• 제목/요약/키워드: structural disorder

검색결과 172건 처리시간 0.033초

청소년 물질남용의 구조 모형 (Construction of the Structural Equation Model on Substance Use in Adolescents)

  • 배정이
    • 대한간호학회지
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    • 제39권3호
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    • pp.446-457
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    • 2009
  • Purpose: The aim of this study was to construct a structural equation model that would further explain the continuously increasing substance use disorder in Korean adolescents. Methods: Survey visits using a structured questionnaire were conducted with 3,885 students in 2 middle schools and 2 high schools in Busan. A total of 13 instruments were used in this model. The analysis of data was done with both SPSS 14.0 for descriptive statistics and AMOS 5.0 for covariance structure analysis. Results: Based on the constructed model, belief on substance use was found to have a significantly direct effect in influencing adolescent substance use. In addition, other factors such as family environment, satisfaction with school life, self-concept, social support, and personality vulnerability indirectly affected substance use. The final modified model yielded Chi-square=2,987(p<.001), df=121, ${\chi}^2$/df=22.1, GFI=.96, AGFI=.93, NFI=.91, PNFI=.72, PGFI=.72, RMSEA=.07 and exhibited fit indices. Conclusion: This study constructed a model that addresses the factors related to adolescent substance use and explains the relationship of these factors in influencing substance use among Korean adolescents. Findings from this study can contribute to designing appropriate prevention strategies to reduce substance related disorders in adolescents.

An ADHD Diagnostic Approach Based on Binary-Coded Genetic Algorithm and Extreme Learning Machine

  • Sachnev, Vasily;Suresh, Sundaram
    • Journal of Computing Science and Engineering
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    • 제10권4호
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    • pp.111-117
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    • 2016
  • An accurate approach for diagnosis of attention deficit hyperactivity disorder (ADHD) is presented in this paper. The presented technique efficiently classifies three subtypes of ADHD (ADHD-C, ADHD-H, ADHD-I) and typically developing control (TDC) by using only structural magnetic resonance imaging (MRI). The research examines structural MRI of the hippocampus from the ADHD-200 database. Each available MRI has been processed by a region-of-interest (ROI) to build a set of features for further analysis. The presented ADHD diagnostic approach unifies feature selection and classification techniques. The feature selection technique based on the proposed binary-coded genetic algorithm searches for an optimal subset of features extracted from the hippocampus. The classification technique uses a chosen optimal subset of features for accurate classification of three subtypes of ADHD and TDC. In this study, the famous Extreme Learning Machine is used as a classification technique. Experimental results clearly indicate that the presented BCGA-ELM (binary-coded genetic algorithm coupled with Extreme Learning Machine) efficiently classifies TDC and three subtypes of ADHD and outperforms existing techniques.

비정질 합금의 소성 증가 방법에 대한 연구 (A Study on the Methodology of the Plasticity Enhancement of Amorphous Alloys)

  • 박경원;이창면;이광복;이재철
    • 소성∙가공
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    • 제17권7호
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    • pp.486-490
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    • 2008
  • This study demonstrates that preloading via the elastostatic compression imposed on amorphous alloys at room temperature induces homogeneous plastic strain associated with structural disordering. This structural disordering causes disorder, which at room temperature creates excess free volume and in turn enhances the plasticity. In this study, we investigated the effects of various parameters, such as stress level, flow rate and preloading time, on the degree of the structural disordering at room temperature. On the basis of the present findings, we proposed a method of enhancing the plasticity of amorphous alloys.

Structural Variation of Alu Element and Human Disease

  • Kim, Songmi;Cho, Chun-Sung;Han, Kyudong;Lee, Jungnam
    • Genomics & Informatics
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    • 제14권3호
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    • pp.70-77
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    • 2016
  • Transposable elements are one of major sources to cause genomic instability through various mechanisms including de novo insertion, insertion-mediated genomic deletion, and recombination-associated genomic deletion. Among them is Alu element which is the most abundant element, composing ~10% of the human genome. The element emerged in the primate genome 65 million years ago and has since propagated successfully in the human and non-human primate genomes. Alu element is a non-autonomous retrotransposon and therefore retrotransposed using L1-enzyme machinery. The 'master gene' model has been generally accepted to explain Alu element amplification in primate genomes. According to the model, different subfamilies of Alu elements are created by mutations on the master gene and most Alu elements are amplified from the hyperactive master genes. Alu element is frequently involved in genomic rearrangements in the human genome due to its abundance and sequence identity between them. The genomic rearrangements caused by Alu elements could lead to genetic disorders such as hereditary disease, blood disorder, and neurological disorder. In fact, Alu elements are associated with approximately 0.1% of human genetic disorders. The first part of this review discusses mechanisms of Alu amplification and diversity among different Alu subfamilies. The second part discusses the particular role of Alu elements in generating genomic rearrangements as well as human genetic disorders.

