• Title/Summary/Keyword: 뇌기반 연구

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수학 교실에서 뇌-기반 학습에 대한 연구

  • Sin, In-Seon;Jang, Yeong-Il;Gwon, Jeom-Rye
    • Communications of Mathematical Education
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    • v.14
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    • pp.177-195
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    • 2001
  • 인간의 교수${\cdot}$학습은 본질적으로 뇌 기능과 많은 관련을 맺고 있기 때문에 뇌-기반 학습에서는 우리의 뇌가 최적으로 학습하는 방식에 기초해 접근을 시도한다. 지난 30년간의 뇌에 대한 연구는 교수${\cdot}$학습에 대해서 이용할 만한 많은 정보를 제시하고 있다. 많은 교육연구가들은 뇌 연구를 기초로 뇌가 최적으로 학습하는 뇌-친화적 환경을 도입하였고, Politano & Paquin(2000)은 현행교실에 실제로 이용 가능한 뇌-기반 환경을 창조하기 위한 기초로서 10가지 요소를 제시하면서 뇌-기반 학습에서 학습자는 자신에게 익숙한 학습감각을 가지고 있으며 그것을 통한 학습이 효과적임을 말하였다. 수학교육에서도 이와 같이 뇌-기반 학습을 배경으로 하는, 학습자의 학습감각을 고려한 교수${\cdot}$학습이 의미있다고 할 수있다. 본 연구에서는 뇌기반 학습의 의미를 고찰하고, 제 7차 교육과정이 실행되는 초등학교 4학년, 중학교 2학년, 고등학교 1학년에 교실에 대한 학습감각을 조사하였으며, 수학 교실에서 학습자의 학습감각을 고려한 수업활동을 제시하였다.

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Brain-based Learning Science: What can the Brain Science Tell us about Education? (뇌기반 학습과학: 뇌과학이 교육에 대해 말해 주는 것은 무엇인가?)

  • Kim, Sung-Il
    • Korean Journal of Cognitive Science
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    • v.17 no.4
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    • pp.375-398
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    • 2006
  • Humans learn by observing, hearing, imitating, doing, and feeling. The brain(cortex) is the central tore of this process. The recent rapid progress of brain science and the active interdisciplinary collaboration between brain science and cognitive science opens a new possibility. That is a new research Held called 'Brain-Based learning Science', 'Edutational Neuroscienre', or 'NeuroEduration' This study reviews the nature and basic assumptions of brain-based learning science, current directions in educational neuroscience research, the neuro-myths, educational implications of neuroscience, and a possibility of making a meaningful connection between brain science and education. Also the future prospects and limitations of the brain-based learning science are discussed.

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Brain-based Instructional Design for Android Programming Lessons (안드로이드 프로그래밍 수업을 위한 뇌기반 교수학습 설계)

  • Choi, Sook-Young
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2018.05a
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    • pp.601-603
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    • 2018
  • Studies are under way to understand how the brain learns and how it works most effectively through the development of brain science. The purpose of this study is to apply brain - based learning principles as a way to effectively overcome the characteristics of the programming lesson and the difficulties that arise during the practice. In other words, by applying the brain-based learning principle appropriate to the characteristics of the Android programming class, the teaching and learning is designed so that the learner can effectively learn the programming.

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A Meta-Analytic Review of Effects of Brain-Based Education (뇌기반 교육의 효과에 대한 메타분석)

  • Jang, Hwan Young;Jang, Bong Seok
    • Journal of Practical Engineering Education
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    • v.12 no.1
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    • pp.41-47
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    • 2020
  • This study aims to investigate effects of brain-based learning. 27 primary studies were selected through rigorous search process and analyzed through meta-analytic methods. Research findings are as follows. First, the total effect size was .67. Second, the effect of dependent variables was academic achievement, cognitive domain, and affective domain in order. Third, with respect to types of cognitive domain, the effect was self-regulation, creativity, competence, communication, and research ability in order. Fourth, the effect of affective domains was sociality, learning interest, and subject attitude in order. Fifth, regarding development of cognitive ability, the effect size was combined, brain training, learning environments, and right brain activities in order. Sixth, the effect of learning activities was memory improvement and attention enhancement in order.

