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    • 5. 发明申请
    • PRIVACY FILTER AND PREPARATION METHOD THEREOF
    • 隐私筛选及其制备方法
    • US20130050798A1
    • 2013-02-28
    • US13642351
    • 2011-04-22
    • Jae-Jin KimBu-Gon ShinWon-Jong Kwon
    • Jae-Jin KimBu-Gon ShinWon-Jong Kwon
    • G02F1/153B32B37/00H05K13/00G02F1/161
    • G02F1/1323G02F1/1533G02F2001/1536G02F2201/44
    • The present invention relates to a privacy filter and its preparation method and, more particularly to a privacy filter and its preparation method in which the privacy filter comprises: a first transparent substrate; a second transparent substrate positioned a predetermined distance apart from and opposite to the first transparent substrate; an electrolyte filled between the first and second transparent substrates; and a second transparent conductive layer disposed between the electrolyte and the second transparent substrate. The first transparent substrate comprises: an uneven pattern having a wire grid and trenches formed on the first transparent substrate; a first transparent conductive layer formed on the wire grid and the trenches of the uneven pattern; and an electrochromic layer being formed on the first transparent conductive layer along the sidewall of the wire grid and containing an electrochromic material to transmit or absorb visible light depending on whether an electrical signal is applied or not.The privacy filter of the present invention can effectively block the lateral transmission of light without a loss of the front transmittance in the private mode, achieve a fast switching between wide field mode and narrow field mode, and secure excellences in filter performance and driving stability.
    • 隐私过滤器及其制备方法技术领域本发明涉及一种隐私过滤器及其制备方法,更具体地涉及一种隐私过滤器及其制备方法,其中所述隐私过滤器包括:第一透明衬底; 第二透明基板,其与第一透明基板隔开并相对定位; 填充在第一和第二透明基板之间的电解质; 以及设置在电解质和第二透明基板之间的第二透明导电层。 第一透明基板包括:具有线栅的不均匀图案和形成在第一透明基板上的沟槽; 形成在线栅上的第一透明导电层和不均匀图案的沟槽; 以及电致变色层,其沿着所述导线栅格的侧壁形成在所述第一透明导电层上,并且根据是否施加电信号而含有电致变色材料以透射或吸收可见光。 本发明的隐私滤波器可以有效地阻止光的横向传输,而不会在私有模式下损失正面透射率,实现宽场模式和窄场模式之间的快速切换,并且保证了滤波器性能和驱动稳定性。
    • 6. 发明申请
    • CORE-SHELL STRUCTURED DELIVERY SYSTEM FOR GROWTH FACTORS, A PREPARATION METHOD THEREOF, AND USE THEREOF FOR THE DIFFERENTIATION OR PROLIFERATION OF CELLS
    • 用于生长因子的核心结构输送系统,其制备方法及其用于细胞分化或增殖的用途
    • US20110263018A1
    • 2011-10-27
    • US12902537
    • 2010-10-12
    • Kwideok PARKDong Keun HanDong Hoon ChoiJae-Jin KimHee Joong KimHeung Jae Chun
    • Kwideok PARKDong Keun HanDong Hoon ChoiJae-Jin KimHee Joong KimHeung Jae Chun
    • C12N5/02C12N5/00
    • C12N5/0075A61K9/1647A61K9/5036C12N2533/40
    • The present invention relates to a method of preparing a delivery system capable of loading bioactive growth factors that are essential for the differentiation and proliferation of cells and is characterized as loading at least two types of components comprising growth factors in a single carrier, whereby the release of each of the plurality of growth factors can be temporally controlled. Specifically, the method of preparing a microcapsule type growth factor delivery system according to the present invention includes: (1) preparing a polymeric microsphere comprising a first component, and then encapsulating the microspheres by electrodropping the polymer microsphere into another polymer comprising a second component, thereby manufacturing a core-shell structured, microcapsule type delivery system, or (2) encapsulating a polymer solution comprising a first component by electrodropping the polymer solution into another polymer comprising a second component, thereby manufacturing a core-shell structured microcapsule type delivery system. The present invention also provides a stem cell differentiation method involving bringing a microcapsule type delivery system loaded with multiple growth factors according to the present invention into contact with stem cells.
