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    • 2. 发明授权
    • Stent having less invasive ends and improved radial force
    • 支架具有较小的侵入端和改善的径向力
    • US08128678B2
    • 2012-03-06
    • US13060204
    • 2009-09-02
    • Alan R. LeewoodShuo Yang
    • Alan R. LeewoodShuo Yang
    • A61F2/82
    • A61F2/90A61F2/07A61F2220/0016A61F2220/0075A61F2230/0054
    • The present invention provides a stent having less invasive ends and improved radial force. In one embodiment, the stent comprises a series of proximal apices disposed at a proximal end of the stent, a series of distal apices disposed at a distal end of the stent, and at least one angled strut segment disposed between the proximal and distal apices of the stent. At least one apex of the stent may comprise multiple curved portions. In one example, the radius of curvature of one of the curved portions is significantly greater, for example, at least 10 times greater, than each of the other radii of curvature of the apex. The curved portion having the significantly greater radius of curvature may be configured to engage a vessel wall in a less invasive manner.
    • 本发明提供一种具有较小侵入性末端和改善的径向力的支架。 在一个实施例中,支架包括设置在支架的近端处的一系列近端顶点,设置在支架远端的一系列远侧顶点,以及设置在支架近端和远端顶点之间的至少一个成角度的支柱段 支架 支架的至少一个顶点可以包括多个弯曲部分。 在一个示例中,一个弯曲部分的曲率半径比顶点的其它曲率半径的每一个显着地大得多,例如大至少10倍。 具有明显更大的曲率半径的弯曲部分可以被构造成以较小的侵入方式接合血管壁。
    • 3. 发明申请
    • STENT HAVING LESS INVASIVE ENDS AND IMPROVED RADIAL FORCE
    • 具有较少的入侵端和改进的径向力
    • US20110166640A1
    • 2011-07-07
    • US13060204
    • 2009-09-02
    • Alan R. LeewoodShuo Yang
    • Alan R. LeewoodShuo Yang
    • A61F2/82
    • A61F2/90A61F2/07A61F2220/0016A61F2220/0075A61F2230/0054
    • The present invention provides a stent having less invasive ends and improved radial force. In one embodiment, the stent comprises a series of proximal apices disposed at a proximal end of the stent, a series of distal apices disposed at a distal end of the stent, and at least one angled strut segment disposed between the proximal and distal apices of the stent. At least one apex of the stent may comprise multiple curved portions. In one example, the radius of curvature of one of the curved portions is significantly greater, for example, at least 10 times greater, than each of the other radii of curvature of the apex. The curved portion having the significantly greater radius of curvature may be configured to engage a vessel wall in a less invasive manner.
    • 本发明提供一种具有较小侵入性末端和改善的径向力的支架。 在一个实施例中,支架包括设置在支架的近端处的一系列近端顶点,设置在支架远端的一系列远侧顶点,以及设置在支架近端和远端顶点之间的至少一个成角度的支柱段 支架 支架的至少一个顶点可以包括多个弯曲部分。 在一个示例中,一个弯曲部分的曲率半径比顶点的其它曲率半径的每一个显着地大得多,例如大至少10倍。 具有明显更大的曲率半径的弯曲部分可以被构造成以较小的侵入方式接合血管壁。
    • 8. 发明申请
    • Systems and Methods for Automatic Rack Detection
    • 自动机架检测系统与方法
    • US20120236761A1
    • 2012-09-20
    • US13407614
    • 2012-02-28
    • Shuo YangStephen Kwok-Fai Wong
    • Shuo YangStephen Kwok-Fai Wong
    • H04L12/16
    • H04L61/103
    • An embodiment system and method to provide rack awareness for a virtual machine running on a data center server. The virtual machine sends an address resolution protocol request message to a top-of-rack switch to identify a MAC address of the server physical port. The virtual machine receives a reply containing the MAC address of the top-of-rack switch physical port. The virtual machine sends an ICMP packet to the top-of-rack switch with a pre-selected un-routable IP address using the identified physical port MAC address. The virtual machine then receives a message from the top-of-rack switch providing a top-of-rack IP address. The virtual machine employs the top-of-rack IP address to identify the rack location of the server.
    • 一种为在数据中心服务器上运行的虚拟机提供机架感知的实施例系统和方法。 虚拟机向机顶交换机发送地址解析协议请求消息,以识别服务器物理端口的MAC地址。 虚拟机接收到包含机架顶部交换机物理端口的MAC地址的应答。 虚拟机使用标识的物理端口MAC地址,将ICMP数据包发送到具有预先选择的不可路由IP地址的机顶盒交换机。 然后,虚拟机从机架顶端交换机接收到提供机架顶端IP地址的消息。 虚拟机采用机顶IP地址来识别服务器的机架位置。
    • 10. 发明授权
    • Systems and methods for automatic rack detection
    • 自动机架检测的系统和方法
    • US08929377B2
    • 2015-01-06
    • US13407614
    • 2012-02-28
    • Shuo YangStephen Kwok-Fai Wong
    • Shuo YangStephen Kwok-Fai Wong
    • H04L12/28H04L29/12
    • H04L61/103
    • An embodiment system and method to provide rack awareness for a virtual machine running on a data center server. The virtual machine sends an address resolution protocol request message to a top-of-rack switch to identify a MAC address of the server physical port. The virtual machine receives a reply containing the MAC address of the top-of-rack switch physical port. The virtual machine sends an ICMP packet to the top-of-rack switch with a pre-selected un-routable IP address using the identified physical port MAC address. The virtual machine then receives a message from the top-of-rack switch providing a top-of-rack IP address. The virtual machine employs the top-of-rack IP address to identify the rack location of the server.
    • 一种为在数据中心服务器上运行的虚拟机提供机架感知的实施例系统和方法。 虚拟机向机顶交换机发送地址解析协议请求消息,以识别服务器物理端口的MAC地址。 虚拟机接收到包含机架顶部交换机物理端口的MAC地址的应答。 虚拟机使用标识的物理端口MAC地址,将ICMP数据包发送到具有预先选择的不可路由IP地址的机顶盒交换机。 然后,虚拟机从机架顶端交换机接收到提供机架顶端IP地址的消息。 虚拟机采用机顶IP地址来识别服务器的机架位置。