• Title/Summary/Keyword: 감각피질

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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.

Clinical Effect through Histological Characteristics of Focal Ischemia Region (뇌허혈성 부위의 조직학적 특성을 통한 임상적 영향)

  • Lee, Tae-Hoon
    • Journal of Industrial Convergence
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    • v.17 no.4
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    • pp.39-43
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    • 2019
  • Mouse embryonic stem cell could show an substitutional materials of cells of neuron differentiation, positively increasing their effectiveness in the treatment of nervous symptom. We examined that mouse embryonic stem cells (mESCs) can be induced to undergo neuronal differentiation. After neuronal induction, the phenotype of mESCs changed towards neuronal morphology and mESCs were injected into the lateral ventricle of the experimental animal brain. Transplanted cells migrated to various parts of the brain and ischemic brain injury by middle cerebral artery occlusion (MCAO) increased their migration to the injured cortex. Intracerebral grafting of mESCs mostly improve sensory and motor nervous system of neurological injury in focal cerebral rats.

Repetition Antipriming: The Effects of Perceptual Ambiguity on Object Recognition (반복 반점화: 지각적 모호성이 물체 재인에 미치는 영향)

  • Kim, Ghoo-Tae;Yi, Do-Joon
    • Korean Journal of Cognitive Science
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    • v.21 no.4
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    • pp.603-625
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    • 2010
  • Neural representation of a visual object is distributed across visual cortex and overlapped with those of many other objects. Thus repeating an object facilitates the recognition of the object while it impairs the recognition of other objects. These effects are called repetition priming and antipriming, respectively. Two experiments investigated a new phenomenon of repetition antipriming, in which a repeated object itself is antiprimed. The learning stage presented object pictures which were degraded at various levels. Participants determined how recognizable each object was. Then, the test stage presented the intact version of the object pictures and made participants to perform a categorization task. Both Experiment 1 and 2 found that the processing of the objects that had been recognized were facilitated (repetition priming) while the processing of the objects that had been perceptually ambiguous were impaired (repetition antipriming). These findings suggest that experiencing a perceptually ambiguous object might enhance the connection between feature-level representations and multiple object-level representations, which impairs the subsequent recognition of the repeated object.

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Osteomyelitis involved in Mandibular Condyle (하악 과두에 이환된 악골 골수염)

  • Park, Ju-Hyun;Kwon, Jeong-Seung;Ahn, Hyung-Joon;Kim, Seong-Taek;Choi, Jong-Hoon
    • Journal of Oral Medicine and Pain
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    • v.33 no.4
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    • pp.383-386
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    • 2008
  • Osteomyelitis is considered an inflammatory condition of bone that usually begins as an infection of the medullary cavity and quickly extends to periosteum of the area. Early acute osteomyelitis of the mandible is usually characterized by deep, intense pain, high intermittent fever, paresthesia or anesthesia of the lower lip and a clearly identifiable cause. If the disease is not controlled or inadequately treated after onset, acute osteomyelitis progresses to a chronic form. The diagnosis of mandibular osteomyelitis rests on processing for identification of microbiologic isolates and on imaging studies to determine the extent of disease. Mandibular osteomyelitis often is associated with involvement of the masticator space and can exhibit symtoms similar to temporomandibular disorder including orofacial pain and limited mouth opening. Advanced imaging modalities can be helpful in obtaining a proper diagnosis.

Exploration of Neurophysiological Mechanisms underlying Action Performance Changes caused by Semantic Congruency between Perceived Action Verbs and Current Actions (지각된 행위동사와 현재 행위의 의미 일치성에 따른 행위 수행 변화의 신경생리학적 기전 탐색)

  • Rha, Younghyoun;Jeong, Myung Yung;Kwak, Jarang;Lee, Donghoon
    • Korean Journal of Cognitive Science
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    • v.27 no.4
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    • pp.573-597
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    • 2016
  • Recent fMRI and EEG research for neural representations of action concepts insist that processing of action concepts evoke the simulation of sensory-motor information. Moreover, there are several behavioral studies showing that understanding of action verbs or sentences describing actions interfere or facilitate current action performance. However, it is unclear that online interaction between processing of action concepts and current action is based on the simulation of sensory-motor information, or other neural mechanisms. The present research aims to explore the underlying neural mechanism that how the perception of action language influence the performance of current action using high-spacial temporal resolution EEG and multiple source analysis techniques. For this, participants were asked to perform a cued-motor reaction task in which button-pressing hand action and pedal-stepping foot action were required according to the color of the cue, and we presented auditorily action verbs describing the responding actions (i.e., /press/, /step/, /stop/) just before the color cue and examined the interaction effect from the semantic congruency between the action verbs and the current action. Behavioral results revealed consistently a facilitatory effect when action verbs and responding actions were semantically congruent in both button-pressing and pedal-stepping actions, and an inhibitory effect when semantically incongruent in the button-pressing action condition. In the results of EEG source waveform analysis, the semantic congruency effects between action verbs and the responding actions were observed in the Wernicke's area during the perception of action verbs, in the anterior cingulate gyrus and the supplementary motor area (SMA) at the time when the motor-cue was presented, and in the SMA and primary motor cortex (M1) during action execution stage. Based on the current findings, we argue that perceived action verbs evoke the facilitation/inhibition effect by influencing the expectation and preparation stage of following actions rather than the directly activating the particular motor cortex. Finally we discussed the implication on the neural representation of action concepts and methodological limitations of the current research.