Status of Brain-based Artistic Education Fusion Study - Basic Study for Animation Drawing Education (뇌기반 예술교육 융합연구의 현황 - 애니메이션 드로잉 교육을 위한 기초연구)

  • Lee, Sun Ju;Park, Sung Won
    • Cartoon and Animation Studies
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    • s.36
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    • pp.237-257
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    • 2014
  • This study is the process of performing the interdisciplinary fusion study between multiple fields by identifying the status on the previous artistic education considering the brain scientific mechanism of image creativity and brain-based learning principles. In recent years, producing the educational methods of each field as the fusion study activities are emerging as the trend and thanks to such, the results of brain-based educational fusion studies are being presented for each field. It includes artistic fields such as music, art and dance. In other words, the perspective is that by understanding the operating principles of the brain while creativity and learning is taking place, when applying various principles that can develop the corresponding functions as a teaching method, it can effectively increase the artistic performance ability and creativity. Since the animation drawing should be able to intuitively recognize the elements of movement and produce the communication with the target beyond the delineative perspective of simply drawing the objects to look the same, it requires the development of systematic educational method including the methods of communication, elements of higher cognitive senses as well as the cognitive perspective of form implementation. Therefore, this study proposes a literature study results on the artistic education applied with brain-based principles in order to design the educational model considering the professional characteristics of animation drawing. Therefore, the overseas and domestic trends of the cases of brain-based artistic education were extracted and analyzed. In addition, the cases of artistic education studies applied with brain-based principles and study results from cases of drawing related education were analyzed. According to the analyzed results, the brain-based learning related to the drawing has shown a common effect of promoting the creativity and changes of positive emotion related to the observation, concentration and image expression through the training of the right brain. In addition, there was a case of overseas educational application through the brain wave training where the timing ability and artistic expression have shown an enhancement effect through the HRV training, SMR, Beta 1 and neuro feedback training that strengthens the alpha/seta wave and it was proposing that slow brain wave neuro feedback training contributes significantly in overcoming the stress and enhancing the creative artistic performance ability. The meaning of this study result is significant in the fact that it was the case that have shown the successful application of neuro feedback training in the environment of artistic live education beyond the range of laboratory but the use of the machine was shown to have limitations for being applied to the teaching methods so its significance can be found in providing the analytical foundation for applying and designing the brain-based learning principles for future animation drawing teaching methods.

The Effect of Brain-Based Evolutionary STEAM Education on Scientific Interest and Scientific Creativity in Elementary School Students (뇌기반 진화적 STEAM 교육이 초등학생의 과학 흥미와 과학 창의성에 미치는 영향)

  • Jeong, Kyung-Wook;Lim, Chae-Seong
    • Journal of Korean Elementary Science Education
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    • v.40 no.2
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    • pp.239-252
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    • 2021
  • The purpose of this study is to develop an evolutionary STEAM education program based on the brain and to analyze its effects on scientific interest and scientific creativity of elementary school students. Four different topics based on four scientific fields (Physics, Chemistry, Biology and Earth Science) were derived from the science textbook under the 2015 revised curriculum to build a brain-based evolutionary STEAM education program. The research subjects were 90 fourth graders of S-elementary school located in Gyeonggi Province, Korea and they were divided into an experimental group of 45 students and a comparative group of 45 students. The main findings of this study are as follows. First, according to the independent samples t-test of scientific interest, no statistically significant difference were found between the two groups, but the brain-based evolutionary STEAM education had meaningful effect on improving 'interest in scientific learning' and 'anxiety about scientific learning'. Second, according to the paired samples t-test of scientific interest, the experimental group had significantly improved 'interest in science' but on the other hand, there was no effect on the comparative group. Third, scientific creativity and originality of the experimental group were significantly higher after the class than that of the comparative group. Fourth, although there were some significant differences between the two groups in scientific creativity after the class, both groups had improved scientific creativity between the results of pre and post test. Based on these results, we discuss implications for science education and STEAM education research.

