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    • 2. 发明申请
    • Electronic Device For Communication In A Data Network Including A Protective Circuit For Identifying Unwanted Data
    • 用于在包括用于识别不需要的数据的保护电路的数据网络中进行通信的电子设备
    • US20130254869A1
    • 2013-09-26
    • US13895997
    • 2013-05-16
    • Kevin McGrathAlexander Wold
    • Kevin McGrathAlexander Wold
    • H04L29/06
    • H04L63/0245H04L43/00H04L63/1458H04L63/162
    • An electronic device for communication in a data network including a communication circuit adapted for performing the network communication, which communication includes controlling a plurality of network layers, the layers including a physical layer, a link layer and at least one higher order layer, the communication circuit includes a protective circuit for identifying unwanted data. The electronic device is characterised in that the protective circuit is arranged to monitor data during transmission of data from the electronic device, and identify unwanted data, and the communication circuit is adapted to avoid transmission of the unwanted data identified by the protective circuit. In this way the network is protected against excessive traffic, for example during a Denial of Service attack.
    • 一种用于在包括适于执行网络通信的通信电路的数据网络中进行通信的电子设备,所述通信包括控制多个网络层,所述层包括物理层,链路层和至少一个较高阶层,所述通信 电路包括用于识别不需要的数据的保护电路。 电子装置的特征在于,保护电路被布置成在从电子设备传输数据期间监视数据,并识别不需要的数据,并且通信电路适于避免传输由保护电路识别的不需要的数据。 以这种方式,网络可以防止过多的流量,例如在拒绝服务攻击时。
    • 4. 发明授权
    • Peptide activators of VEGF
    • VEGF的肽激活剂
    • US07053046B2
    • 2006-05-30
    • US10032361
    • 2001-12-21
    • Kevin McGrath
    • Kevin McGrath
    • A61K38/16C12N7/00
    • C07K14/52A61K38/00C07K14/4702C07K2319/00
    • The invention provides peptide inhibitors that inhibit ubiquitination of hypoxia inducible factor 1 alpha (HIP 1-α) and thereby activate transcription of erythropoietin (EPO), vascular endothelial growth factor (VEGF), and certain glycolytic enzymes. The invention further provides formulations containing the present peptides and methods of using the present peptides for therapeutic purposes. Such therapeutic purposes include stimulating angiogenesis in injured tissues such as chronic wounds, heart tissues injured by ischemia or heart attack, and neural tissues injured by stroke.
    • 本发明提供抑制低氧诱导因子1α(HIP1-α)泛素化的肽抑制剂,从而激活促红细胞生成素(EPO),血管内皮生长因子(VEGF)和某些糖酵解酶的转录。 本发明进一步提供含有本发明肽的制剂和用于治疗目的的本发明肽的方法。 这样的治疗目的包括刺激受伤组织中的血管发生,例如慢性伤口,由局部缺血或心脏病发作损伤的心脏组织,以及由中风损伤的神经组织。
    • 8. 发明授权
    • Data transfer accelerating apparatus and method
    • 数据传输加速装置及方法
    • US5455918A
    • 1995-10-03
    • US394554
    • 1995-02-27
    • Terry FowlerKevin McGrathTerry GoodeMark Schneckloth
    • Terry FowlerKevin McGrathTerry GoodeMark Schneckloth
    • G06F9/312G06F3/00G06F9/00
    • G06F9/30043
    • In a computing system having a data source, a memory, and a central processing unit (CPU), data is transferred from the data source to the memory by first monitoring signals from the CPU to determine whether data transfer is desired. If data transfer is desired, an optimized instruction set is generated which is specifically designed to cause the CPU to carry out the data transfer in an optimal manner. This optimized instruction set is sent to the CPU and is executed thereby to transfer the data quickly and efficiently. An apparatus for carrying out the above method comprises a determiner, an instruction generator, and a coupling circuit. The determiner monitors address and control signals from the CPU to determine whether data transfer is desired. In response to a determination that data transfer is desired, the determiner generates a run control signal. The instruction generator receives from the data source the data to be transferred and a destination address in the memory in which the data is to be stored, and generates an optimized instruction set using this data and address. The instruction generator sends out this instruction set on its output. The coupling circuit receives the output of the instruction generator and, in response to the run control signal, sends the optimized instruction set to the CPU to allow the CPU to execute the instruction set to transfer data from the data source to the memory.
    • 在具有数据源,存储器和中央处理单元(CPU)的计算系统中,通过首先监视来自CPU的信号以确定是否需要数据传输,将数据从数据源传送到存储器。 如果需要数据传输,则生成优化的指令集,其被专门设计成使CPU以最佳方式执行数据传送。 该优化的指令集被发送到CPU并且被执行,从而快速有效地传送数据。 用于执行上述方法的装置包括确定器,指令发生器和耦合电路。 确定器监视来自CPU的地址和控制信号,以确定是否需要数据传输。 响应于期望数据传送的确定,确定器产生运行控制信号。 指令生成器从数据源接收要传送的数据和要存储数据的存储器中的目的地地址,并使用该数据和地址生成优化的指令集。 指令生成器在其输出端发出该指令集。 耦合电路接收指令发生器的输出,并且响应于运行控制信号,将优化的指令集发送到CPU,以允许CPU执行指令集以将数据从数据源传送到存储器。