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    • 42. 发明授权
    • Methods and systems for monitoring and tracking videos on the internet
    • 在互联网上监控和跟踪视频的方法和系统
    • US08131708B2
    • 2012-03-06
    • US12262004
    • 2008-10-30
    • Jian LuLun Cui
    • Jian LuLun Cui
    • G06F17/30
    • G06F17/30864G06F17/30784G06F17/30817G06F17/3082G06F17/3084
    • Method and system for discovering and identifying a video object. The method includes crawling at least one predetermined website, discovering at least one video link at the predetermined website, processing information associated with a first database for storing one or more video links, and determining whether the discovered video link was already discovered before based on at least information associated with the first database. Additionally, the method includes, if the discovered video link is determined not to have been discovered before, updating the first database based on at least information associated with the discovered video link, downloading at least one video object based on at least information associated with the discovered video link, and processing information associated with the downloaded video object.
    • 用于发现和识别视频对象的方法和系统。 该方法包括爬行至少一个预定网站,在预定网站上发现至少一个视频链路,处理与第一数据库相关联的信息以存储一个或多个视频链路,以及基于在之前确定所发现的视频链路是否已经被发现 与第一数据库相关联的最少信息。 另外,该方法包括:如果确定所发现的视频链路不是以前被发现,则至少基于与所发现的视频链路相关联的信息来更新第一数据库,至少基于至少一个视频对象的信息, 发现的视频链接,以及处理与下载的视频对象相关联的信息。
    • 43. 发明申请
    • Methods And Compositions For Targeting Sequences Of Interest To The Chloroplast
    • 用于靶向叶绿体感兴趣的方法和组合物
    • US20120042412A1
    • 2012-02-16
    • US13208960
    • 2011-08-12
    • Henrik AlbertLinda A. CastleMatthew HeckertJian LuDaniel L. SiehlYumin Tao
    • Henrik AlbertLinda A. CastleMatthew HeckertJian LuDaniel L. SiehlYumin Tao
    • A01H1/06C12N15/82C12N5/10C12N9/96A01H5/10C07K19/00C12N9/02C12N15/62A01H5/00
    • C12N15/8221C12N9/0069C12N15/82C12N15/8274C12Y113/11027
    • Chimeric polynucleotides comprising a nucleotide sequence encoding a chloroplast transit peptide operably linked to a heterologous polynucleotide of interest are provided, wherein the chloroplast transit peptide comprises an amino acid sequence having the chloroplast transit peptide sequence as set forth in SEQ ID NO:1 or a biologically active variant or fragment thereof or wherein the chloroplast transit peptide comprises the sequence set forth in SEQ ID NO: 58 or an active variant or fragment thereof. Chimeric polypeptides encoding the same, as well as, cells, plant cells, plants and seeds are further provided which comprise the chimeric polynucleotides. Compositions further include HPPD polypeptides and polynucleotides encoding the same as set forth in SEQ ID NOS: 57 and 60 or active variants and fragments thereof. Such sequences comprise the chloroplast transit peptide as set forth in SEQ ID NO: 58 or an active variants or fragments thereof. Cells, plant cells, plants and seeds are further provided which comprise such sequences. Methods of use of the various sequences are also provided.
    • 提供了包含编码与目标异源多核苷酸有效连接的叶绿体转运肽的核苷酸序列的嵌合多核苷酸,其中叶绿体转运肽包含具有如SEQ ID NO:1所示的叶绿体转运肽序列的氨基酸序列或生物学上 活性变体或其片段,或其中叶绿体转运肽包含SEQ ID NO:58所示的序列或其活性变体或片段。 还提供了编码其的嵌合多肽,以及细胞,植物细胞,植物和种子,其包含嵌合多核苷酸。 组合物还包括编码与SEQ ID NO:57和60所示相同的HPPD多肽和多核苷酸或其活性变体和片段。 这样的序列包含如SEQ ID NO:58所示的叶绿体转运肽或其活性变体或片段。 进一步提供包含这些序列的细胞,植物细胞,植物和种子。 还提供了使用各种序列的方法。
    • 46. 发明授权
    • High temperature sustainable fiber bragg gratings
    • 高温可持续光纤布拉格光栅
    • US07835605B1
    • 2010-11-16
    • US12470367
    • 2009-05-21
    • Dongning WangYuhua LiJian Lu
    • Dongning WangYuhua LiJian Lu
    • G02B6/34
    • G02B6/02138G02B6/02185
    • An optical fiber 200 with a high thermal resistance fiber Bragg grating (FBG) 130. Compared to existing FBG's, the invention provides greatly enhanced thermal stability, being stable up to 1200° C. The grating reflectivity and resonant wavelength are maintained for extended duration at high temperatures. The FBG is thus suitable in high temperature sensors. The high thermal resistance of the FBG is obtained in a method of pre-annealing the optical fiber 105 at high temperature prior to inscribing the FBG. The high thermal resistance is optionally enhanced in a post-FBG creation step of heat treating the optical fiber 105 and FBG.
