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    • 1. 发明申请
    • AUTOMATIC ANALYZER
    • 自动分析仪
    • US20130259745A1
    • 2013-10-03
    • US13881693
    • 2011-10-25
    • Isao YamazakiTakamichi MoriHiroaki IshizawaKazumi KusanoHidenobu Komatsu
    • Isao YamazakiTakamichi MoriHiroaki IshizawaKazumi KusanoHidenobu Komatsu
    • G01N35/10
    • G01N35/1009G01N2035/102
    • The occurrence of splash of a sample or a reagent from a nozzle tip is prevented during shifting of a dispensing mechanism. An automatic analyzer includes a nozzle for sucking liquid to be dispensed; a pump for allowing suction of the liquid into the nozzle and generating pressure variations; a pipe line connecting the nozzle with the pump; and a shifting mechanism for shifting the nozzle in horizontal and vertical directions. In the automatic analyzer, the pipe line is at least partially composed of a flexible tube. The flexible tube has an upward or downward convex bending portion in the middle thereof. The convex bending portion changes in position and shifts along with the shifting mechanism at a nozzle side. If the nozzle is shifted horizontally, a value obtained by subtracting a vertical distance between the top of a convex portion of the flexible tube and the uppermost portion of the nozzle from a vertical distance between the tip portion of the nozzle and the uppermost portion of the nozzle is a value ranging from −30 mm to 130 mm.
    • 在分配机构的移动期间,防止样品或试剂从喷嘴尖端飞溅。 一种自动分析仪,包括用于吸取待分配液体的喷嘴; 用于允许液体进入喷嘴并产生压力变化的泵; 连接喷嘴与泵的管线; 以及用于在水平和垂直方向上移动喷嘴的移动机构。 在自动分析仪中,管线至少部分地由柔性管构成。 柔性管在其中间具有向上或向下的凸弯曲部分。 凸形弯曲部分在位置上发生变化,并且与喷嘴侧的移动机构一起移动。 如果喷嘴水平移动,则通过从喷嘴的尖端部分和喷嘴的最上部分之间的垂直距离减去柔性管的凸部的顶部和喷嘴的最上部之间的垂直距离而获得的值 喷嘴的数值范围为-30 mm至130 mm。
    • 10. 发明授权
    • Reaction cuvette for automatic analyzer and method of surface treatment for reaction cuvette
    • 用于自动分析仪的反应池和反应池的表面处理方法
    • US08790598B2
    • 2014-07-29
    • US12422322
    • 2009-04-13
    • Masashi EndoHiroaki IshizawaHiroyuki Mishima
    • Masashi EndoHiroaki IshizawaHiroyuki Mishima
    • B01L3/14
    • G01N21/0303B01L3/508B01L2300/161G01N2021/0325G01N2021/054
    • The present invention provides reaction cells capable of maintaining stable analytical performance by preventing bubble adhesion and reducing sample carryover even if the amount of sample liquid for a single test is further reduced in the future. The invention further provides an automatic analyzer that uses the reaction cells and a method for enhancing the hydrophilicity of the inner surfaces of the reaction cells. According to the invention, a reaction cell has a first electrode inserted thereinto and a second electrode disposed on the bottom side of the reaction cell. A voltage is applied between the first electrode and the second electrode to cause electric discharge between the electrodes. This allows for enhancing only the hydrophilicity of the bottom inner surface and the four bottom corners of the reaction cell to which large bubbles adhere easily.
    • 本发明提供了即使在将来进一步降低单次试验的样品液体量的情况下,能够通过防止气泡粘附和减少样品携带而保持稳定的分析性能的反应池。 本发明还提供了使用反应池的自动分析装置和提高反应池内表面亲水性的方法。 根据本发明,反应池具有插入其中的第一电极和设置在反应池底部的第二电极。 在第一电极和第二电极之间施加电压以在电极之间产生放电。 这允许仅增强大气泡易粘附的反应池的底部内表面和四个底角的亲水性。