• Title/Summary/Keyword: 피질하부영역

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Comparison of Differences in Subcortical between Men and Women in their Seventies (70대의 성별에 따른 피질하부 차이 비교)

  • Ahn, Beyung-Ju;Park, Hye-Mi;Kim, Joo-Yeon;Lee, Jeong-hwan
    • Journal of the Korean Society of Radiology
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    • v.14 no.5
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    • pp.585-595
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    • 2020
  • Magnetic resonance imaging(MRI) has become an important technique for examining changes in human brain structure with neurological disorders. Brain development is a very complex process, and is affected by neurogenesiss and genetic programs. As age increases, structures of the brain change, which can contribute to the formation of brain diseases. Among the various factors, Gender is one of the greatest influential factors that affect the development of a healthy brain. The images were analyzed through various programs found in FSL such as SIENAX, FIRST, and Vertex analysis. Our results show that significant gender-related differences in subcortical areas were observed at the particular age group. The magnitude of these differences between gender and volume varied depending on the area investigated. In this study, we used more advanced 3T MRI for the structural analysis of subcortical structures between each gender. In addition, Vertex Analysis was used to visualize the volumetric differences in subcortical structures between each gender. This study is limited to groups in their 70s, therefore, further studies are needed for wider age groups.

Investigating Volumetric changes of Brain Structure in Women Aged 65 to 85 Years Old (65세부터 85세 여성의 뇌 구조 부피 변화 조사)

  • Kim, Yong-Wane
    • Journal of the Korean Society of Radiology
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    • v.14 no.7
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    • pp.947-956
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    • 2020
  • The human body becomes vulnerable to various diseases due to deterioration in structure and function as it ages. In particular, changes in brain structure weaken the immune system against diseases such as vascular and metabolic neuropsychiatric diseases. In this study, we used a magnetic resonance imaging technique that allows non-invasive observation of brain structures and measurement of how the volumes of the brain, gray matter, white matter, and subcortical regions changes with aging in women aged 65 to 85 years. As a result of our investigation, we observed a significant linear decrease in subcortical regions with age. These results suggest that the changes due to aging in the brain structure area are closely related to neuropsychiatric diseases in old age, and can provide information in understanding the vulnerability of the brain in old age.

Interactivity within large-scale brain network recruited for retrieval of temporally organized events (시간적 일화기억인출에 관여하는 뇌기능연결성 연구)

  • Nah, Yoonjin;Lee, Jonghyun;Han, Sanghoon
    • Korean Journal of Cognitive Science
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    • v.29 no.3
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    • pp.161-192
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    • 2018
  • Retrieving temporal information of encoded events is one of the core control processes in episodic memory. Despite much prior neuroimaging research on episodic retrieval, little is known about how large-scale connectivity patterns are involved in the retrieval of sequentially organized episodes. Task-related functional connectivity multivariate pattern analysis was used to distinguish the different sequential retrieval. In this study, participants performed temporal episodic memory tasks in which they were required to retrieve the encoded items in either the forward or backward direction. While separately parsed local networks did not yield substantial efficiency in classification performance, the large-scale patterns of interactivity across the cortical and sub-cortical brain regions implicated in both the cognitive control of memory and goal-directed cognitive processes encompassing lateral and medial prefrontal regions, inferior parietal lobules, middle temporal gyrus, and caudate yielded high discriminative power in classification of temporal retrieval processes. These findings demonstrate that mnemonic control processes across cortical and subcortical regions are recruited to re-experience temporally-linked series of memoranda in episodic memory and are mirrored in the qualitatively distinct global network patterns of functional connectivity.

