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    • 31. 发明公开
    • Automatic analyzer with single robot arm and U-shaped reaction capillary vessels
    • 的自动分析与单个机器人臂和U形Reaktionskapillargefässen
    • EP0962775A1
    • 1999-12-08
    • EP98107716.7
    • 1998-04-28
    • Recinelli, Nevio
    • Recinelli, Nevio
    • G01N35/00
    • G01N35/0099G01N2035/00366G01N2035/0429G01N2035/0437
    • Instrument to determinate, at controlled temperature the presence of total and specific immunoglobulines against allergens or other molecules (i.e. antibody) in waterly samples.
      A fully automated instrument for in vitro diagnosis, particulary dedicated to the measurement by immunochemistry method at controlled temperature, of immunoglobulines in waterly samples. It presents following characteristics:

      a) compact, monobloc instrument in which all the working procedures are operated by an unique multifunctional arm that operates moving itself on the working plate;
      b) the above mentioned robotic arm allows a procedure fully automated. It works on the direction of the computer program included the waiting incubation time, without any operators intervention.
      c) all methods is performed at controlled temperature.
    • 仪测定,在控制温度针对变应原或|水上样品中的其它分子(即抗体)的总和比immunoglobulines的存在。 一个完全自动化的仪器用于体外诊断,格外专用于测量通过免疫化学方法在受控温度,|水上样品中immunoglobulines的。 它呈现以下特点:在所有的工作程序是通过独特的多功能手臂经营的)结构紧凑,整体式仪表那样操作,并且在工作板移动本身; b)以上提到机器人臂允许的过程完全自动化。 它的工作原理上的计算机程序中包含的方向等待的培养时间,没有任何干预的运营商。 c)中的所有方法在受控的温度下进行。
    • 32. 发明公开
    • Automatic chemistry analyzer
    • Vorrichtung zur chemischen分析。
    • EP0359049A2
    • 1990-03-21
    • EP89116107.7
    • 1989-08-31
    • HITACHI, LTD.
    • Koakutsu, TakahiroTagami, KoshinMatsuoka, Yoshio
    • G01N35/00
    • G01N35/00712G01N2035/0437
    • Automatic chemistry analyzer including an analyzing means for analyzing a concentration of a sample liquid, an input means for inputting an initial setting program and a preparatory processing programs before starting an analyzing using said analyzing means, a memory means for memorizing the initial setting program and the preparatory processing programs inputted by the input means, a display means for displaying the preparatory processing programs memorized by said memory means, a timer means for generating a start timing signal, a control means for starting to execute the initial setting program and the preparatory processing programs by receiving the start timing signal from the timer means and for controlling the analyzing means based on a signal from a keyboard after finishing the execution of the preparatory processing programs.
      As the initial setting program and the preparatory processing programs are automatically started to be executed by the timer means, operator is able to start the execution of the analyzing at once using the automatic chemistry analyzer without waiting the finishing of the execution of the initial setting program and the preparatory processing programs in front of the automatic chemistry analyzer.
    • 自动化学分析仪,包括用于分析样品液体的浓度的分析装置,用于在开始使用所述分析装置的分析之前输入初始设定程序和预备处理程序的输入装置;存储装置,用于存储初始设定程序和 由输入装置输入的预备处理程序,用于显示由所述存储装置存储的预备处理程序的显示装置,用于产生开始定时信号的定时装置,用于开始执行初始设定程序和预备处理程序的控制装置 通过从定时器装置接收开始定时信号,并且在完成准备处理程序的执行之后,基于来自键盘的信号来控制分析装置。 由于初始设定程序和准备处理程序被定时器装置自动开始执行,所以操作者能够使用自动化学分析仪立即开始执行分析,而不用等待执行初始设置程序的完成 以及自动化学分析仪前面的预处理程序。
    • 34. 发明公开
    • Method and apparatus for analyzing fluid sample
    • 用于液体样品的分析方法和装置。
    • EP0078948A1
    • 1983-05-18
    • EP82109693.0
    • 1982-10-20
    • Hitachi, Ltd.
    • Takahashi, KatsuakiSatou, TakehideAbe, Tetsuaki
    • G01N35/02
    • G01N35/025G01N35/0092G01N2035/0097G01N2035/0437Y10T436/114998
    • A row composed of reaction vessels (105) is arranged on a turntable (140) and one unit of sample dispenser mechanism (102,108) as well as one photometer (103) and a plurality units of reagent feeding mechanism (112, 117, 114, 118) are arranged near said turntable. After a sample (101) is added to one specified reaction vessel (105), said turntable (140) is rotated by 180° or more and stopped so as to advance said reaction vessel (105) containing said sample (104) by half a revolution plus one cell. During this rotation, approximately half of all the vessels (105) cross the light path of said photometer (103) for the absorbance of fluid in each vessel (105) to be measured.
      A reagent is added to said specified reaction vessel (105) at the next stop position after sampling in order to start reaction. Said turntable (140) is again rotated and stopped so as to advance said reaction vessel (105) by half a revolution plus one cell. During this rotation, said reaction vessel (105) crosses said light path of said photometer (103) for the absorbance of said reaction fluid to be measured. Said reaction vessel (105) stops at the second reaction vessel position beyond the initial sample adding position. During the course of repeated rotations, said specified reaction vessel (105) crosses said light path of said photometer (103) a number of times and is stopped at said sample adding position after it is washed to be ready for further use.