• Title/Summary/Keyword: 뇌 기능

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Design of User Intention Analysis and Recognition System for Brain-Computer Interfaces (Brain-Computer Interface를 위한 사용자 의도 분석 및 인식 시스템 설계)

  • Shin, Jaewan;Shin, Dongil;Shin, Dongkyoo
    • Proceedings of the Korea Information Processing Society Conference
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    • 2013.11a
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    • pp.1673-1675
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    • 2013
  • 인간 활동의 전 영역을 총괄하는 대뇌정보기능을 대표하는 뇌파는 대뇌피질에서 발현된다고 알려져 있다. 의학적인 연구 결과에 의하면 인지 사고 등의 역동적인 지식 활동, 다양한 감성 행동, 및 고차원적인 정신활동까지도 뇌파 분석을 통해서 어느 정도는 기계적인 인식이 가능한 것으로 알려져 있다. 뇌-컴퓨터 인터페이스는 인간 중심의 시스템을 위한 핵심 연구로서 뇌파 신호 분석에 의한 사용자 의도 인식 시스의 개발을 목표로 한다. 이에 따라서, 범용적으로 적용 가능한 뇌파신호 분석 기법 및 자동 처리 시스템에 관한 연구가 활발히 진행 중이다. 특히, 뇌는 부위별로 그 기능이 세분화 되어 있으며 의식 상태와 정신활동에 따라 뇌파가 수시로 변하면서 특정한 패턴을 갖는다. 이러한 뇌의 정보처리 메커니즘을 밝혀내면 전자장치와의 통신 인터페이스를 통해 기기를 제어할 수 있다. 본 논문은 사용자의 의도를 분석하는 방법과 이를 통해 다른 장치의 인터페이스를 제어할 수 있는 시스템을 설계했다.

Cellular and Biochemical Mechanism of Perinatal Hypoxic-Ischemic Brain Injury (주산기 저산소-허혈 뇌손상의 세포 생화학적 기전)

  • Chang, Young Pyo
    • Clinical and Experimental Pediatrics
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    • v.45 no.5
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    • pp.560-567
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    • 2002
  • 주산기 뇌손상은 주로 급격한 저산소-허혈 손상에 의하는데 급격한 산소 공급의 차단은 oxidative phosphorylation을 정지 시켜서 뇌대사를 위한 에너지 공급이 차단되게 된다. 에너지 공급이 차단된 뇌세포는 뇌세포막에서 세포 내외의 이온 농도 차를 유지시키던 ATP-dependent $Na^{+}-K^{+}$ pump의 기능이 정지 되고, 세포 내외의 농도 차에 따라 $Na^{+}$, $Cl^{+}$, $Ca^{{+}{+}}$의 대규모 세포 내로 이동이 일어난다. 세포 내로 calcium 이온의 이동은 glutamate 수용체의 활성화에 의해서도 일나는데, 세포 내 calcium 이온의 증가는 protease, lipase, nuclease 등을 활성화 시켜 세포를 사망에 이르게 하는 연속적이고 다양한 생화학적 반응을 일으키게 된다. Glutamate는 대표적인 신경 전달 물질인데 저산소-허혈 손상 시 glutamate 수용체의 지나친 흥분은 미성숙 뇌에 뇌손상을 유발하는데, NMDA 또는 non-NMDA 수용체와 복합체를 형성하고 있는 calcium 이동 통로를 활성화 시켜 세포 내 calcium 이온을 증가시키고, 그 외에 metabotropic recetor는 G-protein의 활성화 등을 통해 뇌손상을 유발하는 다양한 생화학적 반응을 매개한다. 저산소-허혈 손상 후 재산소화와 재관류가 일어나면서 뇌세포의 지연성 사망(secondary neuronal death)이 일어나는데 이는 초기 손상 후 뒤이어 일어나는 다양한 생화학적 반응에 의하는데 다량의 산소 자유기 발생, nitric oxide의 생성, 염증 반응과 싸이토카인, 신경전도 물질의 과흥분 등이 관여하며, 신경 세포 사망은 세포괴사(necrosis)뿐 아니라 일부는 세포 사멸(apoptosis)로 알려진 의도된 세포 사망(programmed cell death)에 의한 것으로 생각되고 있다(Fig. 2).

