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    • 85. 发明公开
    • Rapid characterization of polymers with heated injection probe
    • on onde onde onde onde onde onde onde onde onde onde onde onde onde onde onde onde onde onde onde onde onde onde onde
    • EP1308722A2
    • 2003-05-07
    • EP03003137.1
    • 1999-04-02
    • Symyx Technologies, Inc.
    • Carlson, EricSafir, AdamPetro, MiroslavNielson, Ralph, B.,Lee, Thomas, S.Frechet, Jean, M.J.,Dales, G., Cameron,Kuebler, Sigrid, C.,Bennett,James
    • G01N30/30G01N30/16
    • G01N35/1097B01D15/12B01D15/14B01D15/26B01D15/265B01D15/325B01D15/34B01J19/26B01J20/28078B01J2219/00119B01J2219/00274G01N15/0205G01N30/16G01N30/30G01N30/60G01N30/6052G01N33/44G01N33/442G01N35/085G01N2015/0288G01N2015/0294G01N2030/347G01N2030/885G01N2030/8886
    • A method for characterising a polymer sample, the method comprising withdrawing a sample from a sample container into an injection probe of an auto-sampler, the injection probe being heated to maintain the withdrawn sample at a temperature of not less than about 75 °C while resident in the injection probe, the heated injection probe residing in a first environment maintained at about ambient temperature while withdrawing the polymer sample, loading at least a portion of the withdrawn sample into an injection port or a loading port of a liquid chromatography system or a flow injection analysis system, the injection port or loading port being adaptable for fluid communication with a chromatographic column or a flow injection analysis system, the chromatographic column residing in a heated second environment maintained at a temperature of not less than about 75 °C, injecting the loaded 5 ample into a mobile phase of the liquid chromatography system or a flow injection analysis system chromatographically separating the injected sample, as in the case of using liquid chromatography, detecting a property of the sample or of a component thereof and, maintaining the sample at a temperature of not less than about 75 °C during a period of time including from when the sample is withdrawn from the sample container to when the sample is within the heated second environment or when the property of the sample or of a component thereof is detected.
    • 用于表征聚合物样品的方法,所述方法包括将样品从样品容器中取出到自动进样器的注射探针中,所述注射探针被加热以将抽出的样品保持在不低于约75℃的温度,同时 驻留在注射探针中,加热的注射探针位于保持在大约环境温度的第一环境中,同时抽出聚合物样品,将至少一部分抽出的样品加载到液相色谱系统的注入口或装载端口 流动注射分析系统,注射口或装载口适用于与色谱柱或流动注射分析系统的流体连通,色谱柱位于保持在不低于约75℃的加热的第二环境中,注入 将5荷载入液相色谱系统的流动相或流动注射分析系统 色谱分离注入的样品,如在使用液相色谱法的情况下,检测样品或其组分的性质,并在一段时间内将样品保持在不低于约75℃的温度,包括 当样品从样品容器中取出到样品处于加热的第二环境中或当检测到样品或其组分的性质时。
    • 88. 发明公开
    • Device for receiving a chip shaped carrier and process for assembling a plurality of such devices
    • 装置,用于接收一个芯片形载体和工艺组装多个这样的装置的
    • EP1281439A1
    • 2003-02-05
    • EP01118247.4
    • 2001-07-30
    • F. HOFFMANN-LA ROCHE AGRoche Diagnostics GmbH
    • Vischer, Peter
    • B01L3/00B01L9/00C12Q1/68B01J19/00G01N21/00
    • H01L21/67144B01J2219/00274B01J2219/00529B01J2219/00596B01J2219/00608B01J2219/00612B01J2219/00637B01J2219/00659B01J2219/00707B01J2219/00722B01L3/508B01L9/52B01L9/527B01L2200/0689B01L2300/0636B01L2300/0809B01L2400/0677C40B40/06H01L21/67121Y10S435/809
    • A device for receiving a chip shaped carrier (21) having an active surface (28) which is adapted to be read by an electro-optical reading device, e.g. a surface which carries an array (32) of DNA oligonucleids. The device comprises: a cartridge having an opening for receiving a liquid sample and including casing parts (14); a casing part (14) having an inner surface (17) and outer surface (16), a first cavity for receiving a chip shaped carrier (21), and means (22) which provide access to that first cavity and thereby to the active surface of the chip shaped carrier; a sealing material (26) which is at least once reversibly liquidifiable; the shape and dimensions of first cavity, chip shaped carrier (21), and sealing material (26), being chosen that the chip shaped carrier (21) fits into the space delimited by the sealing material (26). The process for mounting the carrier (21) in the cartridge essentially consists in placing the carrier (21) in the first cavity and liquidifying the sealing material (26). In the liquid state, the sealing material closes any gap between the side walls (24) of the first cavity and the carrier (21), and after solidification, the sealing material constitutes a strong and liquid-tight bond.
    • 一种用于接收具有芯片形载体(21)在有源表面(28),所有这些是angepasst装置通过在电光学读取装置被读取,E.G. 一个表面上的DNA oligonucleids的阵列(32),其承载。 该装置包括:具有开口的盒,用于接收液体样品并包括壳体部分(14); 具有内表面(17)和外表面(16)上的壳体部件(14),用于接收芯片形载体(21)的第一腔,和装置(22)为其提供访问做第一腔,并由此到有源 芯片形载体的表面上; 密封材料(26),其至少一次可逆liquidifiable; 的形状和第一空腔,芯片形载体(21)和密封材料(26)的尺寸被选择DASS裸芯片形载体(21)装配到由密封材料(26)限定的空间。 在盒安装在载体(21)的方法,从本质上讲besteht在将载体放置(21)在所述第一腔和liquidifying密封材料(26)。 在液体状态下,密封材料封闭第一空腔的侧壁(24)和所述载体(21)之间的任何间隙,并凝固后,密封材料构成强和液密结合。