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    • 102. 发明申请
    • MARINE STREPTOMYCES, PYRANOSESQUITERPENE COMPOUND, AS WELL AS PREPARATION METHOD AND APPLICATIONS THEREOF
    • 海洋溶液,吡咯烷酮化合物,以及其制备方法及应用
    • US20130316408A1
    • 2013-11-28
    • US13885853
    • 2012-06-18
    • Lijuan LongXinpeng TianJie LiXiongming LuoZhenxiong QiTuan Yin
    • Lijuan LongXinpeng TianJie LiXiongming LuoZhenxiong QiTuan Yin
    • C12P17/06C12R1/465
    • C12P17/06A01N43/16A01N43/90A01N63/00A01N63/02C07D309/32C12N1/20C12R1/465
    • The invention discloses marine Streptomyces sp., a Pyranosesquiterpene compound, as well as a preparation method and uses thereof. Streptomyces sp. SCSIO 01689 was collected in China Center for Type Culture Collection (CCTCC) (Address: Wuhan University, Wuhan City, China) with the collection number of CCTCC NO: M 2011257 on Jul. 18, 2011. The Streptomyces sp. SCSIO 01689 can produce the Pyranosesquiterpene compound with better anti-Escherichia coli activity and anti-Artemia activity, as well as Cyclo(D)-Pro-(D)-Ile, Cyclo(D)-Pro-(D)-Leu and Cyclo(D)-trans-4-OH-Pro-(D)-Phe with better anti-Vibrio anguillarum activity and anti-Artemia activity, thereby providing a new way for preparing the Cyclo(D)-Pro-(D)-Ile, the Cyclo(D)-Pro-(D)-Leu and the Cyclo(D)-trans-4-OH-Pro-(D)-Phe. The Pyranosesquiterpene compound can be used for preparing anti-Escherichia coli medicaments and anti-Artemia medicaments, as well as preparing condiments as a condiment precursor compound.
    • 本发明公开了海藻链霉菌属,一种吡喃糖三萜烯化合物及其制备方法和用途。 链霉菌属 SCSIO 01689于2011年7月18日在中国文化收藏中心(中国武汉市武汉大学地址:中国武汉市)收集CCTCC号码:2011257号。链霉菌属 SCSIO 01689可以生产具有更好的抗大肠杆菌活性和抗卤虫活性的吡喃糖三萜化合物,以及Cyclo(D)-Pro-(D)-Ile,Cyclo(D)-Pro-(D)-Leu和Cyclo (D) - 反式-4-OH-Pro-(D)-Phe具有更好的抗弧菌鳗弧菌活性和抗卤虫活性,从而提供了制备环(D)-Pro-(D) - (D)-Pro-(D)-Leu和环(D) - 反式-4-OH-Pro-(D)-Phe。 吡喃糖三萜烯化合物可用于制备抗大肠杆菌药物和抗卤虫药物,以及制备作为调味品前体化合物的调味品。
    • 103. 发明授权
    • Correcting positions of shapes in a diagram
    • 纠正图形中的形状位置
    • US08489986B2
    • 2013-07-16
    • US12024084
    • 2008-01-31
    • John Edward Haug, IIIAmit Anilkumar VelingkarJie LiRamona PoustiDavid Gordon Bradlee
    • John Edward Haug, IIIAmit Anilkumar VelingkarJie LiRamona PoustiDavid Gordon Bradlee
    • G06T11/60
    • G06T11/206
    • Technologies are described herein for correcting the layout of shapes in a diagram. A request is received to correct the diagram layout. The positional relationships between the shapes in the diagram are determined through the creation of a dependency tree. According to various embodiments, the dependency tree defines parent-child relationships within the diagram and the physical position of shapes with respect to one another. Using the dependency tree and layout rules, the shapes within the diagram may be repositioned to correct misalignment and uneven spacing to make minor corrections in the layout while preserving the general configuration of the original layout. Embodiments provide for layout corrections of diagrams including regions that encompass member shapes and provide for conflict resolution when layout corrective actions result in overlaps of shapes, regions, or page breaks.
