• Title/Summary/Keyword: 전자 자기공명

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Knee Articular Cartilage Segmentation with Priors Based On Gaussian Kernel Level Set Algorithm (사전정보를 이용한 가우시안 커널 레벨 셋 알고리즘 기반 무릎 관절 연골 자기공명영상 분할기법)

  • Ahn, Chunsoo;Bui, Toan;Lee, Yong-Woo;Shin, Jitae
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.39C no.6
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    • pp.490-496
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    • 2014
  • The thickness of knee joint cartilage causes most diseases of knee. Therefore, an articular cartilage segmentation of knee magnetic resonance imaging (MRI) is required to diagnose a knee diagnosis correctly. In particular, fully automatic segmentation method of knee joint cartilage enables an effective diagnosis of knee disease. In this paper, we analyze a well-known level-set based segmentation method in brain MRI, and apply that method to knee MRI with solving some problems from different image characteristics. The proposed method, a fully automatic segmentation in whole process, enables to process faster than previous semi-automatic segmentation methods. Also it can make a three-dimension visualization which provides a specialist with an assistance for the diagnosis of knee disease. In addition, the proposed method provides more accurate results than the existing methods of articular cartilage segmentation in knee MRI through experiments.

A study of high power microwave output oscillation condition (대용량 마이크로파 출력장치의 발진조건에 관한 연구)

  • Kim, Won-Sop;Kim, Jong-Man
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2008.06a
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    • pp.523-524
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    • 2008
  • 전자빔의 산란에 의한 자기 공명현상과 지파 사이크로트론과의 상호작용에 의한 해석에서 체렌코프 발진이 일어나는 것은 확인하기 위하여 대구경 후진파 발진기를 이용한 실험을 하였다. 전자계와 전자빌의 상호작용을 위한 조절을 위하여 도파관의 반경과 진폭, 파장을 조절하였으며 이에 따른 주파수의 발진을 알수 있었다.

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Superexchange in the Dense Paramagnet $CuF_{2}$ (밀집된 상자성체 $CuF_{2}$의 초교환 상호작용)

  • Jun Hyeong Kim;Chang Hoon Lee;Cheol Eui Lee
    • Journal of the Korean Magnetics Society
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    • v.5 no.3
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    • pp.171-174
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    • 1995
  • We have studied the paramagnetic $CuF_{2}$ using the techniques of pulsed nuclear magnetic resonance(NMR). The powder sample revealed two well-separated lines from the distinct $^{19}F$ sites at room temperature and at 77 K. The distinct frequency shifts of the two lines appear to arise from electron transfers. Furthermore, the two sites have very short spin-lattice relaxation times ($T_{1}$). The frequency-shifted site has the shorter $T_{1}$ than the unshifted one, reflecting the difference of the electron environments of the two sites.

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불균일 전자 밀도 및 중성 대기 효과를 고려한 전리층 모델에서의 전파 전파과정

  • Lee, Jae-Hyeong;Lee, Dong-Hun
    • Bulletin of the Korean Space Science Society
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    • 2009.10a
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    • pp.39.1-39.1
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    • 2009
  • 중성입자가 함께 존재하는 불균일한 플라즈마 내로 입사하는 전파들은 플라즈마의 전자 밀도와 전자-중성입자 충돌에 의해 영향을 받게 된다. 특히 전자들의 운동이 중요한 높은 주파수 파동들은 상위 혼합 공명(Upper Hybrid Resonance)과 주변 자기장 현상에 의한 파동 모드 변환(mode conversion)으로 전파의 성질이 변하게 된다. 그리고 전자-중성입자에 의한 충돌은 에너지의 감쇄 등의 영향을 미치게 된다. 이러한 조건을 모두 고려한 유체 수치 모델을 이용하여 지구의 전리층이나 약한 자기권을 가지고 있는 행성 대기와 같이 플라즈마와 중성입자가 섞여있는 매질에서의 전자기파 파동의 특성을 조사하였다. 주파수, 중성대기 밀도 및 입사 각도에 따라 파동의 공명 흡수량과 감쇄량을 각각 알아본다.

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Compressed-Sensing Cardiac CINE MRI using Neural Network with Transfer Learning (전이학습을 수행한 신경망을 사용한 압축센싱 심장 자기공명영상)

  • Park, Seong-Jae;Yoon, Jong-Hyun;Ahn, Chang-Beom
    • Journal of IKEEE
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    • v.23 no.4
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    • pp.1408-1414
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    • 2019
  • Deep artificial neural network with transfer learning is applied to compressed sensing cardiovascular MRI. Transfer learning is a method that utilizes structure, filter kernels, and weights of the network used in prior learning for current learning or application. The transfer learning is useful in accelerating learning speed, and in generalization of the neural network when learning data is limited. From a cardiac MRI experiment, with 8 healthy volunteers, the neural network with transfer learning was able to reduce learning time by a factor of more than five compared to that with standalone learning. Using test data set, reconstructed images with transfer learning showed lower normalized mean square error and better image quality compared to those without transfer learning.

Electron Paramagnetic Resonance Study of impurity Fe3+ ion in LiTaO3 single crystal (Fe3+ 불순물이 첨가된 LiTaO3 단결정에서의 전자 상자성 공명 연구)

  • Min, S.G.;Yeon, T.H.;Lee, S.H.;Lee, M.K.;Shin, H.K.;Yu, Y.M.;Kim, T.H.;Yu, S.C.
    • Journal of the Korean Magnetics Society
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    • v.13 no.4
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    • pp.171-175
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    • 2003
  • Electron paramagnetic resonance (EPR) of Fe$^{3+}$ in LiTaO$_3$ single crystal, grown by Czochralski method, has been studied by employing an X-band spectrometer. Resonance spectra of Fe$^{3+}$ ion on the crystallographic principal axes were obtained with 9.447 ㎓ at room temperature. The spectroscopic splitting parameter g and zero-field splitting (ZFS) parameter D (= 3 B$_{2}$sup 0/) are calculated with effective spin Hamiltonian. Fe$^{3+}$ center in stoichometric single crystal turns out to be different with that in congruent single crystal reported previously. From the analysis of temperature dependence of resonance fields for Fe$^{3+}$ ion, there is no any phase transition at the temperature range (from -160 $^{\circ}C$ to 20 $^{\circ}C$).

Fabrication and Performance of Electron Cyclotron Resonance Ion Milling System for Etching of Magnetic Film Device (자성박막 소자 에칭용 전자 사이클로트론 공명 이온밀링 시스템 제작과 특성연구)

  • Lee, Won-Hyung;Hwang, Do-Guwn;Lee, Sang-Suk;Rhee, Jang-Roh
    • Journal of the Korean Magnetics Society
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    • v.25 no.5
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    • pp.149-155
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    • 2015
  • The ECR (Electron Cyclotron Resonance) Ar ion milling was manufactured to fabricate the device of thin film. The ECR ion milling system applied to the device etching operated by a power of 600W, a frequency of 2.45 GHz, and a wavelength of 12.24 cm and transferred by a designed waveguide. In order to match one resonant frequency, a magnetic field of 908 G was applied to a cavity inside of ECR. The Ar gas intruded into a cavity and created the discharged ion beam. The surface of target material was etched by the ion beam having an acceleration voltage of 1000 V. The formed devices with a width of $1{\mu}m{\sim}9{\mu}m$ on the GMR-SV (Giant magnetoresistance-spin valve) multilayer after three major processes such as photo lithography, ion milling, and electrode fabrication were observed by the optical microscope.