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    • 2. 发明申请
    • TRICARBONYL TECHNETIUM-99m OR RHENIUM-188 LABELED CYCLIC RGD DERIVATIVES, A PREPARATION METHOD THEREOF, AND A PHARMACEUTICAL COMPOSITION CONTAINING THE DERIVATIVES AS AN ACTIVE INGREDIENT FOR USE IN THE DIAGNOSIS OR TREATMENT OF ANGIOGENESIS-RELATED DISEASES
    • 三溴联苯技术-99m或RHENIUM-188标记循环RGD衍生物及其制备方法,以及含有衍生物作为活性成分的药物组合物用于诊断或治疗血管发生相关性疾病
    • US20130064766A1
    • 2013-03-14
    • US13699511
    • 2011-05-24
    • Byung Chul LeeSang Eun KimJi Sun KimByung Seok MoonJae Ho Jung
    • Byung Chul LeeSang Eun KimJi Sun KimByung Seok MoonJae Ho Jung
    • A61K51/08C07K1/13A61P9/00C07K7/64
    • A61K51/088A61K51/082C07D273/06C07D498/06C07D498/16C07K7/64G01N33/574G01N33/60
    • The present invention relates to tricarbonyl technetium-99m or rhenium-188 labeled cyclic RGD derivatives, a preparation method thereof, and a pharmaceutical composition containing the derivative as an active ingredient for use in the diagnosis or treatment (radiotherapy) of angiogenesis-related diseases. The tricarbonyl technetium-99m or rhenium-188 labeled cyclic RGD derivatives of the present invention has a high subnanomolar affinity to integrin αvβ3 (also called as a vitronectin receptor) that is activated in an angiogenic action induced by a tumor, reflects a high tumor image of the tricatvonyl technetium-99m labeled cyclic RGD derivative after initial intake in an animal in which cancer cells are transplanted, and acts exclusively upon cancer cells having selectively activated integrin αvβ3 because of a substantially low intake into the liver and intestines, compared to existing known radioactive isotope labeled cyclic RGD derivatives. These results show that the rhenium-188 labeled derivative, a therapeutic nuclide using the same precursor as used in the technetium-99m labeling, effectively inhibits the growth of a tumor and demonstrates therapeutic efficacy when administered via tail vein injection to an animal model bearing tumor, compared to a case where only saline has been injected, thereby making it useful as a medicine for the diagnosis or treatment of angiogenesis-related diseases.
    • 本发明涉及三羰基锝-99m或铼-188标记的环状RGD衍生物,其制备方法和含有该衍生物作为血管生成相关疾病的诊断或治疗(放射治疗)的有效成分的药物组合物。 本发明的三羰基锝-99m或铼-188标记的环状RGD衍生物在由肿瘤诱导的血管生成作用中被激活的整联蛋白αv&bgr 3(也称为玻连蛋白受体)具有高亚纳摩尔亲和力,反映了高 在移植了癌细胞的动物中,首先摄入三氯乙酰锝-99m标记的环状RGD衍生物的肿瘤图像,并且完全作用于具有选择性活化整联蛋白αv&bgr3的癌细胞,因为进入肝脏和肠的摄入量很低, 与现有已知的放射性同位素标记的环状RGD衍生物相比。 这些结果表明,使用与锝-99m标记中使用的相同前体的治疗性核素的铼-188标记的衍生物有效地抑制肿瘤的生长,并且当通过尾静脉注射施用于携带肿瘤的动物模型时显示出治疗功效 ,与仅注射盐水的情况相比,可以用作诊断或治疗血管发生相关疾病的药物。
    • 6. 发明申请
    • CONTENT MANAGEMENT METHOD AND APPARATUS OF MOBILE TERMINAL
    • 移动终端的内容管理方法和设备
    • US20120180136A1
    • 2012-07-12
    • US13345572
    • 2012-01-06
    • Ji Hwan SongJi Sun Kim
    • Ji Hwan SongJi Sun Kim
    • G06F17/30G06F15/16
    • G06F17/30557H04L63/083H04W12/08
    • A contents management method and apparatus of a mobile terminal provides improved security of private contents. A contents management method of a mobile terminal includes establishing a connection to at least one external terminal. The method also includes segmenting a content stored in the mobile terminal into segments and sharing the content by distributing the segments to the terminals. The method further includes integrating the segments distributed to the terminals into the content when a content execution command is input. The method still further includes storing the integrated content and deleting the integrated content in the mobile terminal when at least one of the terminals is disconnected.
