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    • 123. 发明授权
    • System for rate immunonephelometric analysis
    • 免疫比浊法分析系统
    • US4157871A
    • 1979-06-12
    • US796621
    • 1977-05-16
    • Robert J. AndersonRobert M. Studholme
    • Robert J. AndersonRobert M. Studholme
    • G01N21/47G01N21/00G01N31/00
    • G01N21/47Y10S436/805
    • A system for the detection of precipitate-forming antigens by means of the reaction with their corresponding antibodies is disclosed. The reaction of precipitate-forming antigens with their respective antibodies produces a precipitate in proportion to either the antibody concentration or the antigen concentration, depending on which is present in excess. The method does not require formation of actual precipitate, but measures the formation of "scattering centers" -- i.e., molecular aggregates of sufficient size to produce measurable scatter of light. The quantity of scattering centers formed is measured by nephelometric means and the measuring system performs an immunonephelometric analysis. In particular, the rate of change of the nephelometric signal with respect to time is measured and the peak rate and time to the peak rate established. From these simultaneous measurements both the antigen/antibody concentration and the condition of antibody or antigen excess are determined.
    • 公开了通过与其相应抗体的反应检测沉淀形成抗原的系统。 沉淀形成抗原与其各自抗体的反应根据过量存在而产生与抗体浓度或抗原浓度成比例的沉淀。 该方法不需要形成实际的沉淀物,而是测量形成“散射中心” - 即足够尺寸的分子聚集体以产生可测量的光散射。 形成的散射中心的数量通过比浊法测量,测量系统进行免疫均衡分析。 特别地,测量了浊度信号相对于时间的变化率,并确定峰值速率和峰值速率。 通过这些同时测量,测定抗原/抗体浓度和抗体或抗原过量的条件。
    • 129. 发明授权
    • Femto-cell location by direct methods
    • 通过直接方式进行毫微微小区定位
    • US08180368B2
    • 2012-05-15
    • US12268989
    • 2008-11-11
    • Robert J. AndersonRashidus S. MiaMatthew L. Ward
    • Robert J. AndersonRashidus S. MiaMatthew L. Ward
    • H04W24/00H04W36/00H04W40/00H04M11/04
    • H04W64/003G01S5/0242H04W84/045
    • Illustrative embodiments of the inventive subject matter described herein include, but are not limited to, the following: a femto-cell device, methods for use by a wireless location system (WLS) in locating a femto-cell device, and a wireless location system having certain features relating to the location of femto-cell devices. A femto-cell device used in a wireless communications system (WCS) includes a location subsystem configured to acquire information identifying the geographic location of the femto-cell device. The device also includes an antenna subsystem, a radio frequency (RF) block coupled to the antenna subsystem, a baseband block coupled to the RF block, and a communications block coupled to the baseband block. In addition, the device is configured to communicate with the WCS, including communicating at least some of the location information to the WCS.
    • 本文描述的本发明主题的说明性实施例包括但不限于以下:毫微微小区设备,无线定位系统(WLS)在定位毫微微小区设备时使用的方法,以及无线定位系统 具有与毫微微小区设备的位置相关的某些特征。 在无线通信系统(WCS)中使用的毫微微小区设备包括被配置为获取识别毫微微小区设备的地理位置的信息的位置子系统。 该设备还包括天线子系统,耦合到天线子系统的射频(RF)块,耦合到RF块的基带块以及耦合到基带块的通信块。 另外,该设备被配置为与WCS通信,包括将至少一些位置信息传送到WCS。