생체재료의 자기공명영상 왜곡 완화방법
    11.
    发明公开
    생체재료의 자기공명영상 왜곡 완화방법 有权
    磁共振图像失真松弛生物量方法

    公开(公告)号:KR1020160080691A

    公开(公告)日:2016-07-08

    申请号:KR1020140193414

    申请日:2014-12-30

    Abstract: 본발명은스텐트(Stent)용, 임플란트(Implant)용또는카테터(Catheter)용의소재표면에반자성체를코팅한자기공명영상왜곡완화용생체소재및 이의제조방법에관한것으로, 본발명에따른자기공명영상왜곡완화용생체소재의제조방법은스텐트용, 임플란트용또는카테터용의소재표면에탄소질또는 Bi원소를포함하는반자성체코팅층을형성하는단계(1) 및상기반자성체코팅층상에생체적합표면개질층을형성하는단계(2)를포함한다.

    Abstract translation: 本发明涉及用于放松用于支架材料,植入物或导管的材料的表面上用反磁性材料涂覆的磁共振成像变形的生物材料及其制造方法。 用于放松磁共振成像变形的生物材料的制造方法包括以下步骤:(1)在用于支架,植入物或导管的材料的表面上形成包含碳或Bi元素的抗磁性材料涂层; 和(2)在抗磁性材料涂层上形成生物相容性表面改性层。

    pH 또는 2가 양이온 농도의 조절 활성을 나타내는 주입용 약학 조성물 및 이의 제조방법
    12.
    发明公开
    pH 또는 2가 양이온 농도의 조절 활성을 나타내는 주입용 약학 조성물 및 이의 제조방법 有权
    具有控制PH和多种颜料的活性的可注射的药物组合物及其制备方法

    公开(公告)号:KR1020110124126A

    公开(公告)日:2011-11-16

    申请号:KR1020110017345

    申请日:2011-02-25

    Abstract: PURPOSE: A pharmaceutical composition for injection and a method for manufacturing the same are provided to control pH and/or bivalent cation concentration and to reduce patient's pain. CONSTITUTION: A pharmaceutical composition for injection comprises: a water soluble particle containing alkali earth metal or alloy or compounds of the alkali earth metal; and biocompatible fluid. The pharmaceutical composition has an activity of controlling pH or bivalent cation concentration. The alkali earth meal is Be, Mg, Ca, Sr, Ba, or Ra. The alloy is combination of two or more kinds of Be, Mg, Ca, Sr, Ba, or Ra. The compounds are oxide, hydroxide, sulfur oxides, or chloride of the alkali earth metal. The pharmaceutical composition is used for treating and preventing bone damage, osteoporosis, rheumatitc arthritis, or Paget's disease.

    Abstract translation: 目的:提供用于注射的药物组合物及其制备方法,以控制pH和/或二价阳离子浓度并减少患者的疼痛。 构成:用于注射的药物组合物包括:含有碱土金属或合金或碱土金属化合物的水溶性颗粒; 和生物相容性液体。 药物组合物具有控制pH或二价阳离子浓度的活性。 碱土粉是Be,Mg,Ca,Sr,Ba或Ra。 该合金是两种或更多种Be,Mg,Ca,Sr,Ba或Ra的组合。 这些化合物是碱土金属的氧化物,氢氧化物,硫氧化物或氯化物。 该药物组合物用于治疗和预防骨损伤,骨质疏松症,风湿性关节炎或佩吉特氏病。

    표적-특이적 프로브와 표지물질-항체 복합체를 포함하는 바이오마커 탐지용 조성물 및 이의 이용방법
    16.
    发明公开
    표적-특이적 프로브와 표지물질-항체 복합체를 포함하는 바이오마커 탐지용 조성물 및 이의 이용방법 有权
    用于检测包含目标特异性探针和检测标签代谢抗体复合物的生物标记物的组合物及其使用方法

    公开(公告)号:KR1020150085700A

    公开(公告)日:2015-07-24

    申请号:KR1020140005663

    申请日:2014-01-16

    Abstract: 본발명은페리틴단백질과상기페리틴단백질에결합된초상자성나노입자와상기초상자성나노입자의표면에결합된표적화항체(targeting antibody)을포함하는표적-특이적프로브, 상기표적-특이적프로브와탐지가능한표지물질(detectable labeling agent)에결합된탐지항체를포함하는표지물질-항체복합체를포함하는바이오마커탐지용조성물및 이를이용한바이오마커의탐지방법또는탐지키트에관한것이다.