    • 本发明涉及一种制备能够载入对细胞分化和增殖至关重要的生物活性生长因子的递送系统的方法,其特征在于将至少两种包含生长因子的组分装载在单个载体中,由此释放 可以暂时控制多个生长因子中的每一个。 具体而言,本发明的微胶囊型生长因子递送系统的制备方法包括:(1)制备包含第一成分的聚合物微球体,然后通过将聚合物微球体电渗入另一种包含第二组分的聚合物中来包封微球体, 从而制造芯壳结构的微胶囊型输送系统,或(2)通过将聚合物溶液电渗到另一种包含第二组分的聚合物中,将包含第一组分的聚合物溶液包封,由此制造核 - 壳结构的微胶囊型递送系统。 本发明还提供一种干细胞分化方法,其包括使根据本发明的负载有多种生长因子的微胶囊型递送系统与干细胞接触。
    • 8. 发明申请
    • APPARATUS AND METHOD FOR DELAY TIME COMPUTATION AND DELAY COMPENSATION BETWEEN BASE STATION AND REMOTE RADIO FREQUENCY UNIT IN BROADBAND WIRELESS ACCESS SYSTEM
    • 宽带无线接入系统中基站与远程无线电频率单元之间的延迟时间计算和延迟补偿的装置和方法
    • US20100172262A1
    • 2010-07-08
    • US12683663
    • 2010-01-07
    • Tae-Hwan KOWook KIMIk-Gon KIMJae-Jin KIMHyun-Jin YOONJi-Yong LEE
    • Tae-Hwan KOWook KIMIk-Gon KIMJae-Jin KIMHyun-Jin YOONJi-Yong LEE
    • H04L12/26
    • H04L43/0852
    • An apparatus and method for delay time computation and delay compensation between a Base Station (BS) and a remote Radio Frequency (RF) unit in a broadband wireless access system are provided. In a method of operating an apparatus for determining a delay time to compensate for delay between a BS modem card and a remote RF unit in a wireless access system, the method includes determining a process delay time required when traffic data is output from the BS modem card to an antenna of the remote RF unit in a state where a reference cable having a length short enough to neglect a cable delay time is connected between the BS modem card and the remote RF unit, determining a cable delay time required when a sync pulse signal is transmitted through a cable used in actual system operation between the BS modem card and the remote RF unit, and determining a time for outputting traffic data at an earlier time from a modem included in the BS modem card by using the determined process delay time and cable delay time.
    • 提供了一种在宽带无线接入系统中的基站(BS)和远程射频(RF)单元之间的延迟时间计算和延迟补偿的装置和方法。 在一种操作用于确定延迟时间以补偿无线接入系统中的BS调制解调器卡和远程RF单元之间的延迟的装置的方法中,所述方法包括确定当从BS调制解调器输出业务数据时所需的处理延迟时间 卡到远程RF单元的天线,其中具有足够短的长度以忽略电缆延迟时间的参考电缆连接在BS调制解调器卡和远程RF单元之间,确定当同步脉冲 信号通过在BS调制解调器卡和远程RF单元之间的实际系统操作中使用的电缆传输,并且通过使用确定的处理延迟时间确定从包括在BS调制解调器卡中的调制解调器在较早时间输出业务数据的时间 和电缆延迟时间。
    • 9. 发明申请
    • POROUS BIODEGRADABLE POLYMER SCAFFOLDS FOR IN SITU TISSUE REGENERATION AND METHOD FOR THE PREPARATION THEREOF
    • 用于现场组织再生的多孔生物可降解聚合物组合物及其制备方法
    • US20100129422A1
    • 2010-05-27
    • US12473850
    • 2009-05-28
    • Dong Keun HANKwideok ParkJae-Jin KimSoon Eon Bae
    • Dong Keun HANKwideok ParkJae-Jin KimSoon Eon Bae
    • A61F2/00
    • A61L27/50A61L27/18A61L27/54A61L27/56A61L2300/25A61L2300/414A61L2300/428A61L2300/43A61L2300/45A61L2300/604A61L2400/18C08L67/04
    • The present invention relates to an intelligent porous biodegradable polymer scaffold for in situ tissue regeneration in which two kinds of physiologically active substances having high differentiation potential and biocompatibility are introduced into the polymer scaffold and conjugated to the surface thereof, respectively, and a method for the preparation thereof. Since the intelligent porous biodegradable polymer scaffold exhibits improved biocompatibility and differentiation potential due to the introduction of physiologically active substances capable of efficiently inducing cell proliferation and differentiation into both the surface and the inside thereof, it can directly induce in situ tissue regeneration of the musculoskeletal system from stem cells in a living tissue after transplanting the polymer scaffold and stem cells into a human body without additional in vitro cultivation. Therefore, the intelligent porous biodegradable polymer scaffold according to the present invention can be effectively used in the regeneration of various kinds of tissues and organs including the musculoskeletal system.
    • 本发明涉及一种用于原位组织再生的智能多孔可生物降解聚合物支架,其中将具有高分化潜能和生物相容性的两种生理活性物质分别引入聚合物支架并与其表面共轭, 的制备。 由于智能多孔生物可降解聚合物支架由于引入能够有效诱导细胞增殖和分化至其表面和内部的生理活性物质而显示出改善的生物相容性和分化潜能,因此可直接诱导肌肉骨骼系统的原位组织再生 从移植聚合物支架和干细胞到人体中的生物体组织中的干细胞,而不需要额外的体外培养。 因此,根据本发明的智能多孔生物可降解聚合物支架可以有效地用于包括肌肉骨骼系统在内的各种组织和器官的再生。