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    • 97. 发明公开
    • Self-referencing radiation detector for use with a radiopharmaceutical quality control testing system
    • Selbstreferenziertes放射线检测方法用于与放射性药物质量控制测试系统中使用的
    • EP2653863A1
    • 2013-10-23
    • EP13002032.4
    • 2013-04-18
    • ABT Molecular Imaging, Inc.
    • Giamis, Anthony M.
    • G01N30/62
    • G01N30/62G01N2030/77
    • A self-referencing radiation detector to test the radiochemical purity of a sample radiopharmaceutical solution. In some embodiments, the self-referencing radiation detector measures the radioactivity of a sample radiopharmaceutical solution before the sample radiopharmaceutical solution is passed through a high performance liquid chromatography column. The radiation detector then measures the radioactivity of each separated molecularly distinct species from the high performance liquid chromatography column. The radiochemical purity of the sample radiopharmaceutical solution is calculated by comparing the measured radioactivity of separated molecularly distinct species from said high performance liquid chromatography column to the measured radioactivity of the sample radiopharmaceutical solution before the sample radiopharmaceutical solution is passed through the high performance liquid chromatography column.
    • 一种自引用辐射检测器,以测试样品放射性药物溶液的无线电化学纯度。 在一些实施方案中,自参考辐射检测器测量样品的放射性药物溶液之前的样品溶液的放射性药物的放射性是通过高效液相色谱柱。 放射线检测器然后测量从高性能液相色谱柱每个分离分子不同种类的放射性。 样品放射性药物溶液的无线电化学纯度通过从所述高效液相色谱柱样品放射性药物溶液通过高效液相色谱柱之前分离分子不同种类的测量放射性比较的样品的放射性药物溶液的测量的放射性计算 ,
    • 99. 发明公开
    • HIGH-THROUGHPUT PARALLEL LIQUID CHROMATOGRAPHY SYSTEM
    • 平行AUSGEFÜHRTEFLÜSSIGKEITSCHROMATOGRAPHIEVORRICHTUNG麻省理工HOHEM DURCHSATZ
    • EP1194200A4
    • 2004-04-07
    • EP00925886
    • 2000-04-20
    • ADVANCED BIOANALYTICAL SERVICE
    • CORSO THOMAS NVAN PELT COLLEEN K
    • G01N30/16G01N30/20G01N30/24G01N30/34G01N30/46G01N30/62B01D15/08
    • G01N30/466B01J2219/00452B01J2219/00585B01J2219/00587B01J2219/00702G01N30/16G01N30/24G01N30/34G01N30/468G01N2030/202G01N2030/628
    • A high-throughput liquid chromatography system (10) capable of parallel separations for increased sample throughput is described. The system (10) comprises valves (24, 48) allowing for the use of multiple liquid chromatography columns (62, 64, 66, 68) and a single injector (58) and pumping system (12) while also minimizing extraneous plumbing and hardware. The system (10) is capable of injecting individual samples and directing them to one of a multiplicity of columns (62, 64, 66, 68) followed by selective output to a detector (73). The system (10) described allows for up to 16 columns, but the number may vary according to the application. The system (10) may be run in an isocratic or gradient mode. Whereas currently available multi-probe systems incorporate a separate injector for each column, the invention described here uses only one injector (58) and is independent of column number. This removes injector (58) variability along with reducing the amount of pluming and mechanical parts in the system (10) allowing for better separations while proving a more robust system (10).
    • 描述了能够并行分离以提高样品通量的高通量液相色谱系统。 该系统包括允许使用多个液相色谱柱和单个注射器和泵送系统的阀,同时还使外部管道和硬件最小化。 该系统能够注入单独的样品并将它们引导到多个色谱柱之一,然后选择性地输出到检测器。 所描述的系统允许最多16列,但是数量可能根据应用而有所不同。 系统可以以等度或梯度模式运行。 虽然目前可用的多探针系统包括用于每列的单独的注射器,但是这里描述的本发明仅使用一个注射器,并且与柱号无关。 这样可以减少喷射器的变化性,同时减少系统中的排气量和机械部件,从而实现更好的分离,同时提供更坚固的系统。 该装置可以连接到现有的HPLC注射器,泵送和检测器技术。