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    • 51. 发明申请
    • Ultra Slim Bezel Structure of Liquid Crystal Display Device
    • 液晶显示装置超薄表圈结构
    • US20130114012A1
    • 2013-05-09
    • US13381929
    • 2011-11-07
    • Ming LiuTao Ding
    • Ming LiuTao Ding
    • G02F1/1368
    • G02F1/133514G02F1/1339
    • The present invention relates to an ultra slim bezel structure of liquid crystal display device, which includes a TFT surface having an inner face on which a PI film is arranged, a CF surface having an inner face on which a PI film is arranged, a sealant, and a first color resist barrier and a second color resist barrier. The inner faces of the TFT surface and the CF surface are in registration with each other in a vertical direction and edges of the inner faces of the TFT surface and the CF surface are bonded together with the sealant. The first color resist barrier includes a linear color resist barrier that is formed by continuously arranging color resist on the inner face of the TFT surface adjacent to the sealant to extend along the edge of the TFT surface. The second color resist barrier includes a linear color resist barrier that is formed by continuously arranging color resist on the inner face of the CF surface adjacent to the sealant to extend along the edge of the CF surface. The first color resist barrier and the second color resist barrier oppose each other at upper and lower sides and respectively block spread of the PI films on the TFT surface and the CF surface. The present invention effectively controls spread areas of PI films and realizes an ultra slim bezel design to thereby effectively handle peripheral mura.
    • 本发明涉及一种液晶显示装置的超薄边框结构,其包括具有布置PI膜的内表面的TFT表面,具有PI膜的内表面的CF表面,密封剂 ,以及第一抗彩色阻挡层和第二抗蚀剂屏障。 TFT表面和CF表面的内表面在垂直方向上彼此对准,并且TFT表面和CF表面的内表面的边缘与密封剂粘合在一起。 第一抗彩色屏障包括线性彩色抗蚀剂屏障,其通过在与TFT密封剂相邻的TFT表面的内表面上连续排列彩色抗蚀剂而沿着TFT表面的边缘延伸。 第二抗彩色屏障包括线性彩色抗蚀剂屏障,其通过在与密封剂相邻的CF表面的内表面上连续布置色素以沿着CF表面的边缘延伸而形成。 第一抗蚀剂屏障和第二抗蚀剂屏障在上侧和下侧彼此相对,并分别阻挡PI膜在TFT表面和CF表面上的扩展。 本发明有效地控制了PI膜的扩展面积,实现了超薄边框设计,从而有效地处理了周边设计。
    • 53. 发明授权
    • High-resolution microscope using optical amplification
    • 高分辨率显微镜使用光学放大
    • US08421035B2
    • 2013-04-16
    • US12376853
    • 2007-08-07
    • Jia-Ming LiuEnrico Stefani
    • Jia-Ming LiuEnrico Stefani
    • G01N21/64
    • G02B21/16G01N21/6458G02B21/0032
    • Systems and methods that enhance the resolution of a microscope in all three spatial dimensions. A microscope system is provided that typically includes a first objective lens (20), an illumination source that provides excitation illumination (λex) at a first wavelength through the objective lens (20) in a first direction onto a fluorescent sample so as to induce fluorescent emission in the sample at a second wavelength (λfl) different than the first wavelength. The system also typically includes an element (60) that provides illumination at the second wavelength (λfl) to the sample in a second direction different from the first direction, and a detector (10) for detecting the fluorescent emission. The optical gain of the fluorescent emission at the second wavelength is enhanced through stimulated emission.
    • 在所有三个空间维度上增强显微镜分辨率的系统和方法。 提供了一种显微镜系统,其通常包括第一物镜(20),照明源,其以第一方向将第一波长的第一波长的激发照射(λex)沿着第一方向提供到荧光样品上,以引起荧光 在与第一波长不同的第二波长(λfl)的样品中发射。 该系统还通常包括在不同于第一方向的第二方向上向样品提供第二波长(λfl)的照明的元件(60)和用于检测荧光发射的检测器(10)。 通过受激发射增强第二波长的荧光发射的光学增益。
    • 55. 发明申请
    • Thermostatic Expansion Device And Air Conditioning Loop Comprising Such A Thermostatic Expansion Device
    • 恒温膨胀装置和包括这种恒温膨胀装置的空调回路
    • US20130074536A1
    • 2013-03-28
    • US13641283
    • 2011-04-12
    • Jugurtha BenoualiJin-Ming LiuRegine HallerStefan KarlMohamed YahiaChristophe Rousseau
    • Jugurtha BenoualiJin-Ming LiuRegine HallerStefan KarlMohamed YahiaChristophe Rousseau
    • F25B41/06F16K31/00
    • F25B41/062F16K31/002F25B2341/0661F25B2341/0683
    • The subject of the invention is a device (5) for expanding a refrigerant fluid comprising, on the one hand, a first inlet (8) of the expansion device and a first outlet (9) of the expansion device which are connected by a first refrigerant circulation duct (11), the first refrigerant circulation duct (11) comprising an upstream part (22) and a downstream part (25) which parts are placed in communication by a first communication passage (18) and, on the other hand, a second inlet (12) of the expansion device and a second outlet (13) of the expansion device which are connected by a second refrigerant circulation duct (14). The expansion device (5) comprises a regulating means (15) that regulates an expansion of the refrigerant fluid and comprises a first needle valve (16) housed inside the upstream part (22) of the first refrigerant flow duct (11), the first needle valve (16) being connected by a first connecting rod (19) to a thermostatic sensor (17) in communication with the second refrigerant flow duct (14), the first needle valve (16) being able to allow or prevent refrigerant fluid from circulating through the first communicating passage (18). The regulating means (15) comprises a measurement means (23) for measuring the pressure of the refrigerant fluid entering the evaporator (Pse) which pressure measurement is taken at the first outlet (9) of the expansion device.
