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    • 7. 发明授权
    • Method apparatus and computer program product for optical network restoration
    • 光网络恢复方法装置和计算机程序产品
    • US06377374B1
    • 2002-04-23
    • US09441527
    • 1999-11-16
    • Gary B. DavisReddy UrimindiAndrew N. RobinsonRainer IraschkoGeorge Georgiou
    • Gary B. DavisReddy UrimindiAndrew N. RobinsonRainer IraschkoGeorge Georgiou
    • H04J1402
    • H04J14/0295H04J14/0227H04J14/0241H04J14/0284H04Q11/0062H04Q2011/0079H04Q2011/0081
    • An method, apparatus, and computer program product for restoring a failed system in an optical mesh network. A system includes a first light termination element (LTE) and a second LTE. A first node in the network includes an optical switching unit (OSU) coupled to the first (LTE) of the system. A second node in the network includes a second OSU coupled to the second (LTE) of the system. The first node is coupled to the second node by a path. Optical data traffic can be transmitted between the first node and the second node via the path. Upon detection of a failure of the system, the first OSU and second OSU are notified of the failure. A primary role is assigned to one of the first and second OSUs, and a secondary role is assigned to the other one of the first and second OSUs. A primary restoration plan is determined by the primary OSU. Information identifying the primary restoration plan is sent from the primary OSU for effecting the restoration path to restore the system.
    • 一种用于恢复光网状网络中的故障系统的方法,装置和计算机程序产品。 一种系统包括第一光终端元件(LTE)和第二LTE。 网络中的第一节点包括耦合到系统的第一(LTE)的光交换单元(OSU)。 网络中的第二节点包括耦合到系统的第二(LTE)的第二OSU。 第一节点通过路径耦合到第二节点。 光数据业务可以经由路径在第一节点和第二节点之间传输。 在检测到系统故障时,第一OSU和第二OSU被通知该故障。 主要角色分配给第一和第二OSU中的一个,并且次要角色被分配给第一和第二OSU中的另一个。 主要的恢复计划由主要的OSU决定。 从主OSU发送标识主恢复计划的信息,以实现恢复路径以恢复系统。
    • 10. 发明授权
    • Immunoglobulin Fc polypeptides
    • 免疫球蛋白Fc多肽
    • US08679493B2
    • 2014-03-25
    • US12827386
    • 2010-06-30
    • George GeorgiouSang Taek JungSai Reddy
    • George GeorgiouSang Taek JungSai Reddy
    • A61K39/395C12P21/08C12N1/21C12N5/02C12N5/10
    • G01N33/56911C07K16/00C07K16/005C07K16/32C07K2317/24C07K2317/41C07K2317/72C07K2317/732C07K2317/75C07K2317/76G01N33/6857G01N2500/10
    • Methods and compositions involving polypeptides having an aglycosylated antibody Fc domain. In certain embodiments, polypeptides have an aglycosylated Fc domain that contains one or more substitutions compared to a native Fc domain. Additionally, some embodiments involve an Fc domain that is binds some Fc receptors but not others. For example, polypeptides are provided with an aglycosylated Fe domain that selectively binds FcγRI at a level within 2-fold of a glycosylated Fc domain, but that is significantly reduced for binding to other Fc receptors. Furthermore, methods and compositions are provided for promoting antibody-dependent cell-mediated toxicity (ADCC) using a polypeptide having a modified aglycosylated Fc domain and a second non-Fc binding domain, which can be an antigen binding region of an antibody or a non-antigen binding region. Some embodiments concern antibodies with such polypeptides, which may have the same or different non-Fc binding domain.
    • 涉及具有糖基化抗体Fc结构域的多肽的方法和组合物。 在某些实施方案中,多肽具有与天然Fc结构域相比含有一个或多个取代的糖基化Fc结构域。 另外,一些实施方案涉及结合一些Fc受体而不是其它Fc受体的Fc结构域。 例如,提供多肽具有糖基化的Fe结构域,其选择性地结合FcγRI在糖基化Fc结构域的2倍以内的水平,但是与其它Fc受体结合显着降低。 此外,提供了使用具有修饰的糖苷基化Fc结构域和第二非Fc结合结构域的多肽来促进抗体依赖性细胞介导的毒性(ADCC)的方法和组合物,其可以是抗体或非抗体的抗原结合区域 - 抗原结合区。 一些实施方案涉及具有这样的多肽的抗体,其可以具有相同或不同的非Fc结合结构域。