    • 这里描述了用于校正图中形状布局的技术。 收到请求以更正图表布局。 图中的形状之间的位置关系通过创建依赖关系树来确定。 根据各种实施例,依赖关系树定义图中的父子关系以及形状相对于彼此的物理位置。 使用依赖关系树和布局规则,可以重新定位图中的形状,以校正不对准和不均匀的间距,以便在布局中进行微小的更正,同时保留原始布局的一般配置。 实施例提供了图表的布局校正,其包括包括构件形状的区域并且当布局校正动作导致形状,区域或分页符重叠时提供冲突解决。
    • 106. 发明授权
    • Camera platform locking device
    • 相机平台锁定装置
    • US08414202B2
    • 2013-04-09
    • US13193659
    • 2011-07-29
    • Jie Li
    • Jie Li
    • F16M11/14G03B17/56
    • F16M11/14F16M2200/022
    • A camera platform locking device, including a housing, for preventing the components from exiting; in the housing from the top down are configured: a sphere, for providing a support to the camera; a locking mechanism, arranged underneath the sphere, for working with the housing to lock the sphere inside the housing; a platform base, arranged underneath the locking mechanism, and fixedly connected to the housing, for providing a support to the locking mechanism. A camera platform locking device of this invention may allow two regulating assemblies to gain distinguished moving distances for achieving different regulation purposes when rotating each knob of the regulating assemblies with the same angle so as to improve the regulation performance of the locking device.
    • 一种相机平台锁定装置,包括用于防止部件离开的壳体; 在从顶部的壳体中配置:球体,用于向相机提供支撑; 布置在球体下方的锁定机构,用于与壳体一起工作以将球体锁定在壳体内部; 平台基座,布置在锁定机构下方,并且固定地连接到壳体,用于为锁定机构提供支撑。 本发明的相机平台锁定装置可以允许两个调节组件获得明显的移动距离,以便以相同的角度旋转调节组件的每个旋钮以实现不同的调节目的,以便改善锁定装置的调节性能。
    • 109. 发明申请
    • SUB-THRESHOLD MEMORY CELL CIRCUIT WITH HIGH DENSITY AND HIGH ROBUSTNESS
    • 具有高密度和高可靠性的子阈值存储单元电路
    • US20120069650A1
    • 2012-03-22
    • US13322859
    • 2009-08-13
    • Jun YangNa BaiJie LiChen HuLongxing Shi
    • Jun YangNa BaiJie LiChen HuLongxing Shi
    • G11C11/34
    • G11C11/412
    • A high-density and high-robustness sub-threshold memory cell circuit, having two PMOS transistors P1 and P2 and five NMOS transistors N1˜N5, wherein, the each base electrode of the two PMOS transistors and NMOS transistors N3, N4, and N5 is connected with the local grid electrode respectively; the base electrode of the NMOS transistors N1 and N2, are grounded respectively; the NMOS transistor N1 form an phase inverter with the PMOS transistor P1, and the NMOS transistor N2 form another phase inverter with the PMOS transistor P2; the two phase inverters are connected with each other in a cross coupling manner via the cut-off NMOS transistor N5, the output end of the phase inverter N1 and P1 directly connected to the input end of the phase inverter N2 and P2, and the output end of the phase inverter N2 and P2 connected to the input end of the phase inverter N1 and P1 via the cut-off NMOS transistor N5; the NMOS transistor N3 is connected with the write bit line (WBL) of the phase inverter N1 and P1, and the NMOS transistor N4 is connected with the NOT WBL and read word line (RWL) of the phase inverter N2 and P2.
    • 具有两个PMOS晶体管P1和P2以及五个NMOS晶体管N1〜N5的高密度和高鲁棒性子阈值存储单元电路,其中,两个PMOS晶体管和NMOS晶体管N3,N4和N5的每个基极 分别与局部栅电极连接; NMOS晶体管N1和N2的基极分别接地; NMOS晶体管N1与PMOS晶体管P1形成相位逆变器,NMOS晶体管N2与PMOS晶体管P2形成另一个反相器; 两相逆变器通过截止NMOS晶体管N5,直流连接到相位逆变器N2和P2的输入端的相位反相器N1和P1的输出端以交叉耦合方式彼此连接,并且输出 通过截止NMOS晶体管N5连接到相位反相器N1和P1的输入端的相位逆变器N2和P2的端部; NMOS晶体管N3与相位反相器N1和P1的写入位线(WBL)连接,NMOS晶体管N4与相位逆变器N2和P2的NOT WBL和读出字线(RWL)连接。