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    • 2. 发明申请
    • APPARATUS AND METHOD FOR MEASURING THE COAGULATION CHARACTERISTICS OF A TEST LIQUID
    • 测定液体凝集特性的装置和方法
    • US20100170327A1
    • 2010-07-08
    • US12520034
    • 2007-12-18
    • Martin GlaunerAxel SchubertMax Kessler
    • Martin GlaunerAxel SchubertMax Kessler
    • G01N11/16
    • G01N33/4905
    • An apparatus and a method for measuring the coagulation characteristics of a test liquid (1), in particular of a blood sample, is provided. According to the present invention standardized geometrical dimensions of a cup (2) and a respective pin (3) are modified for receiving maximum elasticity signal per volume test liquid without resulting in irreversible inelastic effects. In particular, the test liquid gap (8) between the cup (2) and the pin (3) is reduced, the diameter of the cup (2) and the pin (3) are increased and/or the geometry of test liquid accommodating portions (7; 10; 10′) are optimized for increasing the ratio between signal amplitude and a needed amount of test liquid (1) compared to standardized equipment.
    • 提供了一种用于测量特别是血液样本的测试液体(1)的凝结特性的装置和方法。 根据本发明,改变了杯(2)和相应销(3)的标准化几何尺寸以接收每体积测试液体的最大弹性信号,而不会导致不可逆的非弹性效应。 特别地,杯(2)和销(3)之间的测试液隙(8)减小,杯(2)和销(3)的直径增加和/或容纳测试液体的几何形状 优化部分(7; 10; 10'),以增加与标准化设备相比的信号幅度与所需量的测试液体(1)之间的比率。
    • 3. 发明授权
    • Apparatus and method for measuring the coagulation characteristics of a test liquid
    • 用于测量测试液体的凝固特性的装置和方法
    • US08322195B2
    • 2012-12-04
    • US12520034
    • 2007-12-18
    • Martin GlaunerAxel SchubertMax Kessler
    • Martin GlaunerAxel SchubertMax Kessler
    • G01N11/14G01N37/00
    • G01N33/4905
    • An apparatus and a method for measuring the coagulation characteristics of a test liquid (1), in particular of a blood sample, is provided. According to the present invention standardized geometrical dimensions of a cup (2) and a respective pin (3) are modified for receiving maximum elasticity signal per volume test liquid without resulting in irreversible inelastic effects. In particular, the test liquid gap (8) between the cup (2) and the pin (3) is reduced, the diameter of the cup (2) and the pin (3) are increased and/or the geometry of test liquid accommodating portions (7; 10; 10′) are optimized for increasing the ratio between signal amplitude and a needed amount of test liquid (1) compared to standardized equipment.
    • 提供了一种用于测量特别是血液样本的测试液体(1)的凝结特性的装置和方法。 根据本发明,改变了杯(2)和相应销(3)的标准化几何尺寸以接收每体积测试液体的最大弹性信号,而不会导致不可逆的非弹性效应。 特别地,杯(2)和销(3)之间的测试液隙(8)减小,杯(2)和销(3)的直径增加和/或容纳测试液体的几何形状 优化部分(7; 10; 10'),以增加与标准化设备相比的信号幅度与所需量的测试液体(1)之间的比率。
    • 6. 发明授权
    • Apparatus and method for improvement of transmission quality in a
point-to-multipoint radio transmission system
    • 用于改善点对多点无线电传输系统中传输质量的装置和方法
    • US6006073A
    • 1999-12-21
    • US966989
    • 1997-11-10
    • Martin GlaunerTillmann EcksteinAndreas Bollmann
    • Martin GlaunerTillmann EcksteinAndreas Bollmann
    • H04B7/005H04L1/00H04Q7/20H04B17/00
    • H04W52/24H04L1/0001H04L1/0003H04L1/0009H04L1/0015H04W52/42H04L2001/0093
    • The radio transmission system includes at least one base station (BS1,BS2) and several participant stations (T111, . . . ,T222), in which the radio transmission range (Z1,Z2) belonging to each base station (BS1, BS2) is divided into several sectors (S11, . . . ,S22). The radio transmission system performs an automatic interference analysis in which a test channel is established between each participant station (T111, . . . ,T222) and all those sectors (S11, . . . ,S22) which cause interferences with the concerned participant station. A signal path-attenuation value is determined from the transmission power and received power of the test channel for each signal path between the participant stations (T111, . . . ,T222) and sectors (S11, . . . ,S22) and a carrier signal-to-noise ratio is determined for each participant station (T111, . . . ,T222) from all the signal path attenuation values contributing to it. When this carrier signal-to-noise ratio is below a predetermined threshold, a more robust type of modulation is used for the data signal transmission between the concerned participant station (T111, . . . ,T222) and the sector (S11, . . . ,S22) associated with it and/or the transmitted signal carrier is changed to another different frequency channel, for at least the sector (S11, . . . ,S22) which causes the greatest interference.
    • 无线电传输系统包括属于每个基站(BS1,BS2)的无线电传输范围(Z1,Z2)的至少一个基站(BS1,BS2)和多个参与者站(T111,...,T222) 被划分为几个扇区(S11,...,S22)。 无线电传输系统执行自动干扰分析,其中在每个参与者站(T111,...,T222)和所有这些扇区(S11,...,S22)之间建立测试信道,导致与相关参与站的干扰 。 信号路径衰减值根据参与者站(T111,...,T222)和扇区(S11,...,S22)之间的每个信号路径的测试信道的发送功率和接收功率确定,并且载波 从对其贡献的所有信号路径衰减值,为每个参与台(T111,...,T222)确定信噪比。 当该载波信噪比低于预定阈值时,对于相关参与站(T111,...,T222)和扇区(S11,...)之间的数据信号传输,采用更稳健的调制方式。 至少与造成最大干扰的扇区(S11,...,S22)相关联和/或发送的信号载波被改变到另一个不同的频率信道。