Possible Role of Disorder on Magnetostructural Transition in La1-xBaxMnO3

  • Kim, N.G.;Jung, J.H.
    • Journal of Magnetics
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    • 제12권3호
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    • pp.103-107
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    • 2007
  • Magnetic field induced structural transition has been systematically investigated for $La_{1-x}Ba_xMnO_3$ with the fine control of carrier doping $(0.15{\leq}x{\leq}0.20)$. Application of a magnetic field results in the suppression of the rhombohedral-orthorhombic transition temperature $(T_s)$ and the increase of insulator-metal transition temperature $(T_{MI})$. Near x = 0.17, where $T_S$ is similar to $T_{MI}$ at zero magnetic field, we found that the $T_S$ smoothly decreased with magnetic field even though it intersected the $T_{MI}$ near 3 T. Also, the magnetostructural phase diagram obtained from the temperature sweep and from the magnetic field sweep is not significantly modified. By comparing the magnetostructural transition in $La_{1-x}Sr_xMnO_3$, we have suggested that the large disorder originated from ionic size differences between La and Ba may weaken the sensitivity of the kinetic energy of $e_g$ electrons on the degree of lattice distortion in $La_{1-x}Ba_xMnO_3$.

Temperature-dependent Structural and Magnetic Properties of Diamagnetic $HgI_2$

  • Park, C.I.;Jin, Zhenlan;Hwang, I.H.;Yeo, S.M.;Han, S.W.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.291.1-291.1
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    • 2013
  • We examined the temperature-dependent structural and magnetic properties of HgI2 in the temperature range of 300~400 K. HgI2 is a diamagnetic material and can be used for X-ray or γ-ray detectors. DCmagnetization measurements on HgI2 showed that there is a small but distinguishable change in its diamagnetic properties near 375 K. The magnetic property change is not expected because Hg and I are known as nonmagnetic elements. X-ray diffraction (XRD) measurements revealed a structural transition in the temperature of 350~400 K. Temperature-dependent x-ray absorption fine structure (XAFS) demonstrated that the chemical valence states of both Hg and I did not changed in the temperature range of 300~400 K. However, XAFS revealed that the bond-length disorder was slightly increased in the temperature range, particularly, near Hg atoms. The structural changes of HgI2 are likely related to its diamagnetic property change. We will discuss the relation between the diamagnetic properties and local structural properties of HgI2 in detail.

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기관지 천식에서의 기도 개형 (Airway Remodelling in Asthma)

  • 임대현
    • Clinical and Experimental Pediatrics
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    • 제48권10호
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    • pp.1038-1049
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    • 2005
  • Asthma is characterized by a chronic inflammatory disorder of the airways that leads to tissue injury and subsequent structural changes collectively called airway remodelling. Characteristic changes of airway remodelling in asthma include goblet cell hyperplasia, deposition of collagens in the basement membrane, increased number and size of microvessels, hypertrophy and hyperplasia of airway smooth muscle, and hypertrophy of submucosal glands. Apart from inflammatory cells, such as eosinophils, activated T cells, mast cells and macrophages, structural tissue cells such as epithelial cells, fibroblasts and smooth muscle cells can also play an important effector role through the release of a variety of mediators, cytokines, chemokines, and growth factors. Through a variety of inflammatory mediators, epithelial and mesenchymal cells cause persistence of the inflammatory infiltrate and induce airway structural remodelling. The end result of chronic airway inflammation and remodelling is an increased thickness of the airway wall, leading to a increased the bronchial hyperresponsiveness and fixed declined lung function.

