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    • 6. 发明授权
    • Minimally-invasive method and apparatus for restructuring the retina
    • 用于重组视网膜的微创方法和装置
    • US09532902B2
    • 2017-01-03
    • US13579312
    • 2011-02-22
    • Rudy A. MazzocchiMichael Calhoun
    • Rudy A. MazzocchiMichael Calhoun
    • A61F2/16A61F9/007A61F9/00
    • A61F9/00727A61F9/0017A61F2210/0019
    • The present invention comprises an implant for placing inside the eye such that the implant comes into contact with the interior tissue of the eye such that it conforms to the inner globe geometry of the eye. Implants of the present invention may also be used to alter the focal length of the eye thereby providing a treatment method for the correction of myopia and hyperopia. The device may consist of several possible configurations, an open mesh structure, a solid metal ring, a solid polymer shape, a mesh polymer shape or combination of these. The shape may be a curve, a sphere, a ring or a combination thereof that are specifically shaped to approximate a desired portion of the interior globe of the eye in order to treat myopia or hyperopia.
    • 本发明包括用于放置在眼睛内的植入物,使得植入物与眼睛的内部组织接触,使得其符合眼睛的内球几何形状。 本发明的植入物也可用于改变眼睛的焦距,从而提供矫正近视和远视的治疗方法。 该装置可以由几种可能的构造,开式网状结构,固体金属环,固体聚合物形状,网状聚合物形状或它们的组合组成。 该形状可以是曲线,球体,环或其组合,其特别地成形为近似眼睛的内部球体的期望部分,以便治疗近视或远视。
    • 8. 发明授权
    • Protective steel membrane system and method of erection for secondary containment for an above ground storage tank
    • 保护钢膜系统及其上部储罐二次安全壳的安装方法
    • US08881925B1
    • 2014-11-11
    • US13113621
    • 2011-05-23
    • John R. ToscanoMichael Crabb
    • John R. ToscanoMichael Crabb
    • B65D90/04G01M3/02
    • B23K31/02B65D90/50B65D90/503G01M3/223G01M3/225Y10T29/49719
    • An efficient, cost-saving system and method of designing, installing, testing, and monitoring a secondary containment system for new and existing Above Ground Storage Tanks (ASTs) that is comprised of a protective steel membrane for the floor of the tank, including the floor-to-wall juncture, and the lower portion of the tank shell such that the steel membrane creates one or more interstitial zones between the steel membrane and the tank shell. The steel membrane may be installed zone by zone such that the secondary containment system can encapsulate existing tank features by molding itself around the existing contours, such as repair plates, corners, sumps, etc. Furthermore, a unique testing method using a simple electronic device is provided for on-site testing of the integrity of the weld seams that may be efficiently used after each zone is installed without requiring that the entire tank be evacuated during the construction of other zones.
    • 一种高效,节省成本的系统和方法,用于设计,安装,测试和监测新的和现有的地面储存罐(AST)的二次密封系统,其包括用于罐底的保护性钢膜,包括 地板到墙壁的接合部和罐壳的下部,使得钢膜在钢膜和罐壳之间产生一个或多个间隙区。 钢膜可以按区域安装,使得二次容纳系统可以通过将现有的轮廓模制成现有的轮廓(例如修补板,角落,水槽等)来封装现有的箱体特征。此外,使用简单的电子装置的独特的测试方法 被提供用于在每个区域安装之后可以有效地使用的焊缝的完整性的现场测试,而不需要在其他区域的构造期间整个箱体被排空。
    • 9. 发明授权
    • Methods of using a bacterial GlcNAc-6-P 2′- epimerase to promote sialylation of glycoconjugates
    • 使用细菌GlcNAc-6-P 2'-差向异构酶促进糖缀合物的唾液酸化的方法
    • US08846373B2
    • 2014-09-30
    • US13559912
    • 2012-07-27
    • Christoph GeislerDonald Jarvis
    • Christoph GeislerDonald Jarvis
    • C12N1/20C12N5/07C12N5/071C12N5/04C12P19/18C12P19/04C12N9/04
    • C12N9/0006C12P19/04C12P21/005
    • The present invention relates to new methods to promote sialylation of glycoconjugates, including recombinant glycoproteins, in glycoconjugate production systems. The invention relates to methods to promote efficient glycoconjugate sialylation in recombinant expression systems, by providing simpler and more economical ways to produce large intracellular pools of sialic acid precursors. The invention is directed to nucleic acids, vectors, and cells harboring vectors comprising nucleic acids encoding enzymes involved in the synthesis of sialic acid precursors, and cells harboring these nucleic acids in combination with nucleic acids encoding glycosyltransferases, including sialyltransferases, to facilitate the production of humanized recombinant glycoproteins in bacterial, fungal, plant, and animal cell expression systems. The engineered cells can be used to produce glycosylated proteins in virally-infected, transiently-transformed, or stably-transformed host cells, including lepidopteran insects and cultured cell lines derived from Spodoptera frugiperda, Trichoplusia ni, and Bombyx mori that can be infected by baculovirus expression vectors.
    • 本发明涉及在糖缀合物生产系统中促进糖缀合物(包括重组糖蛋白)的唾液酸化的新方法。 本发明涉及在重组表达系统中促进有效的糖缀合物唾液酸化的方法,通过提供更简单和更经济的方法来产生大量的唾液酸前体的细胞内池。 本发明涉及含有编码参与唾液酸前体合成的酶的核酸的载体的核酸,载体和细胞,以及携带这些核酸与编码糖基转移酶(包括唾液酸转移酶)的核酸组合的细胞,以促进生产 在细菌,真菌,植物和动物细胞表达系统中的人源化重组糖蛋白。 工程细胞可以用于在病毒感染的,瞬时转化的或稳定转化的宿主细胞中产生糖基化蛋白质,包括鳞翅目昆虫和源自草地夜蛾(Spodoptera frugiperda),粉纹夜蛾(Trichoplusia ni)和蚕蛾(Bombyx mori)的培养细胞系,其可被杆状病毒感染 表达载体。