Effects of Aquatic Exercise on Vestibulo-motor and Expression of GAP-43 in Diffuse brain Injury Rats (수중운동이 미만성 뇌손상 백서의 전정-운동 및 GAP-43 발현에 미치는 영향)

  • Yang, Seung-Hoon
    • The Journal of the Korea Contents Association
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    • v.9 no.12
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    • pp.656-664
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    • 2009
  • The purposes of this study were to examine whether aquatic exercise has influence on the neuroplasticity and vestibulo-motor function in diffuse brain injury rats. 80 Sprague-Dawley rats were assigned to four groups; Group I: control group (n=20), Group II: aquatic exercise (n=20), Group III: treadmill exercise with change of velocity and inclination (n=20), Group IV: simple treadmill exercise (n=20). And we applied exercise each groups for 3 weeks except Group I. Before the rats were sacrificed to identify immunohistochemistry study at each time of measurement day, Rota-Rod test was given to assess changes in vestibulomotor function. then, the immunohistochemistry study of GAP-43 in discrete regions of the rat brain was performed to measure changes in neuroplasticity. The results demonstrate that aquatic exercise group is more effective than other groups. expression of GAP-43 and vestibulo-motor function were increased most in aquatic exercise group. Therefore, this study suggest that aquatic exercise may effective therapeutic approach to increase neuroplasticity and vestibulo-motor function in traumatic brain injury.

Usefulness of Functional MRI for the study of concentration sheet (Functional MRI를 이용한 학습집중력 향상 시트 개발)

  • Kim, Chang-Gyu
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.10 no.10
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    • pp.2985-2989
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    • 2009
  • An experiment was conducted to examine the effects of ceramic sheet on concentration of students studies. To demonstrate the improvement in the concentration of study, we obtained functional magnetic resonance imaging (fMRI), which has superior time resolution and measures brain noninvasively by using intrinsic contrast agent. As a result of Brainwave measurement, we could verify the blood flow's activate in the nearby frontal lobe related to memory process and noticeable ratio change in absolute alpha wave and beta wave after the analysis of Brainwave measurement. fMRI ascertains the physiological function of the brain and is being used to prevent the trouble medically that can be caused before and after the operation. For the visibility of cranial nerve network, many researches will be carried out to develope the product which is related to brain like concentration of study.

Brain Function During Recall of Anger Experience According to the Level of Trait Anger (분노 경험 회상시 특성 분노 수준에 따른 뇌 기능)

  • Eum, Young-Ji;Lee, Kyung Hwa;Sohn, Jin-Hun
    • Science of Emotion and Sensibility
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    • v.21 no.3
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    • pp.49-60
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    • 2018
  • Trait anger is one of the psychological traits associated with experiences of anger. Individuals with high trait anger become angry easily at trivial events, and experience anger more frequently, intensely, and over a longer duration. This study aimed to investigate neural responses during experiences of anger, and identify the neural correlates of trait anger. Thirty five adults participated in the functional magnetic resonance (fMRI) experiment. They were scanned while they recalled an anger-inducing memory that was supposed to evoke an experience of anger. During the angry recall compared to the emotionally neutral recall, our participants showed greater neural activation in the right superior temporal gyrus (BA38), left inferior frontal gyrus (BA45), right thalamus, right insula (BA13), bilateral cuneus (BA17), and right cerebellum anterior lobe. The correlation analysis revealed that trait anger scores were positively associated with right insula activity during the angry recall. Individuals with higher trait anger were more likely to show greater activity in the right insula in response to past experiences of anger, as previously implicated in various studies of emotional processing. This finding suggests that trait anger may be an important factor in modulating anger-related brain activity.