NMR 분광법의 원리와 지구환경과학에의 응용 (Theory of NMR Spectoscopy and Its Application in Geoenvironmental Sciences)

  • 김영규
    • 암석학회지
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    • 제10권3호
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    • pp.233-245
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    • 2001
  • NMR분광법은 현재 화학에서 빼 놓을 수 없는 아주 중요한 연구방법의 하나지만 또한 지질학의 연구에 있어서도 초전도 자석의 발달과 함께 그 중요성이 부각되고 있다. 지질학에 있어서 NMR의 연구 대상 원소로는 광물의 주 구성 성분이며 여러 가지 구조적 정보를 갖고 있는 $^{29}Si$, $^{27}Al$ 등이 유용하게 사용되며 이들은 각각 다른 여러 정보들을 제공한다. 이 밖에도 $^{23}Na$와 같은 알칼리금속과 더불어 다양한 핵종들이 지질학에서 NMR로 연구되고 있다. NMR을 이용하여 다양한 방면의 연구들이 가능한데 NMR은 XRD, TEM보다도 더욱 작은 미시적인 (분자적 관점에서의) 구조 연구에 사용될 수 있다. 이러한 연구를 통해 Al, Si 질서-무질서, 산소원자와의 배위수, 인근의 다른 양이온의 분포 등을 포함한 구조적 정보를 알 수 있다. 또한 NMR의 또 다른 장점은 정적인 미시 구조뿐만 아니라 분자들의 움직임(dynamics)에 대한 정보도 알 수 있다는 것이다. 이러한 동적인 정보는 기존의 어느 방법으로도 알기 어려웠던 부분이고 NMR을 통하여 분자들의 상호 교환 속도와 활성화 에너지 등에 대한 폭 넓은 이해가 가능할 수 있다. 이 밖에 NMR을 이용하여 비정질 물질에 대한 구조와 더불어 지표면에서 산출되는 유기물에 대한 성분 및 구조도 아주 중요하게 연구될 수 있는 분야이다.

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외상 후 스트레스 장애 난민에 관한 뇌 영상 연구 동향: 주제범위 문헌고찰 (Trends in Brain Imaging Research on Refugees with Post-Traumatic Stress Disorder: A Scoping Review)

  • 윤진수;김민수;추상희
    • Journal of Korean Biological Nursing Science
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    • 제23권3호
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    • pp.159-169
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    • 2021
  • Purpose: The purpose of this study was to analyze research trends and find whether Post-Traumatic Stress Disorder (PTSD) of refugees could affect structural or functional changes of brains of those under MRI, focusing on volumes, functional connectivities, and metabolites. Methods: A literature search was done using PubMed, Embase, RISS, and KMBase to identify studies that matched our research purpose. A total of eight studies were identified using Prisma flow diagram by two reviewers independently. Results: Eight studies were identified. Three studies were on North Korean defectors as subjects. The number of studies that observed structural changes, functional changes, and metabolite changes in brains was 2, 5, and 2, respectively. Although each study observed various parts of the brain, anterior cingulate cortex (ACC) was observed commonly in three studies. The PTSD group showed reduction of ACC volume and N-acetyl-aspartate (NAA) metabolite in ACC compared to the non- PTSD group. When exposed to negative stimuli, the PTSD group showed higher neural activity than the non-PTSD group, but not vice versa. Conclusion: ACC showed significant difference in volume, neural activity, and NAA metabolite between the PTSD and the non-PTSD group, resulting in significant differences in structural changes, functional changes, metabolite changes, respectively. This study showed the need for conducting more research using various biomarkers to clarify the relationship between PTSD of refugees and their brain changes.

공황장애와 복합부분간질 환자의 뇌자기공명촬영소견을 통한 불안의 해부학적 증거에 대한 연구 (A Study for Anatomical Evidence of Anxiety Using Magnetic Resonance Imaging in Patients with Panic Disorder and Complex Partial Seizure)

  • 최병휘;이영호;정영조
    • 생물정신의학
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    • 제2권1호
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    • pp.107-114
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    • 1995
  • This study was to investigate the anatomical evidence of anxiety. MRI was used to study 11 patients with panic disorder and 15 patients with complex partial seizure, and 21 controls. The regions of interest in the MRI were measured with computer-assisted planimetry using the AutoCad and digitizer. The following results were obtained ; 1) The mean age was 49.7(12.4) years in patients with panic disorder and 30.1(7.5) years in patients with complex partial seizure. 2) There were na signi ficant differences between 3 groups in the values of cerebral area, temporal lobe, caudate nucleus, hippocampus, parahippocampus, amygdala, third ventricle and VBR. The right parahippocampal region which attracted most attention in neurobiological studies regarding anxiety, tended to be larger in both study groups compared to the control group, but with no statistical significance. 3) There was lett-right reversal of temporal lobes in both study groups. And these are mainly due to asymmetrical increase in area of the temporal lobe on right side. These results suggest that temporal lobe, especially right temporal, is the anatomical correspondence of anxiety and functional activation of temporo-limbic system may be accompanied by the structural change of temporal lobe.

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