Mechanical Physiology of the Somatic Nervous System-(Mechanical Transmission Mechanism and Initial Local Excitation of Somatic Neurons)- (체성신경계(體性神經系)의 기계적(機械的) 생리학(生理學)- 기계적전달(機械的傳達)과 체성신경원(體性神經元)의 초발국소흥분(初發雇所興奮) -)

  • Kwak, Je-Hi
    • The Korean Journal of Physiology
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    • v.1 no.1
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    • pp.7-22
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    • 1967
  • 인간(人間)의 감각(感覺), 운동(運動), 사고등(思考等)에 직접관여(直接關與)하는 체성신경원(體性神經元)이 인체내(人體內)에 있어서 단일세포동물(單一細胞動物)과 비체성신경원(非體性神經元)과 같이 각종(各種)의 자극(刺戟)에 직접응(直接應)하므로써 기능적(機能的) 활동(活動)을 개시(開始)한다는 한연(漢然)한 예상하(豫想下)에서 말초(末梢)에서는 혹종(或種)의 통소(痛素)를, 중추(中樞)에서는 어떤 묘(妙)한 화학적(化學約)인 흥분전달물질(興奮傳達物質)을 탐구(探求)하고 있으며 말초(末梢)의 통흥분시발(痛興奮始發)과 대뇌피질(大腦皮質)의 기능발생(機能發生)같은 중요(重要)한 제기전(諸機轉)이 해명(解明)될 가능성(可能性)조차 보이지 않는 것이 체성신경생리학(體性神經生理學)의 현상(現狀)이다. 저자(著者)는 생태분리(生態分離)한 단일신경섬유실험(單一神經纖維實驗)과 임상적연구(臨床的硏究)로서 인체내(人體內)의 체성신경섬유(體性神經纖維)와 그 구심성종말(求心性終末)은 최종(最終) 공통기계적자극(共通機械的刺戟)을 받는 점(點)을 입증(立證)하고 뇌피질내(腦皮質內)의 입사(入射)에 의(依)한 Synapse 전달(傳達)이 기계적(機械的)인 점(點)과 모세혈관확대(毛細血管擴大)에 의(依)한 Glial Satellite 부(部)의 기계적전달(機械的傳達)과 Spine Koph 에서는 입사(入射) 없이도 Massage에 의(依)하여 초발탈분극(初發脫分極)이 발생(發生)될 필연성(必然性)을 지적(指摘)하는 동시(同時)에 저자(著者)가 부르는 ${\ulcorner}$체성신경계(體性神經系)의 기계적생리학(機械的生理學)${\lrcorner}$에 의(依)하면 난간(難間)에 속(屬)하는 대다수(大多數)의 신경현상(神經現象)과 정신현상(精神現象)이 구체적(具體的)이며 합리적(合理的)이요 또 실용적(實用的)으로 해명(解明)됨을 실례(實例)를 들어서 예시(例示)한다. 본연구(本硏究)는 습수만예(拾數萬例)의 단일신경섬유관찰(單一神經纖維觀察)과 수백예(數百例)의 임상적연구(臨床的硏究)와 최근고도(最近高度)로 발달(發達)된 기술(技術)에 의(依)한 징소생리학적(徵少生理學的) 제연구업속(諸硏究業續)과 전자현미경적형태학성과(電子顯徵鏡的形態學成果)를 종합(綜合)하므로써 성립(成立)된 것이요 하등(何等)적 무리(無理)한 억측(憶測)을 내포(內包)하지 않음을 확신(確信)한다.

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Anterior Cervical interbody Fusion with Cervical Spine Locking Plate (경추 물림 금속판을 이용한 경추 전방추체간 유합술)

  • Park, Joo-Tae;Ahn, Gil-Young;Lee, Young-Tae;Ahn, Myun-Whan
    • Journal of Yeungnam Medical Science
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    • v.14 no.1
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    • pp.209-219
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    • 1997
  • Objectives: Anterior approach to achieve arthrodesis of the cervical spine has become a widely accepted and often-used approach since its earliest reports by Bailey and Badgley, Smith and Robinson and Cloward. However, anterior interbody fusion in the presence of the posterior instability may be complicated by the bone graft dislodgement, kyphotic defomity or nonunion. As an attemp to prevent this undesirable complication, additional methods such as skeletal traction, halo appratus or even posterior fusion has been utilized. Therefore, The cervical spine locking plate(CSLP) with the anterior intervertebral body bone grafting provide immediate cervical stabilization and widely successful in achieving fusion. Material and methods: This study analysed 14 patients who underwent a single anterior procedure and application of CSLP for the treatment of the cervical spinal disorder. Eleven patients were disc herniations and three patients were traumatic lesion. The average age of the patient was 47 years and the mean follow up periods was 20 months ranging from 13 to 27 months. Results: Ambulation was started 2nd day after the operation with the aid of the Philadelpia orthoses. Bone union was observed 13 cases on average 12 weeks after operation. The one case was nonunion with plate breakage without clinical symptom. Conclusion: Anterior fusion with CSLP are thought to be a safe and valuable method for treating cervical spine disorder.