Neuropsychological Mechanism of Delusion (망상의 신경심리학적 기전)

  • Lee, Sung-Hoon;Kim, Dong-Wha;Park, Yun-Zo;Park, Hae-Jung;Shin, Yoon-Sik
    • Sleep Medicine and Psychophysiology
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    • v.7 no.1
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    • pp.60-66
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    • 2000
  • Objectives: The Psychopathology of schizophrenia was expected to be related with focal dysfunction of brain while schizophrenia is recognized and studied as the brain disease. Authors studied correlation between neuropsychological tests and delusion which is representative symptom of schizophrenia in patients with head trauma and psychiatric patients in order to explore the functional localization of brain in delusional symptom. Methods: Halstead Reitan Neuropsychological Test Battery and Korean Weschler Intelligent Scale and Minnesota Multiphasic Personality Inventory(MMPI) were administered to one hundred ninteen patients consisted of sixty nine psychiatric patients and fifty patients with brain damage. We tested correlation between results of neuropsychological tests and delusional scale made from twenty four items related with delusion in MMPI. T-test between eighteen higher delusion scorers and twenty one lower scorers was examed in psychiatric group. Results: In brain damage group, signigicant correlations were found in the tests related with function of frontal lobe such as category test, trail making AB test, tactual performance test, digit symbol test and fingertip number writing test, and significant correlations were also noted in the tests related with function of left temporal and parietal lobes such as information, comprehension, vocabulary, similarities and speech sound perception test. The tests related with the function of right hemisphere such as tactual performance test location, picture completion and performance, and the tests related with subcortical function such as arithmetic, digit span, attention, digit symbol test, digit symbol and trail making AB test were signigicantly corelated with delusional scale too. In psychiatric group there were significant difference of delusional score in the tests related with function of left hemisphere such as vocabulary, vocable IQ, comprehension and language, and in the tests related with subcortical function such as N 120 voltage, digit symbol and arithmetic. Conclusions: Delusion seems to be related with function of frontal lobe, left hemisphere and subcortex in both groups. Right hemisphere may be also partially related with delusion.

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Effect of Treatment with Docosahexaenoic Acid into N-3 Fatty Acid Deficient and Adequate Diets on Rat Brain and Liver Fatty Acid Composition (필수 지방산 조성이 다른 식이의 docosahexaenoic acid 투여가 흰쥐 뇌 및 간의 지방산 조성에 미치는 영향)

  • Lim, Sun-Young
    • Journal of Life Science
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    • v.19 no.10
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    • pp.1417-1423
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    • 2009
  • Previous studies have suggested that docosahexaenoic acid (DHA) supplementation into n-3 fatty acid deficient diet improved spatial learning performance, but there was no significant difference in brain related function when DHA was added into a n-3 fatty acid adequate diet. Here, we investigated the effect of adding DHA into an n-3 fatty acid deficient or adequate diet on brain and liver fatty acid composition. On the second day after conception, Sprague Dawley strain dams were divided into four groups as follows; n-3 fatty acid deficient (Def), n-3 fatty acid deficient plus DHA (Def+DHA, 10.2% DHA), n-3 fatty acid adequate (Adq, 3.4% linolenic acid), and n-3 fatty acid adequate plus DHA (Adq+DHA, 3.31% linolenic acid plus 9.65% DHA). After weaning, male pups were fed on the same diets of their respective dams until adulthood. In brain fatty acid composition, the Def group showed a lower brain DHA (64% decrease), which was largely compensated for by an increase in docosapentaenoic acid (22:5n-6). Brain DHA in the Def+DHA group was increased to almost the same extent as in the Adq and Adq+DHA groups and there were no significant differences among them. Liver fatty acid composition showed a similar pattern to that of the brain, but liver DHA in the Def+DHA showed the highest percentage among the diet groups. In conclusion, n-3 fatty acid deficiency from gestation to adulthood leads to decreased brain DHA, which has been shown to be highly associated with poor spatial leaning performance. Thus, adequate brain DHA levels are required for optimal nervous function.