    Abstract translation: 本发明涉及一种组合物,其包含:包含铁蛋白,与所述铁蛋白结合的超顺磁性纳米颗粒的靶特异性探针,以及组合在所述超顺磁性纳米颗粒表面上的靶向抗体; 以及包含组合在靶特异性探针上的检测抗体和用于检测生物标志物的可检测标记试剂的标记试剂 - 抗体复合物,以及使用其的生物标志物检测方法或检测试剂盒。

    반도체 제조 장비용 열용사 코팅막의 제조방법
    18.
    发明公开
    반도체 제조 장비용 열용사 코팅막의 제조방법 有权
    在半导体加工装置部件上制造用于热喷涂的陶瓷涂层材料的方法

    公开(公告)号:KR1020090125028A

    公开(公告)日:2009-12-03

    申请号:KR1020090107645

    申请日:2009-11-09

    Abstract: PURPOSE: A method for manufacturing a thermal spray coating film for a semiconductor manufacturing apparatus is provided to reduce the inner defect of the coating film. CONSTITUTION: A method for manufacturing a thermal spray coating film comprises the steps of preparing a thermal spray coating material having the composition represented by (Al_x Y_(1-x))2O3 (wherein x is 0.05 ~ 0.95); injecting the thermal spray coating material into the plasma flame to heat it; and laminating the completely molten or semi-molten thermal spray coating material on the surface of the parts used in the semiconductor manufacturing apparatus to form a coating film having the amorphous structure.

    Abstract translation: 目的:提供一种制造用于半导体制造装置的热喷涂膜的方法,以减少涂膜的内部缺陷。 构成:制造热喷涂膜的方法包括以下步骤:制备具有由(Al_x Y_(1-x))2O3表示的组成的热喷涂材料(其中x为0.05〜0.95); 将热喷涂材料注入等离子火焰中以加热; 并且将完全熔融或半熔融的热喷涂材料层压在半导体制造装置中使用的部件的表面上以形成具有非晶结构的涂膜。

    텅스텐 복합 분말, 이로부터 형성된 코팅재, 및 텅스텐복합 분말의 제조 방법
    19.
    发明公开
    텅스텐 복합 분말, 이로부터 형성된 코팅재, 및 텅스텐복합 분말의 제조 방법 失效
    TUNGSTEN复合粉末,由其形成的涂层材料和制造TUNGSTEN复合粉末的方法

    公开(公告)号:KR1020080114475A

    公开(公告)日:2008-12-31

    申请号:KR1020080005374

    申请日:2008-01-17

    Abstract: Tungsten composite powder which can be used for parts of a fusion reactor facing plasma due to the excellent corrosion resistance and high temperature strength, a coating material made of the same and a method of manufacturing the tungsten composite powder are provided. A manufacturing method of tungsten composite powder comprises a step for providing a mixture in which W(tungsten) particles and SiC(silicon carbide) particles having a diameter of 0.1~30mum to be formed into W1-xSiCx composition by the weight ratio(S10), a step for providing composite powder by spraying and drying the mixture(S20), and a step for heat-treating the composite powder(S30).

    Abstract translation: 提供了可以用于由于优异的耐腐蚀性和高温强度而面对等离子体的熔融反应器的部件的钨复合粉末,由其制成的涂层材料和制造钨复合粉末的方法。 钨复合粉末的制造方法包括通过重量比(S10)提供其中W(钨)颗粒和直径为0.1〜30μm的SiC(碳化硅))颗粒形成W1-xSiCx组合物的混合物的步骤, ,通过喷雾和干燥混合物来提供复合粉末的步骤(S20)和用于热处理复合粉末的步骤(S30)。

    수소 투과 합금 부재, 이의 제조 방법 및 이를 이용한 수소정제 방법
    20.
    发明授权
    수소 투과 합금 부재, 이의 제조 방법 및 이를 이용한 수소정제 방법 有权
    氢渗透性成员,其形成方法和使用它们分离氢的方法

    公开(公告)号:KR100865656B1

    公开(公告)日:2008-10-29

    申请号:KR1020070122091

    申请日:2007-11-28

    CPC classification number: C22C45/04 C22C1/023 C22C2202/00

    Abstract: A hydrogen permeation alloy member including A component, B component and nickel. The A component is niobium, vanadium, tantalum, cobalt, and copper or the zirconium, and the B component is palladium. Therefore the hydrogen permeation alloy member, capable of refining high purity hydrogen and being manufactured by using a small amount of palladium. A method for manufacturing amorphous hydrogen permeation alloy member performs the following steps, a step for preparing a first ingot consisting of the nickel, a second ingot consisting of the niobium, vanadium, tantalum, cobalt, and copper or the zirconium A component and a third ingot consisting of B component which is the palladium each component's weight ratio is 100-X-Y: X : Y(X is 3

    Abstract translation: 包含A组分,B组分和镍的氢渗透合金构件。 A成分为铌,钒,钽,钴,铜或锆,B成分为钯。 因此,氢气渗透合金构件能够精炼出高纯度的氢气,并且通过使用少量的钯来制造。 制造无定形氢渗透合金构件的方法进行以下步骤:制备由镍组成的第一铸块,由铌,钒,钽,钴和铜组成的第二铸块或锆A组分和第三铸锭 由B成分组成的锭为各自成分的重量比为100-XY:X:Y(X为3 <= X <70,Y为3 <= Y <30)。 熔化第一锭或第三锭的步骤; 以及熔融纺丝第一锭或第三锭的熔融合金的步骤。

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