    • 本发明的目的是一种用于膨胀制冷剂流体的装置(5),该装置一方面包括膨胀装置的第一入口(8)和膨胀装置的第一出口(9),第一出口(9)通过第一 制冷剂循环管道(11),所述第一制冷剂循环管道(11)包括上游部分(22)和下游部分(25),所述第一制冷剂循环管道(11)和所述下游部分(25)通过第一连通通道(18) 所述膨胀装置的第二入口(12)和所述膨胀装置的第二出口(13)通过第二制冷剂循环管道(14)连接。 膨胀装置(5)包括调节制冷剂流体膨胀的调节装置(15),并包括容纳在第一制冷剂流动管道(11)的上游部分(22)内的第一针阀(16),第一 针阀(16)通过第一连杆(19)连接到与第二制冷剂流动管道(14)连通的恒温传感器(17),第一针阀(16)能够允许或阻止制冷剂流体 循环通过第一连通通道(18)。 调节装置(15)包括用于测量进入蒸发器(Pse)的制冷剂流体的压力的测量装置(23),该膨胀装置的第一出口(9)进行压力测量。
    • 57. 发明申请
    • MULTI-VISOR: MANAGING APPLICATIONS IN HEAD MOUNTED DISPLAYS
    • 多浏览器:管理应用于头戴式显示器
    • US20130007668A1
    • 2013-01-03
    • US13175328
    • 2011-07-01
    • James Chia-Ming LiuAnton Oguzhan Alford AndrewsCraig R. MaitlenSheridan Small
    • James Chia-Ming LiuAnton Oguzhan Alford AndrewsCraig R. MaitlenSheridan Small
    • G06F3/048
    • G06F3/012G06F3/013G06F3/017G06F3/0482
    • A system and method are provided that enhances a user's experience when using a see-through near eye display device. A user interface is provided for a user to manage single or simultaneous applications in a head mounted device. Applications for the head mounted device may be activated or deactivated by the user via the user-interface. The user's total field of view (TFOV) which accounts for a complete range of rotation and translation of the user's head may be determined by tracking the user's head position and rotation relative to the user's body and an environment associated with the user. One region of the user's TFOV (e.g., the right-hand side) may display an “application menu” including a list of applications that can be launched, and another region of the user's TFOV (e.g., the left-hand side) may display an “active menu” including a list of applications currently running.
    • 提供了一种系统和方法,其在使用透视近眼显示装置时增强了用户的体验。 提供用户界面以供用户管理头戴式装置中的单个或同时应用。 头戴式装置的应用可以由用户经由用户界面来激活或去激活。 可以通过跟踪用户的头部位置和相对于用户身体的旋转以及与用户相关联的环境来确定占用户头部的完整旋转和平移范围的用户总视野(TFOV)。 用户的TFOV(例如右侧)的一个区域可以显示包括可以启动的应用的列表的应用菜单,并且用户的TFOV(例如,左侧)的另一个区域可以显示活动的 菜单包括当前运行的应用程序列表。
    • 58. 发明申请
    • METHODS FOR DIAGNOSIS OF IMMUNE RESPONSES AGAINST VIRUSES
    • 用于诊断对病毒的免疫应答的方法
    • US20120288850A1
    • 2012-11-15
    • US13503000
    • 2010-10-21
    • Ernst Christiaan SoethoutWai Ming Liu
    • Ernst Christiaan SoethoutWai Ming Liu
    • C12Q1/70
    • G01N33/505G01N33/56972G01N2333/525G01N2333/54G01N2333/555G01N2333/70596
    • The present invention relates to methods for diagnosis of a cellular immune responses against a virus using an inactivated virus. In the method of the invention a cellular immune response against the virus is detected in a subject by incubating PBMCs from the subject with a preparation of inactivated virus and subsequently detecting the expression of at least one T cell specific cytokine in the subject's PBMCs, preferably by flow cytometry. Advantageously in the method, inactivated virus is used for incubation with PBMCs from the subject so as to make feasible that the method is performed in laboratories without BSL-3 classification. Preferably the method is a method for detecting a CD4+ and/or CD8+ T cell response against an influenza virus by detecting expression of one or more of CD107, IFN-γ, IL-2, IL-10 and TNF-α, using formalin inactivated influenza virus. The invention further pertains to kits comprising components that are useful for detecting a cellular immune responses in a subject against a virus.
