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알루미늄 합금의 플라즈마전해산화 처리 기술 (Plasma Electrolytic Oxidation Treatment of Al Alloys)

  • 문성모;김주석
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2016년도 추계학술대회 논문집
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    • pp.115.2-115.2
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    • 2016
  • Al alloys are being used widely for automobile, aerospace and mechanical components because of their high strength ratio to weight. However, still they suffer from abrasion or corrosion owing to insufficient resistances to friction or mechanical impact and chemical attack. Plasma electrolytic oxidation (PEO) method is one of the promising surface treatment methods for Al alloys which can render better hardness than aluminum anodic oxide (AAO) films prepared by conventional anodizing method in acidic solutions. In this presentation, some basic nature of PEO film formation and growth process on Al alloys will be presented based on the experimental results obtained and discussed in view of dielectric breakdown and reformation and the role of various anions in film breakdown and reformation of PEO films.

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조류의 장내 면역체계와 콕시듐(Eimeria)기생충들에 대한 국소면역 반응 (Avian Gut Immune System and Local Responses to Eimerial Parasites)

  • Lillehoj, H.S.
    • 한국가금학회지
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    • 제26권2호
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    • pp.131-144
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    • 1999
  • Coccidiosis, an intestinal infection caused by intracellular protozoan parasites belonging to several different species of Eimeria seriously impairs the growth and feed utilization of livestock and poultry. Due to complex life cycle of organism and intricate host immune responses to Elmeria, coccidia vaccine development has been difficult. Understanding of basic imunobiology of pertinent host-parasite interactions is necessary for the development of novel control strategy. Although chickens infected with Eimeria spp. produce parasite-specific antibodies in both the circulation and mucosal secretions, antibody mediated responses play a minor role in protection gainst coccidiosis. Rather, increasing evidence show that cell-mediated immunity plays a major role in resistance to coccidiosis. T-lymphocytes appear to respond to coccidiosis both through cytokine production and a direct cytotoxic attack on infected cells. The exact mechanisms by which T-cells eliminate the parasites, however, remain to be investigated. Since it is crucial to understand the intestinal immune system in order to develop an immunological control strategy against any intestinal immune system in order to develop an immunological control strategy against any intestinal diseases, this presentation will summarize our current understanding of the avian intestinal immune system and mucosal immune responses to Eimeria, to provide a conceptual overview of the complex molecular and cellular events involved in intestinal immune responses to enteric pathogens.

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CORQUENCH 코드를 사용한 실규모 원자로의 노심용융물과 콘크리트 상호반응 해석 (Scoping Analysis of MCCI (Molten Core Concrete Interaction) at Plant Scale Using CORQUENCH Code)

  • 김환열;박종화
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2008년도 춘계학술대회논문집
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    • pp.268-271
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    • 2008
  • If a reactor vessel is failed to retain a molten corium in a postulated severe accident, the molten corium is released outside the reactor vessel into a reactor cavity. The molten corium would attack the concrete wall and basemat of the reactor cavity, which may lead to inevitable concrete decompositions and possible radiological releases. In the OECD/MCCI project, a series of tests were performed to secure the data for cooling the molten corium spread out at the reactor cavity and for the long-term CCI (Core Concrete Interaction). Also, a MCCI (Molten Core Concrete Interaction) analysis code, CORQUENCH was upgraded at Argonne National Laboratory with embedding the new models developed for the tests. This paper deals with analyses of MCCI at plant scale under the conditions of top flooding using the upgraded CORQUENCH code. The modeling approach is briefly summarized first, followed by presentation of a validation calculation that illustrates the predicative capability of the modeling tool. With this background in place, the model is then used to carry out a parametric set of scoping calculations that define approximate coolability envelopes for the LCS (Limestone Common Sand) concrete that has been evaluated in the OECD/MCCI project.

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Hemorrhagic Moyamoya Disease : A Recent Update

  • Fujimura, Miki;Tominaga, Teiji
    • Journal of Korean Neurosurgical Society
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    • 제62권2호
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    • pp.136-143
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    • 2019
  • Moyamoya disease (MMD) is a progressive cerebrovascular disease with unknown etiology, characterized by bilateral steno-occlusive changes at the terminal portion of the internal carotid artery and an abnormal vascular network formation at the base of the brain. MMD has an intrinsic nature to convert the vascular supply for the brain from internal carotid (IC) system to the external carotid (EC) system, as indicated by Suzuki's angiographic staging. Insufficiency of this 'IC-EC conversion system' could result not only in cerebral ischemia, but also in intracranial hemorrhage from inadequate collateral anastomosis, both of which represent the clinical manifestation of MMD. Surgical revascularization prevents cerebral ischemic attack by improving cerebral blood flow, and recent evidence further suggests that extracranial-intracranial bypass could powerfully reduce the risk of re-bleeding in MMD patients with posterior hemorrhage, who were known to have extremely high re-bleeding risk. Although the exact mechanism underlying the hemorrhagic presentation in MMD is undetermined, most recent angiographic analysis revealed the characteristic angio-architecture related to high re-bleeding risk, such as the extension and dilatation of choroidal collaterals and posterior cerebral artery involvement. We sought to update the current management strategy for hemorrhagic MMD, including the outcome of surgical revascularization for hemorrhagic MMD in our institute. Further investigations will clarify the optimal surgical strategy to prevent hemorrhagic manifestation in patients with MMD.

