• 제목/요약/키워드: 4차원

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Analysis of Dose Distribution on Critical Organs for Radiosurgery with CyberKnife Real-Time Tumor Tracking System (사이버나이프 실시간 종양추적 시스템을 이용한 방사선수술 시 주요 장기의 선량분포 분석)

  • Huh, Hyun-Do;Choi, Sang-Hyoun;Kim, Woo-Chul;Kim, Hun-Jeong;Kim, Seong-Hoon;Ji, Young-Hoon;Kim, Kum-Bae;Lee, Sang-Hoon;Choi, Jin-Ho;Lee, Re-Na;Shin, Dong-Oh
    • Progress in Medical Physics
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    • v.20 no.1
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    • pp.14-20
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    • 2009
  • We measured the dose distribution for spinal cord and tumor using Gafchromic film, applying 3D and 4D-Treatment Planning for lung tumor within the phantom. A measured dose distribution was compared with a calculated dose distribution generated from 3D radiation treatment planning and 4D radiation treatment planning system. The agreement of the dose distribution in tumor for 3D and 4D treatment planning was 90.6%, 97.64% using gamma index computed for a distance to agreement of 1 mm and a dose difference of 3%. However, a gamma agreement index of 3% dose difference tolerence of and 2 mm distance to agreement, the accordance of the dose distribution around cord for 3D and 4D radiation treatment planning was 57.13%, 90.4%. There are significant differences between a calculated dose and a measured dose for 3D radiation treatment planning, no significant differences for 4D treatment planning. The results provide the effectiveness of the 4D treatment planning as compared to 3D. We suggest that the 4-dimensional treatment planning should be considered in the case where such equipments as Cyberknife with the real time tracking system are used to treat the tumors in the moving organ.

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An Analysis of the De-administration Policy of Universities in China: using Cooper's 4 Dimension Policy Lenses (중국 대학교 탈행정화 정책 분석: Cooper의 4차원 정책분석 모형을 사용하여)

  • Li, Cheng-Shi
    • Korean Journal of Comparative Education
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    • v.28 no.4
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    • pp.165-187
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    • 2018
  • The main purpose of this study is to analyze the reform of deadministration of universities in China by the Cooper's 4-dimension of education policy theory. Based on the theory, the reform of deadministration was analyzed in four dimensions(normative, structural, constituent, and technical dimension). First, in the normative dimension, the Chinese university deadministration policy is fully guaranteed by law, and mainly aimed at "modernization of education management system and management ability". Second, in the structural dimension, a highly administrative management paradigm of universities has played an important role during the early stages of higher education development, but it now becomes one of the main obstacle to its further development. However, the Chinese university de-administration policy is a policy that has taken almost 60 years. Therefore, this problem must be solved step by step. Third, in the constituent dimension, although there were some differences in the attitudes towards "the administration" and "the de-administration" of Chinese scholars, university presidents and the public(students), most of them agreed on eliminating "the administration of universities." Fourth, in the technical dimension, Chinese central government and many universities have accumulated many achievements of "the deadministration policies" in management and practice, while some criticisms are heard, either. However, I hope that all reform cases, regardless of their success or failure, will become a model for future administrative reforms.

4-Dimensional dose evaluation using deformable image registration in respiratory gated radiotherapy for lung cancer (폐암의 호흡동조방사선치료 시 변형영상정합을 이용한 4차원 선량평가)