3D Visualization of Brain for MRI Image (MRI영상에서 뇌 영역의 3차원 가시화)

  • 김영철;문치웅;최흥국
    • Proceedings of the Korea Multimedia Society Conference
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    • 2003.05b
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    • pp.389-392
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    • 2003
  • MRI 영상은 뇌의 해부학적 정보와 기능적인 정보를 제공하는 유용한 도구이다. MR 뇌 영상은 2차원 영상뿐만 아니라 3차원 영상도 임상적으로 중요하다. MR 영상에서 뇌영역의 추출방법으로는 형태학적인 방법, 히스토그램을 이용한 방법, 에지 정보를 이용한 방법, 지식 기반을 이용한 방법들이 있다. 본 논문에서는 region growing을 이용하여 MR 영상에서 뇌 영역을 추출하였다. 3차원 가시화를 위하여 오픈 소스인 VTK를 이용하여 Ray Casting 알고리즘으로 구현하였다. 그리고 의료영상에서 사용되는 각종 단면을 3차원 뇌 영상에서 재구성하였다. 256×256 크기의 71 뇌MR 영상 70장을 이용하여 실험하였다. 향후 연구과제로 MR 영상에서 뇌 영역추출방법과 원영상의 전처리 과정의 연구가 필요하다.

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뇌파기반 뇌-컴퓨터 인터페이스 기술

  • 음태완;김응수
    • Communications of the Korean Institute of Information Scientists and Engineers
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    • v.22 no.2
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    • pp.5-19
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    • 2004
  • 사람의 뇌에 관한 연구는 고대 그리스 시대에서부터 제기 되어왔으며, 사람을 해부하여 인간의 뇌가 수많은 뉴런으로 이루어 졌다는 것을 밝혀내었다. 이 뉴런들의 활동에 의하여 전기적 신호가 발생한다는 것을 알았고, 인간의 모든 행동, 학습, 사고, 기억활동을 제어하는 뇌의 기능을 이해하기 위한 연구가 계속되었다.

A Survey and Comparison of 3D Registration of Brain Images Between Marker Based and Feature Based Method (마커 기반과 특징기반에 기초한 뇌 영상의 3차원 정합방법의 비교 . 고찰)

  • 조동욱;김태우;신승수;김지영;김동원;조태경
    • The Journal of the Korea Contents Association
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    • v.3 no.3
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    • pp.85-97
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    • 2003
  • Medical tomography images like CT, MRI, PET, SPECT, fMRI, ett have been widely used for diagnosis and treatment of a patient and for clinical study in hospital. In many cases, tomography images are scanned in several different modalities or with time intervals for a single subject for extracting complementary information and comparing one another. 3D image registration is mapping two sets of images for comparison onto common 3D coordinate space, and may be categorized to marker -based matching and feature-based matching. 3D registration of brain images has an important role for visual and quantitative analysis in localization of treatment area of a brain, brain functional research, brain mapping research, and so on. In this article, marker-based and feature-based matching methods which are often used are introduced.

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A Study on the Effects of Early Childhood Design Education Program Activities Based on Brain-Compatible Learning Principles (뇌 기반 학습원리를 적용한 유아디자인교육 활동이 유아의 창의성과 친사회적 행동에 미치는 영향)

  • Ahn, Gyoung Suk;Shin, Ae Sun
    • Korean Journal of Child Education & Care
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    • v.17 no.2
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    • pp.45-73
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    • 2017
  • The purpose of this study was to suggest the effects of early childhood design program based on brain-compatible learning principles. Subjects were thirty-six children from two class of I kindergarten and S kindergarten in K city. One class was assigned to an experimental group and had early childhood education program activities based on brain-compatible learning principles and the other class was assigned to a comparative group the general art education program activities. The results of this study are as follows. First, there was a significant difference between the experimental group and the comparative group in their fluency, originality, sensitivity of creativity. Second, participants in the experimental group also score higher on the helpful act, communication skill, sharing skill, empathy, and regulation of emotion. Therefore, early childhood design education program based on brain-compatible learning principles should be considered as a meaningful alternative method for promoting children's creativity and prosocial behaviors.