• Title/Summary/Keyword: 자기공명영상왜곡

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Assessment of Imaging Distortion in Magnetic Resonance Imaging for Stereotactic Radiosurgery: Through Phantom Study (뇌정위 방사선수술 시스템을 위한 자기공명영상의 공간적 왜곡의 측정 : 모형실험을 통한 연구)

  • 박선원;한문희;김동규;정현태;송인찬
    • Investigative Magnetic Resonance Imaging
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    • v.4 no.1
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    • pp.7-13
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    • 2000
  • Purpose : To assess the distortion of MRI with the Leksell stereotactic radiosurgery system in variable pulse sequence and imaging plane through phantom study, to find most adequate imaging plane and pulse sequence for stereotactic radiosurgery system. Materials and methods : We made the phantoms for MRI and get images in variable conditions and analyzed the image distortion using image analysis program, and statistically using paired student t-test. Results : The transeverse plane images had acceptable error ranges bless than 1.5mm) in all pulse sequence in both the analysis of fiducial marker in stereotactic G-frame and the phantom study. The coronal plane images had unacceptable large errors (more than 1.7mm) in the analysis of fiducial marker in the stereotactic G-frame, but had corrected small errors (less than 1.5mm) in the phantom study. Conclusion : We find from the phantom study that the present MR machines are adequate for stereotactic surgery system in frequently used pulse sequences, and imaging planes.

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Quantitative evaluation of MRI distortion using orthopedic prosthetic metal (정형보철용 금속을 이용한 자기공명영상왜곡의 정량적 평가)

  • Kim, Hyeonggyun
    • Journal of the Korean Society of Radiology
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    • v.7 no.1
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    • pp.57-62
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    • 2013
  • Despite the many advantages of magnetic resonance imaging in orthopedic prosthetic body image distortion to the differences in the magnetic susceptibility occurs. Attached to the phantom and pork produced by the same $65{\times}15{\times}2mm$ stainless steel and titanium specimen examined the relationship between magnetic resonance imaging and phantom images, the signal intensity changes of the subcutaneous tissue, fat-suppressed quantitative assessment of the degree through the length of image distortion and pig bones. Stainless steel to titanium to 2.8 times 4.4 times in the longitudinal direction than in the direction of the height of large image distortion, signal strength is relatively low 58.5%. Normal 56.2% compared to the subcutaneous tissue, fat-suppressed, were stainless steel 16.04%, 54.53% titanium. Experimental results than the diagnostic value of magnetic resonance imaging (MRI) images of stainless steel with a titanium metal if better could see.

The Impact of Signal Intensity and Image Distortion Magnetic Resonance Imaging in the Orthopedic Prosthetic Metal (자기공명영상에서 정형보철 금속이 신호강도와 영상왜곡에 미치는 영향)

  • Kim, Hyeong-Gyun;Choi, Seong-Dae
    • Journal of radiological science and technology
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    • v.35 no.4
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    • pp.321-326
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    • 2012
  • Used as an ingredient in the hospital for orthopedic prosthetic stainless and titanium metal the same size as on the MRI diagnostic value of imaging were compared. Center of images, background high band portion of the video signal is converted into a weighted intensity values Normal images and compared. The area of normal slice and also the distortion of images and cross-sectional imaging of a range of quantitative and sagittal planes were compared. As a result, the periphery high band signal intensity values of Stainless video phantom 2, pig bone 1.8, Titanium imaging of phantom 1.7 has higher value than Normal video pig bone 1.3 times the signal strength rivers. MRI distortion of the shape and the distortions of the range, if the cross-sectional area compared to Normal Slice Stainless case of phantom 65.8 %, pig bone 61.5 %, Titanium distortion phantom 23.1 %, pig bone 38.5 % of the range of community found. In this experiment, as a result, MRI was found to be Titanium more diagnostic value than the specimen with respect to the signal intensity weighted value and low distortion range, Stainless.

