentiate the cancerous tissue from the normal tissue.

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Characterisation of Tensile Deformation through Infrared Imaging Technique

  • B. Venkataraman, Baldev Raj;Mukhophadyay, C.K.
    • 비파괴검사학회지
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    • 제22권6호
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    • pp.609-620
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    • 2002
  • It is well known that during tensile testing, a part of the mechanical work done on the specimen is transformed into heat energy. However, the ultimate temperature rise and the rate of temperature rise is related to the nature of the material, conditions of the test and also to the deformation behaviour of the material during loading. The recent advances in infrared sensors and image/data processing techniques enable observation and quantitative analysis of the heat energy dissipated during such tensile tests. In this study, infrared imaging technique has been used to characterise the tensile deformation in AISI type 316 nuclear grade stainless steel. Apart from identifying the different stages during tensile deformation, the technique provided an accurate full-field temperature image by which the point and time of strain localization could be identified. The technique makes it possible to visualise the region of deformation and failure and also predict the exact region of fracture in advance. The effect of thermal gradients on plastic flow in the case of interrupted straining revealed that the interruption of strain and restraining at a lower strain rate not only delays the growth of the temperature gradient, but the temperature rise per unit strain decreases. The technique is a potential NDE tool that can be used for on-line detection of thermal gradients developed during extrusion and metal forming process which can be used for ensuring uniform distribution of plastic strain.

Imaging of a Defect in Thin Plates Using the Time Reversal of Single Mode Lamb Wave: Simulation

  • Jeong, Hyun-Jo;Lee, Jung-Sik;Bae, Sung-Min;Lee, Hyun-Ki
    • 비파괴검사학회지
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    • 제30권3호
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    • pp.261-270
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    • 2010
  • This paper presents an analytical investigation for a baseline-free imaging of a defect in plate-like structures using the time-reversal of Lamb waves. We first consider the flexural wave (A0 mode) propagation in a plate containing a defect, and reception and time reversal process of the output signal at the receiver. The received output signal is then composed of two parts: a directly propagated wave and a scattered wave from the defect. The time reversal of these waves recovers the original input signal, and produces two additional side bands that contain the time-of-flight information on the defect location. One of the side band signals is then extracted as a pure defect signal. A defect localization image is then constructed from a beamforming technique based on the time-frequency analysis of the side band signal for each transducer pair in a network of sensors. The simulation results show that the proposed scheme enables the accurate, baseline-free detection of a defect, so that experimental studies are needed to verify the proposed method and to be applied to real structure.

Localization of Broca's Area Using Functional MR Imaging: Quantitative Evaluation of Paradigms

  • Kim, Chi-Heon;Kim, Jae-Hun;Chung, Chun-Kee;Kim, June-Sic;Lee, Jong-Min;Lee, Sang-Kun
    • Journal of Korean Neurosurgical Society
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    • 제45권4호
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    • pp.219-223
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    • 2009
  • Objective : Functional magnetic resonance imaging (fMRI) is frequently used to localize language areas in a non-invasive manner. Various paradigms for presurgical localization of language areas have been developed, but a systematic quantitative evaluation of the efficiency of those paradigms has not been performed. In the present study, the authors analyzed different language paradigms to see which paradigm is most efficient in localizing frontal language areas. Methods : Five men and five women with no neurological deficits participated (mean age, 24 years) in this study. All volunteers were right-handed. Each subject performed 4 tasks, including fixation (Fix), sentence reading (SRI. pseudoword reading (PR), and word generation (WG). Fixation and pseudoword reading were used as contrasts. The functional area was defined as the area(s) with a t-value of more than 3.92 in fMRI with different tasks. To apply an anatomical constraint, we used a brain atlas mapping system, which is available in AFNI, to define the anatomical frontal language area. The numbers of voxels in overlapped area between anatomical and functional area were individually counted in the frontal expressive language area. Results : Of the various combinations, the word generation task was most effective in delineating the frontal expressive language area when fixation was used as a contrast (p<0.05). The sensitivity of this test for localizing Broca's area was 81 % and specificity was 70%. Conclusion : Word generation versus fixation could effectively and reliably delineate the frontal language area. A customized effective paradigm should be analyzed in order to evaluate various language functions.

