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    • 7. 发明申请
    • TRACHEAL TUBE COMPRISING TRACHEA SEALING PORTION
    • 包含TRACHEA密封件的TRACHEAL管
    • US20120279505A1
    • 2012-11-08
    • US13478050
    • 2012-05-22
    • Jin Hee Kim
    • Jin Hee Kim
    • A61M16/04
    • A61M16/04A61M16/0459A61M16/0479A61M16/0486
    • The present invention provides a tracheal tube comprising: a hollow tube inserted into the trachea; a first volume expansion portion for encompassing one side of the hollow tube; a second volume expansion portion positioned below the first volume expansion portion; a first conduit for expanding the first volume expansion portion and the second volume expansion portion; and a second conduit for supplying media for sealing to a trachea sealing portion positioned between the first volume expansion portion and the second volume expansion portion. The tracheal tube of the present invention can reduce the pressure of two cuffs which are the volume expansion portions, and can effectively improve sealing by supplying media to the trachea sealing portion positioned between the two cuffs. The tracheal tube of the present invention can reduce pulmonary aspiration and can thus considerably prevent ventilator-associated pneumonia (VAP).
    • 本发明提供一种气管管,包括:插入气管的中空管; 用于包围中空管的一侧的第一体积膨胀部分; 第二体积膨胀部分,位于所述第一体积膨胀部分的下方; 用于使所述第一体积膨胀部分和所述第二体积膨胀部分膨胀的第一导管; 以及第二导管,用于向定位在第一体积膨胀部分和第二体积膨胀部分之间的气管密封部分供给用于密封的介质。 本发明的气管管可以减小作为体积膨胀部的两个袖带的压力,并且可以通过向位于两个袖口之间的气管密封部供给介质来有效地改善密封。 本发明的气管管可以减少肺抽吸,因此可以显着地防止呼吸机相关性肺炎(VAP)。
    • 8. 发明授权
    • Lithium ion secondary battery
    • 锂离子二次电池
    • US08101301B2
    • 2012-01-24
    • US13100919
    • 2011-05-04
    • Won Chull HanChan Jung KimJae Woong KimJun Ho KimJin Hee KimHa Young Lee
    • Won Chull HanChan Jung KimJae Woong KimJun Ho KimJin Hee KimHa Young Lee
    • H01M2/16
    • H01M2/166H01M2/145H01M2/18H01M10/0525
    • A lithium ion secondary battery is provided. The lithium ion secondary battery generally comprises an electrode assembly, a container for accommodating the electrode assembly; and an electrolyte. The electrode assembly comprises two electrodes having opposite polarities and a separator. The separator comprises a porous membrane comprising clusters of ceramic particles. The porous membrane is formed by bonding the particle clusters with a binder. Each particle cluster is formed either by sintering or by dissolving and re-crystallizing all or a portion of the ceramic particles. The ceramic particles comprise a ceramic material having a band gap. Each particle cluster may have the shape of a grape bunch or a lamina, and may be formed by laminating scale or flake shaped ceramic particles.
    • 提供锂离子二次电池。 锂离子二次电池通常包括电极组件,用于容纳电极组件的容器; 和电解质。 电极组件包括具有相反极性的两个电极和分离器。 分离器包括包含陶瓷颗粒簇的多孔膜。 多孔膜通过将颗粒团与粘合剂结合而形成。 每个颗粒簇通过烧结或通过溶解和重结晶全部或一部分陶瓷颗粒而形成。 陶瓷颗粒包括具有带隙的陶瓷材料。 每个颗粒簇可以具有葡萄束或层的形状,并且可以通过层压鳞片或片状陶瓷颗粒形成。
    • 9. 发明授权
    • Lithium ion secondary battery
    • 锂离子二次电池
    • US07964311B2
    • 2011-06-21
    • US11283604
    • 2005-11-17
    • Won Chull HanChan Jung KimJae Woong KimJun Ho KimJin Hee KimHa Young Lee
    • Won Chull HanChan Jung KimJae Woong KimJun Ho KimJin Hee KimHa Young Lee
    • H01M2/16
    • H01M2/166H01M2/145H01M2/18H01M10/0525
    • A lithium ion secondary battery is provided. The lithium ion secondary battery generally comprises an electrode assembly, a container for accommodating the electrode assembly; and an electrolyte. The electrode assembly comprises two electrodes having opposite polarities and a separator. The separator comprises a porous membrane comprising clusters of ceramic particles. The porous membrane is formed by bonding the particle clusters with a binder. Each particle cluster is formed either by sintering or by dissolving and re-crystallizing all or a portion of the ceramic particles. The ceramic particles comprise a ceramic material having a band gap. Each particle cluster may have the shape of a grape bunch or a lamina, and may be formed by laminating scale or flake shaped ceramic particles.
    • 提供锂离子二次电池。 锂离子二次电池通常包括电极组件,用于容纳电极组件的容器; 和电解质。 电极组件包括具有相反极性的两个电极和分离器。 分离器包括包含陶瓷颗粒簇的多孔膜。 多孔膜通过将颗粒团与粘合剂结合而形成。 每个颗粒簇通过烧结或通过溶解和重结晶全部或一部分陶瓷颗粒而形成。 陶瓷颗粒包括具有带隙的陶瓷材料。 每个颗粒簇可以具有葡萄束或层的形状,并且可以通过层压鳞片或片状陶瓷颗粒形成。