A State-of-the Art MRI of the Lungs Using Hyperpolarized Gas

  • 이동훈
    • Proceedings of the KSMRM Conference
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    • 1999.11a
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    • pp.19-25
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    • 1999
  • 허파에 대한 수소 자기공명영상은 현재까지 거의 불가능한 것으로 알려져 있다. 허파의 조직과 비어있는 공간 사이의 심한 자화율(susceptibility) 차이로 인해서 영상왜곡 현상이 유발되어 그릇된 영상정보를 만들기 때문이다. 본 강좌에서는 이러한 문제를 해결할 수 있는 레이저 광펌핑 방법으로 초편극화된 비활성기체를 이용한 자기공명연구를 소개한다. 일반적인 자기공명 신호와 쳐편극화된 비활성기체를 이용한 자기공명 연구를 소개한다. 일반적인 자기공명 신호와 초편극화 기체를 이용한 신호의 차이와 물리적인 원리를 고찰할 것이다 . 비활성기체가 초편극화 되었을 때, 일반적인 자기공명의 경우에 (자기장: 1 Tesla, 온도는 $30^{\circ}C$의 열평형상태) 비해서 약 $10^{5}$ 정도의 magnetizaion 향상을 기대할 수 있으며, 기체상태라는 점이 감안된다 해도 의미 있는 자기공명신호를 획득할 수 있다. 비활성기체를 초편exchange 방법을 통하여 간접적으로 가스를 편극화 시키는 두 가지 방법이 있다. 이들의 기본적인 원리와 두 방법의 장단점 등을 알아 볼 것이다. 더불어, 초편극화 정도가 외부자기장의 세기 차이에 의한 영향을 받지 않는 다는 특성을 이용하는 경우, 비용을 최소화 하면서 고해상도의 영상을 얻을 수 있으며, 이동성이 용이한 낮은 자기고명진단기가 가능한데 이에 대한 소개를 할 것이다. 그리고, 초편극화가스를 이용한 자기공명영상 연구의 현재 동향 및 미래에 대해서 논의한다.

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Distortion of Magnetic Resonance Imaging for Different Types of Orthodontic Material (치과 교정 물질에 따른 자기공명영상의 왜곡)

  • Song, Hyun-Og;Lim, Cheong-Hwan;Lee, Sang-Ho;Yang, Oh-Nam;Baek, Chang-Moo;Jung, Hong-Ryang
    • Journal of Digital Convergence
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    • v.12 no.2
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    • pp.439-446
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    • 2014
  • To evaluate the effects of an artifact by metal material for orthodontics in Magnetic Resonance Image (MRI) examination, wires and brackets used in orthodontics were selected and compared. Using a head coil, a $T_2$-weighted image, $T_1$-weighted image and FLAIR image were obtained. With obtained images, the sizes of the artifacts were measured and compared using Image J Program. In the research, the material with the biggest artifact in the wires and brackets for orthodontics was stainless steel wire. In the future, selecting and developing metal for correction should be considered also in other fields along with the purpose of orthodontics.

Development of 3D Projection Reconstruction MR Angiography

  • 김대흥;김은주;정은기
    • Proceedings of the KSMRM Conference
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    • 2001.11a
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    • pp.148-148
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    • 2001
  • 목적: 자기 공명 혈관 영상(MR Angiography)법으로 혈관 촬영시, 혈관 협착으로 인하여 난류 현상이 발생되는 곳에서는 영상 자체가 얻어지지 않는다. 기존에 TE를 줄이거나 또는 projection reconstruction 방법은 2차원 TOF(Time of Flight)에 적용이 되어서 좋은 결과를 얻었다. 그런데, 2차원 TOF보다는 3차원 TOF으로 보다 좋은 혈관 영상을 얻을 수가 있다. 하지만, 3차원 TOF 방법에 projection reconstruction 방법을 적용하는 데는 여러 가지 문제점이 있어서 개발되어 있는 것이 거의 없다. 본 연구에서는 3차원 TOF 방법에 projection reconstruction 방법을 적용하여서 혈관내의 난류 현상에 의한 영상의 왜곡을 극복하는 방법을 개발한다. 대상 및 방법: 3차원 projection reconstruction을 위한 pulse sequence를 실제 진단에 사용하는 GE사의 자기공명영상장치(1.5T)에 맞게 독자적으로 개발한다. GE사의 장비에서 자료를 얻어서 일반 컴퓨터에서 영상을 재구성하는 알고리즘을 자체 개발한다. 혈관에서와 비슷한 형태의 난류를 발생시킬 수 있는 기구를 만들어서 실제 혈관영상에 사용하는 방법과 개발한 방법으로 영상을 비교한다.