Bridge Inspection and condition assessment using Unmanned Aerial Vehicles (UAVs): Major challenges and solutions from a practical perspective

  • Jung, Hyung-Jo;Lee, Jin-Hwan;Yoon, Sungsik;Kim, In-Ho
    • Smart Structures and Systems
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    • 제24권5호
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    • pp.669-681
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    • 2019
  • Bridge collapses may deliver a huge impact on our society in a very negative way. Out of many reasons why bridges collapse, poor maintenance is becoming a main contributing factor to many recent collapses. Furthermore, the aging of bridges is able to make the situation much worse. In order to prevent this unwanted event, it is indispensable to conduct continuous bridge monitoring and timely maintenance. Visual inspection is the most widely used method, but it is heavily dependent on the experience of the inspectors. It is also time-consuming, labor-intensive, costly, disruptive, and even unsafe for the inspectors. In order to address its limitations, in recent years increasing interests have been paid to the use of unmanned aerial vehicles (UAVs), which is expected to make the inspection process safer, faster and more cost-effective. In addition, it can cover the area where it is too hard to reach by inspectors. However, this strategy is still in a primitive stage because there are many things to be addressed for real implementation. In this paper, a typical procedure of bridge inspection using UAVs consisting of three phases (i.e., pre-inspection, inspection, and post-inspection phases) and the detailed tasks by phase are described. Also, three major challenges, which are related to a UAV's flight, image data acquisition, and damage identification, respectively, are identified from a practical perspective (e.g., localization of a UAV under the bridge, high-quality image capture, etc.) and their possible solutions are discussed by examining recently developed or currently developing techniques such as the graph-based localization algorithm, and the image quality assessment and enhancement strategy. In particular, deep learning based algorithms such as R-CNN and Mask R-CNN for classifying, localizing and quantifying several damage types (e.g., cracks, corrosion, spalling, efflorescence, etc.) in an automatic manner are discussed. This strategy is based on a huge amount of image data obtained from unmanned inspection equipment consisting of the UAV and imaging devices (vision and IR cameras).

척수경색의 확산강조자기공명영상 (Diffus ion-Weighted MR Imaging of Spinal Cord Infarction)

  • 김윤정;서정진;임남열;정태웅;김윤현;박진균;정광우;강형근
    • Investigative Magnetic Resonance Imaging
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    • 제6권2호
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    • pp.166-172
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    • 2002
  • 목적: 척수경색의 진단에서 현성확산계수 값의 측정을 포함한 확산강조자기공명영상의 유용성을 평가하고자하였다. 대상 및 방법: 척수 경색으로 진단받은 6명의 환자를 대상으로 후향적으로 분석하였다. 경색증상 발현 후 평균 5.4일이 지난 후에 1.5 T 초전도체 자기공명영상 기기를 이용하여 자기공명영상을 얻었다. 확산강조자기공명영상은 고식적인 b값($1000s/\textrm{mm}^2$)으로 하여 multi-shot echo planar imaging 기법을 이용하여 영상을 획득하였으며 개인용 컴퓨터로 옮겨져 현성확산계수 지도를 얻어 정상부위와 병변부위의 현성확산계수 값을 측정하였다. 자기공명영상에서 병변의 위치와 T1 과 T2 강조영상, 그리고 확산강조자기공명영상에서 나타나는 각각의 신호강도를 알아 보았고, 병변부위와 정상부위에서 측정한 현성확산계수 값을 비교하였다. 결과: T1강조영상에서 6예 중 4예에서 등신호강도를, 2예에서 저신호 강도를 보였고, T2강조 영상에서 6예 모두 고신호강도를 보였다. 또한 확산강조자기공명영상에서 6예 모두 고신호강도를 보였다. 현성확산계수 지도는 6예 전예에서 성공적으로 얻을 수 있었다. 현성확산계수 지도에서 6예 모두 정상과 뚜렷한 차이를 보이는 색조변화를 보였으며, 6예 모두 병변부위의 현성확산계수 값은 정상 부위의 현성확산계수의 값보다 더 낮았으며 통계적으로 유의하였다 (p<0.05 ). 결론: 척수경색 환자에서 척수병변의 확산강조자기공명영상과 현성확산계수 값의 측정이 가능하였다. 따라서 확산강조자기공명영상은 척수경색의 조기진단과 국재화(localization)에 유용하리라 보여진다.

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고차표면 경사자계코일을 이용한 새로운 공간 선택 방법 (A New Spatial Localization Technique Using High-Order Surface Gradient Coils (SGC))

  • 이종권;양윤정;정성택;이윤;조장희;오창현
    • 대한의용생체공학회:학술대회논문집
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    • 대한의용생체공학회 1994년도 추계학술대회
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    • pp.43-46
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    • 1994
  • A new spatial localization technique using high-order surface gradient coil (SGC) is proposed. Although the Spatial Selection with High-Order gradient (SHOT) can provide a 2-D selection with only one selective RF pulse, the high-order gradient produced by cylindrical-shape coils has not been clinically useful for clinical systems due to the large minimum selection size caused by the limited radial gradient intensity. However, by using the proposed high-order SGCs located near the imaging region, the size of volume selection can be reduced to a clinically useful 1-4 cm in diameter by applying stronger radial gradient with much less gradient driving power. A 40 cm-by-40 cm $r^{2}$ SGC has been designed and constructed, and phantom and volunteer studies have been performed. Experimental results using spatially localized MRI show good agreement to the theoretically predicted behavior.

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