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    • 1. 发明授权
    • Directional coupler and a receiving or transmitting device
    • 定向耦合器和接收或发送装置
    • US07880560B2
    • 2011-02-01
    • US12505739
    • 2009-07-20
    • Pinghua HeXinlu LiJianjun ChenZhaolu WeiGang Ju
    • Pinghua HeXinlu LiJianjun ChenZhaolu WeiGang Ju
    • H01P5/18H01P5/08
    • H01P5/18H01P5/107
    • A directional coupler and a receiving or transmitting device. The directional coupler includes: a primary signal line composed of a metal rod; and a coupled signal line composed of a microstrip line in a curved shape on a printed circuit board; wherein the medium between the metal rod and the microstrip line is air. Compared with existing directional coupler, the directional coupler of the embodiments of the disclosure has a lower transmitting loss, a large power capacity, and a high directional qualification. The directional coupler is capable of ensuring a higher passive intermodulation qualification. The advantages of the embodiments of the present disclosure are easier assembly, good uniformity of the qualifications, and adaptability for various application environments. The directional coupler of the disclosure ensures different parameter qualifications, and is simple to assemble, so that the low cost is achieved.
    • 定向耦合器和接收或发送装置。 定向耦合器包括:由金属杆构成的主信号线; 以及由印刷电路板上的弯曲形状的微带线组成的耦合信号线; 其中金属棒和微带线之间的介质是空气。 与现有的定向耦合器相比,本发明的实施例的定向耦合器具有较低的发射损耗,较大的功率容量和较高的方向性鉴定。 定向耦合器能够确保更高的无源互调质量。 本公开的实施例的优点是更容易组装,资格的良好均匀性以及针对各种应用环境的适应性。 本公开的定向耦合器确保不同的参数资格,并且组装简单,从而实现了低成本。
    • 6. 发明申请
    • System and method for diagnosing diseases
    • 诊断疾病的系统和方法
    • US20090208923A1
    • 2009-08-20
    • US12287059
    • 2008-10-03
    • Craig A. GelfandJizu YiGang Ju
    • Craig A. GelfandJizu YiGang Ju
    • C12Q1/00
    • G01N33/68G01N33/86G01N2333/75
    • One aspect of the invention provides a method of diagnosing a disease condition, comprising measuring presence or amount of a targeted protein or a degradation product of said protein in a collected biological sample as a marker for the disease condition. The targeted protein or degradation product is selected for measurement based on a prior identification of a measurable half-life at a predetermined time period, including the time at which said method is conducted, and correlating said measuring with the presence or absence of the disease condition. The targeted protein or degradation product may be identified by selecting a protein known or suspected to be a diagnostic marker for the disease condition, analyzing degradation of the protein in the collected biological sample, and selecting a protein or degradation product that exhibits a measurable half-life at a predetermined period of time. The analyzing may include identifying degradation product(s) of the protein as a function of time, and half-life of the protein and the degradation product(s).
    • 本发明的一个方面提供了一种诊断疾病状况的方法,包括测定收集的生物样品中所述蛋白质的靶向蛋白质或降解产物的存在或量作为疾病状况的标志物。 基于在预定时间段(包括进行所述方法的时间)的可测量的半衰期的先前识别,并将所述测量与存在或不存在疾病状态相关联,选择靶向蛋白质或降解产物进行测量 。 可以通过选择已知或怀疑是疾病状况的诊断标记物的蛋白质或分解产物来分析靶向蛋白质或降解产物,分析所收集的生物样品中蛋白质的降解,以及选择显示可测量的半衰期的蛋白质或降解产物, 寿命在预定的时间。 分析可以包括鉴定蛋白质的降解产物作为时间的函数,以及蛋白质和降解产物的半衰期。
    • 8. 发明授权
    • Method for diagnosing diseases using a protein or degradation product based on half-life
    • 基于半衰期使用蛋白质或降解产物诊断疾病的方法
    • US08735085B2
    • 2014-05-27
    • US12287059
    • 2008-10-03
    • Craig A. GelfandJizu YiGang Ju
    • Craig A. GelfandJizu YiGang Ju
    • C12Q1/56
    • G01N33/68G01N33/86G01N2333/75
    • One aspect of the invention provides a method of diagnosing a disease condition, comprising measuring presence or amount of a targeted protein or a degradation product of said protein in a collected biological sample as a marker for the disease condition. The targeted protein or degradation product is selected for measurement based on a prior identification of a measurable half-life at a predetermined time period, including the time at which said method is conducted, and correlating said measuring with the presence or absence of the disease condition. The targeted protein or degradation product may be identified by selecting a protein known or suspected to be a diagnostic marker for the disease condition, analyzing degradation of the protein in the collected biological sample, and selecting a protein or degradation product that exhibits a measurable half-life at a predetermined period of time. The analyzing may include identifying degradation product(s) of the protein as a function of time, and half-life of the protein and the degradation product(s).
    • 本发明的一个方面提供了一种诊断疾病状况的方法,包括测定收集的生物样品中所述蛋白质的靶向蛋白质或降解产物的存在或量作为疾病状况的标志物。 基于在预定时间段(包括进行所述方法的时间)的可测量的半衰期的先前识别,并将所述测量与存在或不存在疾病状态相关联,选择靶向蛋白质或降解产物进行测量 。 可以通过选择已知或怀疑是疾病状况的诊断标记物的蛋白质或分解产物来分析靶向蛋白质或降解产物,分析所收集的生物样品中蛋白质的降解,以及选择显示可测量的半衰期的蛋白质或降解产物, 寿命在预定的时间。 分析可以包括鉴定蛋白质的降解产物作为时间的函数,以及蛋白质和降解产物的半衰期。