  • Um, Ki Cheon;Yoo, Soon Mi;Yoon, In Ha;Back, Geum Mun
    • The Journal of Korean Society for Radiation Therapy
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    • v.30 no.1_2
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    • pp.83-95
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    • 2018
  • Purpose : After planning the Respiratory Gated Radiotherapy for Lung cancer, the movement and volume change of sparing normal structures nearby target are not often considered during dose evaluation. This study carried out 4-D dose evaluation which reflects the movement of normal structures at certain phase of Respiratory Gated Radiotherapy, by using Deformable Image Registration that is well used for Adaptive Radiotherapy. Moreover, the study discussed the need of analysis and established some recommendations, regarding the normal structures's movement and volume change due to Patient's breathing pattern during evaluation of treatment plans. Materials and methods : The subjects were taken from 10 lung cancer patients who received Respiratory Gated Radiotherapy. Using Eclipse(Ver 13.6 Varian, USA), the structures seen in the top phase of CT image was equally set via Propagation or Segmentation Wizard menu, and the structure's movement and volume were analyzed by Center-to Center method. Also, image from each phase and the dose distribution were deformed into top phase CT image, for 4-dimensional dose evaluation, via VELOCITY Program. Also, Using $QUASAR^{TM}$ Phantom(Modus Medical Devices) and $GAFCHROMIC^{TM}$ EBT3 Film(Ashland, USA), verification carried out 4-D dose distribution for 4-D gamma pass rate. Result : The movement of the Inspiration and expiration phase was the most significant in axial direction of right lung, as $0.989{\pm}0.34cm$, and was the least significant in lateral direction of spinal cord, as -0.001 cm. The volume of right lung showed the greatest rate of change as 33.5 %. The maximal and minimal difference in PTV Conformity Index and Homogeneity Index between 3-dimensional dose evaluation and 4-dimensional dose evaluation, was 0.076, 0.021 and 0.011, 0.0 respectfully. The difference of 0.0045~2.76 % was determined in normal structures, using 4-D dose evaluation. 4-D gamma pass rate of every patients passed reference of 95 % gamma pass rate. Conclusion : PTV Conformity Index was more significant in all patients using 4-D dose evaluation, but no significant difference was observed between two dose evaluations for Homogeneity Index. 4-D dose distribution was shown more homogeneous dose compared to 3D dose distribution, by considering the movement from breathing which helps to fill out the PTV margin area. There was difference of 0.004~2.76 % in 4D evaluation of normal structure, and there was significant difference between two evaluation methods in all normal structures, except spinal cord. This study shows that normal structures could be underestimated by 3-D dose evaluation. Therefore, 4-D dose evaluation with Deformable Image Registration will be considered when the dose change is expected in normal structures due to patient's breathing pattern. 4-D dose evaluation with Deformable Image Registration is considered to be a more realistic dose evaluation method by reflecting the movement of normal structures from patient's breathing pattern.

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2차원 비점성 천음속 익렬 유동에 대한 수치해석적 연구

  • 이영창;유정열
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.14 no.4
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    • pp.981-989
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    • 1990
  • 본 연구에서는 유한체적법에 의한 4단계 Runge-Kutta방법으로 2차원 익열에 대한 비점성 천음속 유동장에 대한 해석을 수행하기로 하는데 이는 경계층방정식에 대 한 경계조건으로 이용될 수 있고 3차원 계산시 그 기초자료가 될 수 있을 것이다.

The Study of Changing Polysomnograph for 2 Dimension Emotion Classification (2차원 감성분류를 위한 생리신호 변화에 대한 연구)

  • 남승훈;황민철;임좌상;박흥국;조상현
    • Proceedings of the Korean Society for Emotion and Sensibility Conference
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    • 1999.11a
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    • pp.396-400
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    • 1999
  • 인간의 감성은 다차원적 감정으로 이루어져 있다. 본 연구는 감성의 2차원 구조를 근거로 쾌-불쾌, 각성-이완 2차원적 감성을 생리신호로 분류하고자 하였다. 20명 남녀 대학생을 참가시켜 자극을 2차원 감성자극(쾌(펜디향수), 불쾌(에탄올), 각성(싸이렌), 이완(가요))으로 정의하고, 2*2 자극제시로 감성을 유발하였다. 26명의 남녀대학생을 실험에 참가시켜 4가지 감성을 유발하여, 측정한 생리신호로는 중추신경계의 활동을 나타내는 EEG(f3, p3, f4, p4)를 측정하였으며, 자율신경계의 활동을 나타내는 ECG(lead II), GSR, SKT를 측정하였다. 각각의 측정한 신호들에 대한 t-test를 실시하여 유의성 있는 변수를 추출하였으며 추출된 변수는 EEG의 f3(beta), p3(delta, beta), f4(delta), p4(alpha), HRV의 HF, HF/LF, GSR의 rising time이었으며 2차원 감성을 분류하였다.