Quantitative Evaluation of the Corticospinal Tract Segmented by Using Co-registered Functional MRI and Diffusion Tensor Tractography (정상인에서 기능적 뇌 자기공명영상과 확산텐서영상 합성기법을 이용한 피질척수로의 위치에 따른 정량적 분석)

  • Jang, Sung-Ho;Hong, Ji-Heon;Byun, Woo-Mok;Hwang, Chang-Ho;Yang, Dong-Seok
    • Investigative Magnetic Resonance Imaging
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    • v.13 no.1
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    • pp.40-46
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    • 2009
  • Purpose : The purpose of this study was to investigate the quantitative evaluation of the corticospinal tract (CST) at the multiple levels by using functional MRI (fMRI) co-registered to diffusion tensor tractography (DTT). Materials and Methods : Ten normal subjects without any history of neurological disorder participated in this study. fMRI was performed at 1.5 T MR scanner using hand grasp-release movement paradigm. DTT was performed by using DtiStudio on the basis of fiber assignment continuous tracking algorithm (FACT). The seed region of interest (ROI) was drawn in the area of maximum fMRI activation during the motor task of hand grasp-release movement on a 2-D fractional anisotropy (FA) color map, and the target ROI was drawn in the cortiocospinal portion of anterior lower pons. We have drawn five ROIs for the measurement of FA and apparent diffusion coefficient (ADC) along the corona radiata (CR) down to the medulla. Results : The contralateral primary sensorimotor cortex (SM1) was mainly found to be activated in all subjects. DTT showed that tracts originated from SM1 and ran to the medulla along the known pathway of the CST. In all subjects, FA values of the CST were higher at the level of the midbrain and posterior limb of internal capsule (PLIC) than the level of others. Conclusion : Our study showed that co-registered fMRI and DTT has elucidated the state of CST on 3-D and analyzed the quantitative values of FA and ADC at the multiple levels. We conclude that co-registered fMRI and DTT may be applied as a useful tool for clarifying and investigating the state of CST in the patients with brain injury.

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Effect of Bone Quality on Insertion Torque during Implant Placement; Finite Eelement Analysis (임플란트 식립 시 골질이 주입회전력에 미치는 영향에 관한 삼차원 유한요소 분석)

  • Jeong, Jae Doug;Cho, In-Ho
    • Journal of Dental Rehabilitation and Applied Science
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    • v.25 no.2
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    • pp.109-123
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    • 2009
  • The aim of the study was to assess the influence of insertion torque of bone quality and to compare axial force, moment and von Mises stress using finite element analysis of plastoelastic property for bone stress and strain by dividing bone quality to its thickness of cortical bone, density of trabecular bone and existence of lower cortical bone when implant inserted to mandibular premolar region. The $Br{\aa}nemark$ MKIII. RP implant and cylindrical bone finite model were designed as cortical bone at upper border and trabecular bone below the cortical bone. 7 models were made according to thickness of cortical bone, density of trabecular bone and bicortical anchorage and von Mises stress, axial force and moment were compared by running time. Dividing the insertion time, it seemed 300msec that inferior border of implant flange impinged the upper border of bone, 550msec that implant flange placed in middle of upper border and 800msec that superior border of implant flange was at the same level as bone surface. The maximum axial force peak was at about 500msec, and maximum moment peak was at about 800msec. The correlation of von Mises stress distribution was seen at both peak level. The following findings were appeared by the study which compared the axial force by its each area. The axial force was measured highest when $Br{\aa}nemark$ MKIII implant flange inserts the cortical bone. And maximal moment was measured highest after axial force suddenly decreased when the flange impinged at upper border and the concentration of von Mises stress distribution was at the same site. When implant was placed, the axial force and moment was measured high as the cortical bone got thicker and the force concentrated at the cortical bone site. The influence of density in trabecular bone to axial force was less when cortical bone was 1.5 mm thick but it might be more affected when the thickness was 0.5 mm. The total axial force with bicortical anchorage, was similar when upper border thickness was the same. But at the lower border the axial force of bicortical model was higher than that of monocortical model. Within the limitation of this FEA study, the insertion torque was most affected by the thickness of cortical bone when it was placed the $Br{\aa}nemark$ MKIII implant in premolar region of mandible.