    • 本发明涉及用灭活病毒诊断针对病毒的细胞免疫应答的方法。 在本发明的方法中,通过用受试者的制备培养受试者的PBMC并随后检测受试者的PBMC中至少一种T细胞特异性细胞因子的表达,优选地通过以下方式在受试者中检测针对病毒的细胞免疫应答: 流式细胞仪 在该方法中有利的是,灭活的病毒用于与来自受试者的PBMC一起孵育,以使得该方法在没有BSL-3分类的实验室中进行。 优选地,该方法是通过检测一种或多种CD107,IFN-γ,IL-2,IL-10和TNF-α的表达来检测针对流感病毒的CD4 +和/或CD8 + T细胞应答的方法,使用福尔马林灭活 流感病毒。 本发明还涉及包含可用于检测受试者针对病毒的细胞免疫应答的组分的试剂盒。
    • 59. 发明申请
    • METHOD FOR SKIPPING MULTIMEDIA FILE AND MULTIMEDIA APPARATUS THEREOF
    • 用于多媒体文件和多媒体设备的方法
    • US20120281966A1
    • 2012-11-08
    • US13464637
    • 2012-05-04
    • Liang CHENJianglong CHANGMing LIU
    • Liang CHENJianglong CHANGMing LIU
    • H04N9/80
    • H04N5/783H04N9/8042H04N9/8205
    • A multimedia file skipping method. The skipping method adds obtained increased amount of time to a current decoding time stamp to determine a target time stamp, determines a PCR (Program Clock Reference) corresponding to the target time stamp as a PCR prediction value; determines a position offset corresponding to the PCR prediction value as a target position offset according to a linear relationship between the PCR and position offset of the multimedia file; and skips to the target position offset and plays the multimedia file from this position. By the aforementioned, it is not necessary to set a time stamp index file, and calculation is performed by utilizing the linear relationship between the PCR and the position offset, and thus the amount of calculation is reduced, time cost is reduced, and skipping speed is significantly improved.
    • 多媒体文件跳过方法。 跳过方法将获得的增加的时间量添加到当前解码时间戳中以确定目标时间戳,将与目标时间戳对应的PCR(程序时钟参考)确定为PCR预测值; 根据PCR和多媒体文件的位置偏移之间的线性关系,确定与PCR预测值相对应的位置偏移作为目标位置偏移; 并跳到目标位置偏移,并从该位置播放多媒体文件。 通过上述,不需要设置时间戳索引文件,并且通过利用PCR和位置偏移之间的线性关系来进行计算,因此减少了计算量,降低了时间成本和跳过速度 明显改善。
    • 60. 发明申请
    • RESISTIVE RANDOM MEMORY CELL AND MEMORY
    • 电阻随机存储器和存储器
    • US20120281452A1
    • 2012-11-08
    • US13502832
    • 2011-06-30
    • Zongliang HuoMing LiuManhong ZhangYanhua WangShibing Long
    • Zongliang HuoMing LiuManhong ZhangYanhua WangShibing Long
    • H01L45/00G11C11/00
    • H01L27/2409H01L27/2463
    • The present disclosure provides a resistive random memory cell and a resistive random memory. The resistive random memory cell comprises an upper electrode, a resistive layer, an intermediate electrode, an asymmetric tunneling barrier layer, and a lower electrode. The upper electrode, the resistive layer, and the intermediate electrode constitute a resistive storage portion. The intermediate electrode, the asymmetric tunneling barrier layer, and the lower electrode constitute a selection portion. The resistive storage portion and the selection portion share the intermediate electrode. The selection portion may be disposed above or under the resistive storage portion. The asymmetric tunneling barrier layer comprises at least two materials having different barrier heights, and is configured for rectifying forward tunneling current and reverse tunneling current flowing through the resistive random memory cell. The present disclosure uses the asymmetric tunneling barrier layer for rectifying, so as to enable selection of the resistive random memory cell. The method for manufacturing the asymmetric tunneling barrier layer does not involve doping or high-temperature annealing processes, and the thickness of the asymmetric tunneling barrier layer is relatively small, which helps 3D high-density integration of the resistive random memory.
    • 本公开提供了电阻随机存储器单元和电阻随机存储器。 电阻随机存储单元包括上电极,电阻层,中间电极,不对称隧道势垒层和下电极。 上电极,电阻层和中间电极构成电阻存储部。 中间电极,不对称隧道势垒层和下电极构成选择部分。 电阻存储部分和选择部分共享中间电极。 选择部分可以设置在电阻存储部分的上方或下方。 非对称隧道势垒层包括具有不同势垒高度的至少两种材料,并且被配置用于整流流过电阻随机存储单元的正向隧穿电流和反向隧穿电流。 本公开使用非对称隧道势垒层进行整流,以便能够选择电阻随机存储单元。 制造不对称隧道势垒层的方法不涉及掺杂或高温退火工艺,并且不对称隧道势垒层的厚度相对较小,这有助于电阻随机存储器的3D高密度集成。