    • 具有高热阻光纤布拉格光栅(FBG)130的光纤200。与现有的光纤光栅(FBG)相比,本发明提供了大大增强的热稳定性,其稳定性高达1200℃。光栅反射率和谐振波长在 高温 因此,FBG适用于高温传感器。 FBG的高热阻是在刻有FBG之前在高温下对光纤105进行预退火的方法得到的。 在对光纤105和FBG进行热处理的后FBG创建步骤中,高热阻可选地增强。
    • 47. 发明申请
    • DETECTION SENSOR, VIBRATOR
    • 检测传感器,振动器
    • US20100107736A1
    • 2010-05-06
    • US12555221
    • 2009-09-08
    • Jian LuTsuyoshi IkeharaTakashi Mihara
    • Jian LuTsuyoshi IkeharaTakashi Mihara
    • G01N29/02
    • G01G3/165
    • An object of the present invention is to provide a detection sensor and a vibrator which can offer improved sensitivity. The present invention uses a scheme in which no piezoelectric layer, drive electrode, or the like is provided on the surface of a vibrator 30 and in which the vibrator 30 is driven by an actuator 40 provided separately from the vibrator 30. The actuator 40 is of a cantilever type and is provided near a fixed end 30a of the vibrator 30. Vibration of the actuator 40 is transmitted to the vibrator 30 via a coupling beam 70. Thus, vibration of the vibrator 30 is prevented from being inhibited by a piezoelectric layer, a drive electrode, or the like. This improves the Q value of the vibrator 30 and thus the sensitivity of the detection sensor 10. Furthermore, if the detection sensor 10 is configured to offer a sensitivity equivalent to that of a conventional one, the size of the detection sensor 10 can be sharply reduced compared to that of the conventional one.
    • 本发明的目的是提供一种能够提供更高灵敏度的检测传感器和振动器。 本发明使用在振动器30的表面上没有设置压电层,驱动电极等的方案,并且振动器30由与振动器30分开设置的致动器40驱动。致动器40是 并且设置在振动器30的固定端30a附近。致动器40的振动通过耦合梁70传递到振动器30.因此,防止振动器30的振动受到压电层的抑制 ,驱动电极等。 这提高了振动器30的Q值,从而提高了检测传感器10的灵敏度。此外,如果检测传感器10被配置为提供与常规灵敏度相当的灵敏度,则检测传感器10的尺寸可以是尖锐的 与传统方法相比有所减少。
    • 49. 发明授权
    • Method for generating nanostructures and device for generating nanostructures
    • 用于产生纳米结构的方法和用于产生纳米结构的装置
    • US07691211B2
    • 2010-04-06
    • US10343009
    • 2001-07-27
    • Jian LuKe Lu
    • Jian LuKe Lu
    • C23C8/00B24B39/00
    • C23C8/02C21D7/06C21D2201/03Y10T29/479
    • The present invention concerns a method for generating nanostructures in order to obtain in an area on the surface of a metal piece (10) a nanostructured layer of defined thickness, characterized in that it comprises: a step for projecting onto an impact point in the area of the surface of the piece (10) to be treated, for a given duration, at a given speed and at variable incidences at the same impact point, a given quantity of perfectly spherical balls (22) of given dimensions, reused continuously during the projection; repetition of the preceding step with a shift of the impact point so that the impact points as a group cover the entire surface of the piece to be treated; a step for treatment by diffusion of chemical compounds into the nanostructured layer generated during the step for implementing the method for generating nanostructures.
    • 本发明涉及一种用于产生纳米结构的方法,以便在金属片(10)的表面上获得具有规定厚度的纳米结构层的区域,其特征在于,其包括:用于投影到该区域中的冲击点上的步骤 (10)的待处理表面,给定的持续时间,给定的速度和相同的冲击点处的可变的发生量,给定量的具有给定尺寸的完美球形球(22)在 投影; 以冲击点的移动重复前一步骤,使得作为一组的冲击点覆盖待处理的整个表面; 通过化学化合物扩散到在实施用于产生纳米结构的方法的步骤期间产生的纳米结构层中进行处理的步骤。
    • 50. 发明授权
    • Suspension joint bearing
    • 悬挂关节轴承
    • US07344311B2
    • 2008-03-18
    • US10802641
    • 2004-03-16
    • Jian LuGeorge Schmidt
    • Jian LuGeorge Schmidt
    • F16C23/04F16C23/08F16C25/04
    • F16C11/04F16C11/0638
    • An improved bearing for use in movable sockets and suspension joints. The improved bearing is annular, having an outer dimension sized to seat within the housing of a suspension joint or movable socket. An inner surface of the bearing is configured to receive the head of an articulating stud within the housing. Three or more radial slots are disposed on the inner surface. Each radial slot disposed on one-half of the bearing inner surface has a unique radial dimension, such that the radial slots are optimally configured to minimize stress and stiffness within the improved bearing, whereby the bearing can be seated within the housing in a radially and rotationally locked configuration, but remain movable in an axial direction.
    • 用于可移动插座和悬挂接头的改进的轴承。 改进的轴承是环形的,其具有尺寸设定成位于悬挂接头或可移动插座的壳体内的外部尺寸。 轴承的内表面被构造成容纳在壳体内的铰接螺柱的头部。 三个或更多个径向槽设置在内表面上。 设置在轴承内表面的一半上的每个径向狭槽具有独特的径向尺寸,使得径向狭槽被最佳地构造成使改进的轴承内的应力和刚度最小化,由此轴承可以在壳体内径向和 旋转锁定构造,但是保持沿轴向移动。