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Metal Artifact Caused by Magnetic Field Strength and Sequence on T1WI-MRI (자기공명영상에서 자장세기와 시퀀스에 따른 아티팩트 변화)

  • Ko, Seong-Jin
    • The Journal of the Korea Contents Association
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    • v.10 no.9
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    • pp.302-308
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    • 2010
  • In MRI, the Ferromagnetic artifact is generated by the metalization within in which the before inspection removal is impossible and the distortion of an image is brought. The distortion measure according to the steel for each sequence of T1 image and magnetic field intensity are analyzed and minimized method is looked into. We used SIEMENS 1.5T and 3.0T MRI for experiment equipment. First, it places within the Phantom making a metalization(Ti+Al, Stainless, Nitinol) on 1.5T, 3.0T MRI and the T1 weighted image for each Sequence is acquired. The distortion of an image and about adjacent portion change of the metal material were compared through the obtained image, we analyzed. In all metalizations, a distortion was generated and a distortion was few in particularly, and Titanium-Aluminium alloy. And the extent of a distortion was worse image in the Turbo spin Echo. The use of the Titanium-Aluminium alloy the inserted in an internal material of the metalization is recommend. and, equipment of 1.5T the patient inserting a metal in an internal is used in an inspection than equipment of 3.0T. Also, the sequence is suitable when it obtains the optimum T1 weighted image of an impersonate to use the Turbo spin Echo.

Determining the Location of Metallic Needle from MR Images Distorted by Susceptibility Difference (자화율 차이로 인해 왜곡된 영상으로부터 금속 바늘의 위치 결정)

  • Kim, Eun-Ju;Kim, Dae-Hong
    • Investigative Magnetic Resonance Imaging
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    • v.14 no.2
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    • pp.87-94
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    • 2010
  • Purpose : To calculate the appearance of the image distortion from metallic artifacts and to determine the location of a metallic needle from a distorted MR image. Materials and Methods : To examine metal artifacts, an infinite metal cylinder in a strong magnetic field are assumed. The cylinder’s axis leaned toward the magnetic field along some arbitrary angle. The Laplace equation for this situation was solved to investigate the magnetic field distortion, and the simulation was performed to evaluation the image artifact caused by both readout and slice-selection gradient field. Using the result of the calculation, the exact locations of the metal cylinder were calculated from acquired images. Results : The distances between the center and the folded point are measured from images and calculated. Percentage errors between the measured and calculated distance were less than 5%, except for one case. Conclusion : The simulation was successfully performed when the metal cylinder was skewed at an arbitrary tilted angle relative to the main magnetic field. This method will make it possible to monitor and guide both biopsy and surgery with real time MRI.

Study of Motion Effects in Cartesian and Spiral Parallel MRI Using Computer Simulation (컴퓨터 시뮬레이션을 이용한 직각좌표 및 나선주사 방식의 병렬 자기공명 영상에서 움직임 효과 연구)

  • Park, Sue-Kyeong;Ahn, Chang-Beom;Sim, Dong-Gyu;Park, Ho-Chong
    • Investigative Magnetic Resonance Imaging
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    • v.12 no.2
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    • pp.123-130
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    • 2008
  • Purpose : Motion effects in parallel magnetic resonance imaging (MRI) are investigated. Parallel MRI is known to be robust to motion due to its reduced acquisition time. However, if there are some involuntary motions such as heart or respiratory motions involved during the acquisition of the parallel MRI, motion artifacts would be even worse than those in conventional (non-parallel) MRI. In this paper, we defined several types of motions, and their effects in parallel MRI are investigated in comparisons with conventional MRI. Materials and Methods : In order to investigate motion effects in parallel MRI, 5 types of motions are considered. Type-1 and 2 are periodic motions with different amplitudes and periods. Type-3 and 4 are segment-based linear motions, where they are stationary during the segment. Type-5 is a uniform random motion. For the simulation, Cartesian and spiral grid based parallel and non-parallel (conventional) MRI are used. Results : Based on the motions defined, moving artifacts in the parallel and non-parallel MRI are investigated. From the simulation, non-parallel MRI shows smaller root mean square error (RMSE) values than the parallel MRI for the periodic (type-1 and 2) motions. Parallel MRI shows less motion artifacts for linear(type-3 and 4) motions where motions are reduced with shorter acquisition time. Similar motion artifacts are observed for the random motion (type-5). Conclusion : In this paper, we simulate the motion effects in parallel MRI. Parallel MRI is effective in the reduction of motion artifacts when motion is reduced by the shorter acquisition time. However, conventional MRI shows better image quality than the parallel MRI when fast periodic motions are involved.

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