Different Point of View to the Autoimmune Diseases and Treatment with Acupuncture

  • Inanc, Betul Battaloglu
    • 대한약침학회지
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    • 제23권4호
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    • pp.187-193
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    • 2020
  • Objectives: It was aimed to investigate the basic action mechanism of the autoimmune diseases and common features of all diseases. Autoimmune disease are classified organ specific and systemic. Methods: These diseases are seen systemic and disease start locations, origins seem differently. This makes learning and understanding difficult. Autoimmune diseases investigated for easier understanding. It was noticed that, autoimmune diseases' starting places are specific and same all of them. This remarkable point is very important for acupuncture also. So; whole literatüre was researched and important point was found. Results: Whole autoimmune diseases are attack to mesodermal layers and mesodermal origin organs of the body's. The common property of all these disease are same; Diseases start from the mesoderm and mesodermal layer even though their organ origins' belongs to different germ layer. From this point of view, we were able to classify autoimmune diseases simply and it was planned how can we effect body in this context with acupuncture. Conclusion: And, when immunity comes into question, induction of adaptive immunity is depend on antigen presentation to T cells and this situation take place in the lymph node (LN) and also in the skin.When we sank the acupuncture needle into skin, signals create and start mesodermal contacts, during this time mesenchymal origin' autoimmune cells are regulated with this signals.

패치기반 컨볼루션 뉴럴 네트워크 특징을 이용한 위조지문 검출 (Fingerprint Liveness Detection Using Patch-Based Convolutional Neural Networks)

  • 박은수;김원진;이경수;김정민;김학일
    • 정보보호학회논문지
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    • 제27권1호
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    • pp.39-47
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    • 2017
  • 최근 모바일 기기에서의 생체인증 시스템의 증가와 출입관리 시스템에서의 위조지문을 이용한 출입 기록 조작으로 인해 위조 지문 검출에 대한 논의가 다시 활발해지고 있다. 본 논문에서는 입력 지문영상을 패치들로 나누고, 각 패치들에 CNN을 적용하여 위조, 생체, 배경의 세 가지로 분류한다. 이 중 배경으로 분류된 패치들을 제외하고 위조와 생체로 분류된 패치들의 수를 세어서 더 많은 패치가 인식된 쪽으로 위조여부를 판단하게 된다. CNN에 배경 클래스를 추가하여 분류하기 때문에, 제안하는 방법은 영상분할과 같은 추가적인 전처리 과정이 필요하지 않다. 제안하는 방법은 LivDet2011, LivDet2013, LivDet2015에 대하여 실험을 진행하였으며 분류결과 3.06%의 평균 오검출을 보여 매우 우수한 성능을 나타냄을 확인하였다.

원형탈모증(alopecia areata)의 최신 이해와 치료 (Advance Understanding and New Treatment of Alopecia Areata)

  • 강경화
    • 생명과학회지
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    • 제26권11호
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    • pp.1345-1354
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    • 2016
  • 원형탈모증은 흔하게 발병하고 두피와 전신에 모발의 탈락을 일으키는 모낭조직 특이 자가면역질환이다. 모낭은 자체적으로 면역체계와 내분비 환경을 가지고 각 모발주기 단계에 따라 다른 면역 상태를 나타내는 특이한 기관이다. 성장기 모낭의 면역특권의 파괴는 모낭상피 MHC class I 발현과 자가반응성 CD8+T세포에 대한 자가항원 발현을 유도하는 자가면역의 공격을 일으키고 원형탈모증을 유발한다. 임상적 실험적 연구에 의하면, 심리적 스트레스도 모낭 면역/호르몬 체계에 영향을 미쳐 원형탈모증의 유도에 관여할 수 있다고 지적한다. 원형탈모증의 핵심적인 병리기전은 면역특권 수호자(ACTH, ${\alpha}-MSH$$TGF-{\beta}$ 등), 자연살해세포그룹 2D-양성(NKG2D+) 세포(NK 세포와 CD8+T 세포 등)와 스트레스 호르몬(CRH와 substance P)과 관련되어 있다. 효과적인 치료법은 여전히 요구되고 있다. 앞으로 치료목표 중의 하나는 스트레스를 포함한 모낭 면역특권을 개선하는 것일 것이다. 최근 연구는 건선, 아토피피부염, 류마티스 관절염 같은 다른 자가면역질환에서 사용되는 JAK억제제와 면역조절제, Tregs, 혈소판풍부혈장요법, 스타틴과 프로스타글란딘 유사제가 원형탈모증에 효과적이라고 보고하였다. 본 논문은 모낭주위 내분비/면역과 관련된 발병기전에 대한 새로운 이해와 원형탈모증의 새로운 치료법에 대해 고찰하였다.