Activation of Limbic Area due to Oxygen Administration during Visuospatial Task (공간 과제 수행 시 고농도 산소 공급에 의한 변연계 활성화에 관한 연구)

  • Choi, Mi-Hyun;Lee, Su-Jeong;Yang, Jae-Woong;Kim, Ji-Hye;Choi, Jin-Seung;Tack, Gye-Rae;Chung, Soon-Cheol;Kim, Hyun-Jun
    • Science of Emotion and Sensibility
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    • v.12 no.4
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    • pp.443-450
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    • 2009
  • The purpose of this study is to observe activation of limbic system during performing visuospatial tasks by 21% and 30% oxygen administration. Eight right handed male college students were selected as the subjects for this study. A visuospatial task was presented while brain images were scanned by a 3T fMRI system. The experiment consisted of two runs: one was a visuospatial task under normal air(21% oxygen) condition and the other under hyperoxic air(30% oxygen) condition. The neural activations were observed at the limbic system which is seperated 8 regions such as cingulate gyrus, thalamus, limbic lobe, hypothalamus, hippocampus, parahippocampa gyrus, amygdala, and mammiilary body. By two oxygen levels, activation areas of limbic system are almost identical. Increased neural activations were observed in the cingulate gyrus and thalamus with 30% oxygen administration compared to 21% oxygen. During 30% oxygen administration, improvement of visuospatial task performance has a relation to increase of neural activation of subcortical structures such as thalamus and cingulate gyrus as well as cerebral cortex.

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Central Localization of the Neurons Projecting to the Urinary Bladder Meridian (족태양방광경(足太陽膀胱經)에서 투사(投射)되는 신경원(神經元)의 표지부위(標識部位)에 대(對)한 연구(硏究))

  • Kim Jeong-Yun;Jun Hong-Jae;Lee Sang-Ryoung;Lee Chang-Hyun;Chung Ok-Bong
    • Korean Journal of Acupuncture
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    • v.17 no.1
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    • pp.81-100
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    • 2000
  • Transsynaptic tracer이며 신경친화성 virus인 pseudorabies virus(PRV)를 방광(膀胱), 방광유(膀胱兪), 위중(委中) 및 중추(中極)에 주입(注入)한 후 4일간의 생존기간이 경과한 후 희생시켜 면역조직화학침액법(免疫組織化學染色法)에 의하여 뇌척수에 표지된 공통된 영역들을 비교하여 관찰한 결과는 다음과 같다. 1. 방광벽(膀胱壁), 방광유(膀胱兪), 위중(委中) 및 중추(中極)에서 척수에 투사된 영역은 흉수(胸髓), 요수(腰髓) 및 천수(薦髓)에 모두 표지되었으며 공통적으로 표지된 부위는 척수(脊髓)의 층판 IV, V, VII, IX, X영역에 표지되었으나 주로 강하게 표지된 공통된 영역은 층판 VII의 중간외측핵, 가슴기둥 및 층판 X영역이었다. 2. 방광벽(膀胱壁), 방광유(膀胱兪), 위중(委中) 및 중추(中極)에서 뇌(腦)에 투사된 공통된 영역은 연수(延髓)에서는 A1 noradrenalin cells/C1 adrenalin cells/caudoventrolateral reticular nucleus에서 양성반응을 나타내었다. 솔기핵의 경우 아핵인 불명솔기핵, 창백솔기핵 및 큰솔기핵에서 양성반응을 보였다. 다리뇌에서는 청색반점, Barrington's nucleus, A5세포군 및 삼차신경운동핵에서 양성반응을 보였고, 중뇌에서는 눈돌림신경핵, 눈돌림신경섬유 및 다리핵에서 양성반응을 보였다. 간뇌에서는 시상하부(視床下部)의 뇌실(腦室)곁핵과 시상의 뇌실곁핵에서 양성반응을 보였고 대뇌(大腦)에서는 septal nucleus, 피질(皮質)의 뒷다리영역, 마루엽, 이마엽에서 양성반응을 보였다. 이상의 결과를 종합하면 방광(膀胱)에서 투사되는 뇌척수의 영역과 방광유(膀胱兪)나 위중(委中)에서 투사되는 공통된 표지영역들은 방광(膀胱)과 족태양방광경(足太陽膀胱經) 그리고 그 경락(經絡)의 경혈(經穴)들이 어떤 상관성(相關性)을 가지고 연결(連結)되어 있다는 사실을 실험적으로 알 수 있었다. 특히 방광(膀胱)과 방광유(膀胱兪), 위중(委中)에서 투사된 공통된 표지영역, 즉 배뇨중추인 Barrington's nucleus에 표지되는 것은 내장(內臟)-경락(經絡)이 central autonomic pathway에 의하여 서로 연결되었음을 입증하는 중요한 결과(結果)라고 사려(思慮)된다.