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A Case Study on Guiding the Mathematically Gifted Students to Investigating on the 4-Dimensional Figures (수학 영재들을 4차원 도형에 대한 탐구로 안내하는 사례 연구)

  • Song, Sang-Hun
    • Journal of Gifted/Talented Education
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    • v.15 no.1
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    • pp.85-102
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    • 2005
  • Some properties on the mathematical hyper-dimensional figures by 'the principle of the permanence of equivalent forms' was investigated. It was supposed that there are 2 conjectures on the making n-dimensional figures : simplex (a pyramid type) and a hypercube(prism type). The figures which were made by the 2 conjectures all satisfied the sufficient condition to show the general Euler's Theorem(the Euler's Characteristics). Especially, the patterns on the numbers of the components of the simplex and hypercube are fitted to Binomial Theorem and Pascal's Triangle. It was also found that the prism type is a good shape to expand the Hasse's Diagram. 5 mathematically gifted high school students were mentored on the investigation of the hyper-dimensional figure by 'the principle of the permanence of equivalent forms'. Research products and ideas students have produced are shown and the 'guided re-invention method' used for mentoring are explained.

Defect Severity-based Dimension Reduction Model using PCA (PCA를 적용한 결함 심각도 기반 차원 축소 모델)

  • Kwon, Ki Tae;Lee, Na-Young
    • Journal of Software Assessment and Valuation
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    • v.15 no.1
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    • pp.79-86
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    • 2019
  • Software dimension reduction identifies the commonality of elements and extracts important feature elements. So it reduces complexity by simplify and solves multi-collinearity problems. And it reduces redundancy by performing redundancy and noise detection. In this study, we proposed defect severity-based dimension reduction model. Proposed model is applied defect severity-based NASA dataset. And it is verified the number of dimensions in the column that affect the severity of the defect. Then it is compares and analyzes the dimensions of the data before and after reduction. In this study experiment result, the number of dimensions of PC4's dataset is 2 to 3. It was possible to reduce the dimension.

3차원 육방형 노심 해석을 위한 다항식전개법(PEN)

  • 조진영;김창효
    • Proceedings of the Korean Nuclear Society Conference
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    • 1995.10a
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    • pp.61-66
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    • 1995
  • 이 논문의 목적은 육방형 핵연료집합체로 구성된 3차원 노심을 해석하기 위한 다항식전개법을 개발하는 것이다. 이를 위해 3차원 육방형 핵연료 집합체를 6개의 3차원 프리즘노드로 분할하였다. 그리고 각 꼭지점에서의 점중성자속, 프리즘 각면의 면중성자속과 노드평균중성자속을 미지변수로 하여 다항식전개법에 의해 프리즘노드내의 중성자속분포를 근사하였다. 각 중성자속간의 관계식으로서 프리즘노드내에서의 노달중성자평형식, 두 노드사이의 면에서의 중성자류 연속관계식, 각 꼭지점에서의 중성자누설평형식을 사용하였다. 다항식전개법은 해석함수 전개법에 비해 약 3배정도 빠르며 4군확산방정식에도 훌륭이 적용되었다. 그리고 VVBR-1000 3차원 벤치마크 문제에서 최대출력오차 2.6%, VVER-440 3차원 벤치마크 문제에서 12 평면과 24평면으로 나눈 경우 각각 최대출력오차 15%와 6.6%, SNR 3차원 문제에서 8 평면과 16 평면으로 나눈 경우 각각 최대오차 5.4%와 2,6%를 보였다.

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시공중인 터널의 2차원 유한요소해석에 대한 고찰

  • 정대열
    • Computational Structural Engineering
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    • v.7 no.4
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    • pp.10-16
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    • 1994
  • 근본적으로 터널을 정확히 해석하려면 3차원 해석이 필요하다. 그러나 3차원 해석은 다루어야 할 자료가 방대하고 또한 시공 단계를 고려하는 3차원 소성해석을 정확히 하기 위해서는 슈퍼컴퓨터와 같은 컴퓨터 파워가 요구된다. 따라서 터널의 해석에서는 대개 하중분배율법을 사용하여 2차원 해석을 수행하고 있는 실정이다. 그러나 하중분배율법에 의한 2차원 해석의 결과는 선택한 하중분배율법에 의존함으로 정확한 하중분배율을 아는 것이 중요하다. 2차원 터널해석을 정확히 하기 위해서는 본문에 기술한 요건을 갖춘 프로그램의 확보, 하중분배율에 대한 정확한 평가, 측압 계수의 신중한 선택, 주위 지반의 물성에 대한 신중한 평가가 필요하다.

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