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    • 6. 发明授权
    • Data centre system and method for a data centre to provide service
    • 数据中心系统和方法为数据中心提供服务
    • US08966050B2
    • 2015-02-24
    • US14346653
    • 2012-07-17
    • Jiaoren WuTao LiuNing LiuCheng ZhangJiang Fu
    • Jiaoren WuTao LiuNing LiuCheng ZhangJiang Fu
    • G06F15/173H04L12/803H04L29/08H04L29/06
    • H04L47/125H04L29/06H04L61/1511H04L61/251H04L61/2528H04L61/6086H04L67/1002H04L67/1023
    • A data center system and a method for a data center to provide service are provided. The data center system comprises at least one first load balancing device, a plurality of second load balancing devices, and a plurality of servers. The first load balancing device is configured to transmit the first type network request to one of the plurality of second load balancing devices with a first scheduling strategy. The second load balancing device is configured to convert the first type network request to a second type network request, and to transmit the second type network request after the source address and destination address translation to one of the plurality of servers with a second scheduling strategy. The server is configured to generate a second type network response according to the second type network request and to return the second type network response to a corresponding second load balancing device.
    • 提供数据中心系统和数据中心提供服务的方法。 数据中心系统包括至少一个第一负载平衡装置,多个第二负载平衡装置和多个服务器。 第一负载平衡装置被配置为以第一调度策略将第一类型网络请求发送到多个第二负载平衡装置之一。 第二负载平衡装置被配置为将第一类型网络请求转换为第二类型网络请求,并且在源地址和目的地地址转换之后,以第二调度策略向多个服务器之一发送第二类型网络请求。 服务器被配置为根据第二类型网络请求生成第二类型网络响应,并且将第二类型网络响应返回到对应的第二负载平衡设备。
    • 8. 发明授权
    • Method and apparatus for closed-loop control of anti-tachyarrhythmia pacing using hemodynamic sensor
    • 使用血液动力学传感器闭合控制抗心律失常起搏的方法和装置
    • US08712525B2
    • 2014-04-29
    • US12877583
    • 2010-09-08
    • Dan LiCheng Zhang
    • Dan LiCheng Zhang
    • A61N1/362
    • A61N1/3622A61N1/3712
    • A cardiac rhythm management (CRM) system includes an implantable medical device that delivers anti-tachyarrhythmia therapies including anti-tachyarrhythmia pacing (ATP) and a hemodynamic sensor that senses a hemodynamic signal. The implantable medical device includes a hemodynamic sensor-controlled closed-loop ATP system that uses the hemodynamic signal for ATP capture verification. When ATP pulses are delivered according to a selected ATP protocol to terminate a tachyarrhythmia episode, the implantable medical device performs the ATP capture verification by detecting an effective cardiac contraction from the hemodynamic signal. The ATP protocol is adjusted using an outcome of the ATP capture verification.
    • 心律管理(CRM)系统包括可植入的医疗装置,其传递抗心律失常疗法,包括抗心动过速起搏(ATP)和感测血液动力学信号的血液动力学传感器。 可植入医疗装置包括血液动力学传感器控制的闭环ATP系统,其使用血流动力学信号进行ATP捕获验证。 当根据选定的ATP方案递送ATP脉冲以终止快速性心律失常发作时,可植入医疗装置通过从血液动力学信号检测有效的心脏收缩来执行ATP捕获验证。 使用ATP捕获验证的结果调整ATP方案。
    • 9. 发明授权
    • Plasma diagnostic method using terahertz-wave-enhanced fluorescence
    • 使用太赫兹波增强荧光的等离子体诊断方法
    • US08674304B2
    • 2014-03-18
    • US13097866
    • 2011-04-29
    • Xi-Cheng ZhangJingle Liu
    • Xi-Cheng ZhangJingle Liu
    • G01J5/02
    • G01N21/64G01N21/1702G01N21/3577G01N21/3586G01N2021/1704
    • Methods and systems for characterizing a plasma with radiation, particularly, terahertz (THz) radiation, are disclosed. The disclosed method of characterizing a plasma includes directing THz radiation into the plasma; and detecting an emission due to interaction of the THz radiation with the plasma to characterize the plasma. A disclosed plasma characterizing device includes a means for directing THz radiation into a plasma; and a detector adapted to detect an emission emitted by the plasma due to interaction of the THz radiation with the plasma to characterize the plasma. A plasma characterizing system is also disclosed. The emission detected may be a fluorescence, a variation in fluorescence and/or an acoustic emission.
    • 公开了用于表征具有辐射特别是太赫兹(THz)辐射的等离子体的方法和系统。 所公开的表征等离子体的方法包括将THz辐射引入等离子体; 并且检测由于THz辐射与等离子体的相互作用引起的发射以表征等离子体。 公开的等离子体表征装置包括用于将太赫兹辐射引导到等离子体中的装置; 以及检测器,其适于检测由于THz辐射与等离子体的相互作用而发射的等离子体的发射以表征等离子体。 还公开了等离子体表征系统。 检测到的发射可以是荧光,荧光和/或声发射的变化。