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PRELIMINARY STUDY OF BRAIN SPECT IN CHILDREN WITH PERVASIVE DEVELOPMENTAL DISORDER OR DEVELOPMENTAL LANGUAGE DISORDER (전반적발달장애 아동 및 발달성언어장애 아동의 뇌 단일광자방출전산화단층촬영 소견에 대한 예비연구)

  • Shin, Yee-Jin;Ryu, Young-Hoon;Yook, Ki-Hwan;Noh, Kyung S;Song, Dong-Ho;Lee, Ho-Bun
    • Journal of the Korean Academy of Child and Adolescent Psychiatry
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    • v.8 no.2
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    • pp.256-265
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    • 1997
  • Objectives:The purpose of this study was to investigate the characteristics and differences of brain function in pervasive developmental disorder and developmental language disorder. Method:The subjects were composed of 14 cases of pervasive developmental disorder and 13 cases developmental language disorder. They were investigated by technitium-99m-EDC SPECT. All SPECT were visually assessed by two nuclear medicine specialists, and then quantified by region of interest including temporal, parietal cortex, thalamus, basal ganglia and cerebellum. Result:In both groups, cerebral blood flow was decreased in the temporal, parietal cortex, basal ganglia, thalamus, cerebellum by visual assessment. There was no significant difference between the 2 groups by quantitative and qualitative assessment. Conclusion:These results suggest that pervasive developmental disorder and developmental language disorder are caused by defects in the interneural connection and that both disorders are spectrum disorders.

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Different Uptake of Tc-99m ECD and Tc-99m HMPAO in the Normal Brains: Analysis by Statistical Parametric Mapping (정상 뇌 혈류 영상에서 방사성의약품에 따라 혈류 분포에 차이가 있는가: 통계적 파라미터 지도를 사용한 분석)

  • Kim, Euy-Neyng;Jung, Yong-An;Sohn, Hyung-Sun;Kim, Sung-Hoon;Yoo, Ie-Ryung;Chung, Soo-Kyo
    • The Korean Journal of Nuclear Medicine
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    • v.36 no.4
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    • pp.244-254
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    • 2002
  • Purpose: This study investigated the differences between technetium-99m ethyl cysteinate dimer (Tc-99m ECD) and technetium-99m hexamethylpropylene amine oxime (Tc-99m HMPAO) uptake in the normal brain by means of statistical parametric mapping (SPM) analysis. Materials and Methods: We retrospectively analyzed age and sex matched 53 cases of normal brain SPECT. Thirty-two cases were obtained with Tc-99m ECD and 21 cases with Tc-99m HMPAO. There were no abnormal findings on brain MRIs. All of the SPECT images were spatially transformed to standard space, smoothed and globally normalized. The differences between the Tc-99m ECD and Tc-99m HMPAO SPECT images were statistically analyzed using statistical parametric mapping (SPM'99) software. The differences bgetween the two groups were considered significant ant a threshold of corrected P values less than 0.05. Results: SPM analysis revealed significantly different uptakes of Tc-99m ECD and Tc-99m HMPAO in the normal brains. On the Tc-99m ECD SPECT images, relatively higher uptake was observed in the frontal, parietal and occipital lobes, in the basal ganglia and thalamus, and in the superior region of the cerebellum. On the Tc-99m HMPAO SPECT images, relatively higher uptakes was observed in subcortical areas of the frontal region, temporal lobe, and posterior portion of inferior cerebellum. Conclusion: Uptake of Tc-99m ECD and Tc-99m HMPO in the normallooking brain was significantly different on SPM analysis. The selective use of Tc-99m ECD of Tc-99m HMPAO in brain SPECT imaging appears especially valuable for the interpretation of cerebral perfusion. Further investigation is necessary to determine which tracer is more accurate for diagnosing different clinical conditions.