    • 移动终端的内容管理方法和装置提供了私有内容的改进的安全性。 移动终端的内容管理方法包括建立至少一个外部终端的连接。 该方法还包括将存储在移动终端中的内容分割成段并通过将段分配到终端来共享内容。 该方法还包括当输入内容执行命令时将分发给终端的段集成到内容中。 该方法还包括当终端中的至少一个被断开时,存储集成内容并将其移除到移动终端中。
    • 7. 发明授权
    • Content management method and apparatus of mobile terminal
    • 移动终端的内容管理方法和装置
    • US08510853B2
    • 2013-08-13
    • US13345572
    • 2012-01-06
    • Ji Hwan SongJi Sun Kim
    • Ji Hwan SongJi Sun Kim
    • G06F21/00
    • G06F17/30557H04L63/083H04W12/08
    • A contents management method and apparatus of a mobile terminal provides improved security of private contents. A contents management method of a mobile terminal includes establishing a connection to at least one external terminal. The method also includes segmenting a content stored in the mobile terminal into segments and sharing the content by distributing the segments to the terminals. The method further includes integrating the segments distributed to the terminals into the content when a content execution command is input. The method still further includes storing the integrated content and deleting the integrated content in the mobile terminal when at least one of the terminals is disconnected.
    • 移动终端的内容管理方法和装置提供了私有内容的改进的安全性。 移动终端的内容管理方法包括建立至少一个外部终端的连接。 该方法还包括将存储在移动终端中的内容分割成段并通过将段分配到终端来共享内容。 该方法还包括当输入内容执行命令时将分发给终端的段集成到内容中。 该方法还包括当终端中的至少一个被断开时,存储集成内容并将其移除到移动终端中。
    • 9. 发明申请
    • Solar Cell and Method of Manufacturing the Same
    • 太阳能电池及其制造方法
    • US20110277824A1
    • 2011-11-17
    • US13106103
    • 2011-05-12
    • Hyun Woo LeeHae Seok LeeEun Joo LeeJun Young ChoiDong Joon OhJi Myung ShimKyeong Yeon ChoJi Sun KimIl Hwan KimJung Eun Shin
    • Hyun Woo LeeHae Seok LeeEun Joo LeeJun Young ChoiDong Joon OhJi Myung ShimKyeong Yeon ChoJi Sun KimIl Hwan KimJung Eun Shin
    • H01L31/02H01L31/18
    • H01L31/1888H01L31/022441H01L31/022491H01L31/02327H01L31/1804Y02E10/547Y02P70/521
    • Provided are a solar cell and a method of manufacturing the same. The method includes implanting impurities of a second conductivity type opposite to a first conductivity type into a front surface of a semiconductor substrate of the first conductivity type to form an emitter layer, forming a mask layer on the emitter layer, patterning the mask layer by coating etching paste on a portion of the mask layer where a front electrode will be formed, implanting high-concentration impurities into the portion of the mask layer where the front electrode will be formed to form a heavily doped region, removing the remaining mask layer, forming an anti-reflective coating (ARC) on the emitter layer, forming the front electrode on the front surface of the semiconductor substrate, and forming a rear electrode on a rear surface of the semiconductor substrate. In the method of manufacturing the solar cell, the patterning of the front surface of the semiconductor substrate includes directly coating a corrosive emulsion on the mask layer using a screen printing process instead of complicated photolithography and etching processes so that a desired pattern can be formed using a relatively simple process.
    • 提供一种太阳能电池及其制造方法。 该方法包括将与第一导电类型相反的第二导电类型的杂质注入到第一导电类型的半导体衬底的前表面中以形成发射极层,在发射极层上形成掩模层,通过涂覆对掩模层进行图案化 在形成前电极的掩模层的一部分上蚀刻浆料,将高浓度杂质注入到将形成前电极的掩模层的部分中以形成重掺杂区域,去除剩余的掩模层,形成 在发射极层上形成抗反射涂层(ARC),在半导体衬底的前表面上形成前电极,并在半导体衬底的后表面上形成后电极。 在制造太阳能电池的方法中,半导体衬底的前表面的图案化包括使用丝网印刷工艺直接在掩模层上涂覆腐蚀性乳剂,而不是复杂的光刻和蚀刻工艺,从而可以使用 一个比较简单的过程。