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Motor Imagery Brain Signal Analysis for EEG-based Mouse Control (뇌전도 기반 마우스 제어를 위한 동작 상상 뇌 신호 분석)

  • Lee, Kyeong-Yeon;Lee, Tae-Hoon;Lee, Sang-Yoon
    • Korean Journal of Cognitive Science
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    • v.21 no.2
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    • pp.309-338
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    • 2010
  • In this paper, we studied the brain-computer interface (BCI). BCIs help severely disabled people to control external devices by analyzing their brain signals evoked from motor imageries. The findings in the field of neurophysiology revealed that the power of $\beta$(14-26 Hz) and $\mu$(8-12 Hz) rhythms decreases or increases in synchrony of the underlying neuronal populations in the sensorymotor cortex when people imagine the movement of their body parts. These are called Event-Related Desynchronization / Synchronization (ERD/ERS), respectively. We implemented a BCI-based mouse interface system which enabled subjects to control a computer mouse cursor into four different directions (e.g., up, down, left, and right) by analyzing brain signal patterns online. Tongue, foot, left-hand, and right-hand motor imageries were utilized to stimulate a human brain. We used a non-invasive EEG which records brain's spontaneous electrical activity over a short period of time by placing electrodes on the scalp. Because of the nature of the EEG signals, i.e., low amplitude and vulnerability to artifacts and noise, it is hard to analyze and classify brain signals measured by EEG directly. In order to overcome these obstacles, we applied statistical machine-learning techniques. We could achieve high performance in the classification of four motor imageries by employing Common Spatial Pattern (CSP) and Linear Discriminant Analysis (LDA) which transformed input EEG signals into a new coordinate system making the variances among different motor imagery signals maximized for easy classification. From the inspection of the topographies of the results, we could also confirm ERD/ERS appeared at different brain areas for different motor imageries showing the correspondence with the anatomical and neurophysiological knowledge.

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ERS Feature Extraction using STFT and PSO for Customized BCI System (맞춤형 BCI시스템을 위한 STFT와 PSO를 이용한 ERS특징 추출)

  • Kim, Yong-Hoon;Kim, Jun-Yeup;Park, Seung-Min;Ko, Kwang-Eun;Sim, Kwee-Bo
    • Journal of the Korean Institute of Intelligent Systems
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    • v.22 no.4
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    • pp.429-434
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    • 2012
  • This paper presents a technology for manipulating external devices by Brain Computer Interface (BCI) system. Recently, BCI based rehabilitation and assistance system for disabled people, such as patient of Spinal Cord Injury (SCI), general paralysis, and so on, is attracting tremendous interest. Especially, electroencephalogram (EEG) signal is used to organize the BCI system by analyzing the signals, such as evoked potential. The general findings of neurophysiology support an availability of the EEG-based BCI system. We concentrate on the event-related synchronization of motor imagery EEG signal, which have an affinity with an intention for moving control of external device. To analyze the brain activity, short-time Fourier transform and particle swarm optimization are used to optimal feature selection from the preprocessed EEG signals. In our experiment, we can verify that the power spectral density correspond to range mu-rhythm(${\mu}8$~12Hz) have maximum amplitude among the raw signals and most of particles are concentrated in the corresponding region. Result shows accuracy of subject left hand 40% and right hand 38%.

Software Development for the Visualization of the Orientation of Brain Fiber Tracts in Diffusion Tensor Imaging Using a 24 bit Color Coding

  • Jung-Su Oh;In Chan Song;Ik-Hwan Cho;Jong-Hyo Kim;Kee Hyun Chang;Kwang-Suk Park
    • Journal of Biomedical Engineering Research
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    • v.25 no.1
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    • pp.43-47
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    • 2004
  • Interests in human brain functionality and its connectivity have much frown up. DTI (Diffusion tensor imaging) has been known as a non-invasive MR) technique capable of providing information on water diffusion in tissues and the organization of white matter tract. Thus. It can provide us the information on the direction of brain fiber tract and the connectivity among many important cortical regions which can not be examined by other anatomical or functional MRI techniques. In this study. was used the 24 bit color coding scheme on the IDL platform in the windows environment to visualize the orientation of major fiber tracts of brain such as main association, projection, commissural fibers and corticospinal tracts. We additionally implemented a color coding scheme for each directional component and FA (fractional anisotropy), and used various color tables for them to be visualized more definitely. Consequently we implemented a fancy and basic technique to visualize the directional information of fiber tracts efficiently and we confirmed the feasibility of the 24 bit color coding scheme in DTI by visualizing main fiber tracts.