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    • 3. 发明申请
    • AUTOMATIC ANALYZER
    • 自动分析仪
    • US20140193918A1
    • 2014-07-10
    • US14238205
    • 2012-07-19
    • Kenichi TakahashiIsao Yamazaki
    • Kenichi TakahashiIsao Yamazaki
    • G01N35/10
    • G01N35/1011G01N35/025G01N35/1016G01N2035/0441G01N2035/0443G01N2035/1025Y10T436/115831
    • An automatic analyzer adapted to enhance sample/reagent dispensing accuracy, regardless of a difference in sample/reagent dispensing height of a dispensing probe. When the amount of sample in a sample container is small, tip height “h1” of a sample dispensing probe positioned immediately after it has aspirated the sample decreases below tip height “h′” of the sample dispensing probe positioned immediately before it discharges the sample. The sample in this state takes a concave shape at the tip of the sample dispensing probe positioned immediately before it discharges the sample. When the amount of sample in a sample container is large, tip height “h2” of the sample dispensing probe positioned immediately after it has aspirated the sample increases above the tip height “h′” and the sample takes a convex shape at the tip of the sample dispensing probe positioned immediately before it discharges the sample.
    • 一种适用于提高样品/试剂分配精度的自动分析仪,无论分配探针的样品/试剂分配高度如何。 当样品容器中的样品量小时,紧随其后抽出样品的样品分配探针的尖端高度“h1”降低到在其放出样品之前定位的样品分配探针的尖端高度“h” 。 在该状态下的样品在样品分配探针的尖端放置样品之前立刻呈凹形。 当样品容器中的样品量大时,位于样品分送探头之后立即吸出样品的尖端高度“h2”高于尖端高度“h”,样品在尖端高度“h”处呈凸形, 样品分配探针定位在其放出样品之前。
    • 4. 发明申请
    • AUTOMATIC ANALYZER
    • 自动分析仪
    • US20130121880A1
    • 2013-05-16
    • US13811938
    • 2011-06-30
    • Isao Yamazaki
    • Isao Yamazaki
    • G01N1/14
    • G01N1/14G01N9/36G01N35/1016G01N2035/0443G01N2035/0444G01N2035/0453G01N2035/1018G01N2035/1062
    • Dispensing failure occurs when air-sucking or clogging is caused at the time of sucking sample or reagent by using a dispensing probe. An automatic analyzer is equipped with a dispensing mechanism (15) for dispensing the sample into a reaction container (35) from a reagent container (10) and an analysis means (61) for analyzing contents within the reaction container (35), wherein the dispensing mechanism (15) includes a pressure generation mechanism (69) for changing the pressure within a nozzle and a dispensing flow path (24) for coupling between the nozzle and the pressure generation mechanism (69) and containing pressure transmission medium therein; and further includes an oscillator (27) for applying vibration of a particular frequency to the pressure transmission medium within the flow path, a pressure sensor (26) for detecting the pressure within the flow path, and a mechanism (76) for detecting whether or not the sample is sucked normally into the nozzle based on the amplitude or the phase difference of the component of the particular frequency extracted from the output of the pressure sensor (26).
    • 当通过使用分配探针吸取样品或试剂时引起吸气或堵塞时,发生分注故障。 自动分析装置配备有用于从试剂容器(10)将样品分配到反应容器(35)的分配机构(15)和用于分析反应容器(35)内的内容物的分析装置(61),其中 分配机构(15)包括用于改变喷嘴内的压力的压力产生机构(69)和用于在喷嘴和压力产生机构(69)之间联接并在其中容纳压力传递介质的分配流路(24) 并且还包括用于将特定频率的振动施加到所述流路内的所述压力传递介质的振荡器(27),用于检测所述流路内的压力的压力传感器(26)和用于检测所述流路内的压力的机构(76) 基于从压力传感器(26)的输出提取的特定频率的分量的幅度或相位差,不将样品正常地吸入喷嘴。
    • 7. 发明申请
    • AUTOMATIC ANALYZER AND ANALYSIS METHOD FOR USE IN THE SAME
    • 自动分析仪及其分析方法
    • US20090137048A1
    • 2009-05-28
    • US12356720
    • 2009-01-21
    • Isao YAMAZAKIMasaharu NISHIDA
    • Isao YAMAZAKIMasaharu NISHIDA
    • G01N35/00
    • G01N35/02G01N35/0092G01N35/025G01N35/10G01N35/1002G01N2035/0094G01N2035/0097G01N2035/0444Y10T436/115831Y10T436/2575
    • An automatic analyzer having a high processing capability even when plural kinds of reagents are dispensed at different timings. The automatic analyzer comprises a plurality of reaction cells, a reaction cell moving unit for moving the plurality of reaction cells at a certain cycle; a sample dispensing unit for dispensing a sample into a reaction cell on the reaction cell moving unit, a reagent dispensing unit for dispensing plural kinds of reagents to be added during a sample—reagent reaction process at different timings, the number of the reagent addition timings being larger than the number of times at which the reagents can be dispensed within a time of one cycle, and a control unit for controlling the sample dispensing unit to set a cycle in which no sample is dispensed by the sample dispensing unit, when analyses each using the reagent to be dispensed at the latest one of the reagent addition timings by the reagent dispensing unit succeed a predetermined number of times or more.
    • 即使在不同的时间分配多种试剂时,也具有高处理能力的自动分析仪。 所述自动分析仪包括多个反应池,用于以一定周期移动所述多个反应池的反应池移动单元; 用于将样品分配到反应池移动单元上的反应池中的样品分配单元,用于在不同时刻分配在样品 - 试剂反应过程中添加的多种试剂的试剂分配单元,试剂添加定时 大于在一个循环的时间内分配试剂的次数;以及控制单元,用于控制样品分配单元,以设定样品分配单元不分配样品的循环,当分析每个循环时 在试剂分注单元的最后一个试剂添加定时中使用要分配的试剂进行预定次数以上。