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    • 5. 发明申请
    • AUTOMATIC ANALYZER
    • 自动分析仪
    • US20160154016A1
    • 2016-06-02
    • US14901370
    • 2014-07-25
    • HITACHI HIGH-TECHNOLOGIES CORPORATION
    • Yoshihiro YAMASHITAToshiharu SUZUKITakaaki HAGIWARAKazunori YAMAZAWA
    • G01N35/00
    • G01N35/0092G01N35/00712G01N35/00871G01N2035/00643G01N2035/00673G01N2035/0091G01N2035/0094
    • The present invention provides an automatic analyzer capable of reducing the time necessary for analysis processing by making various operations pertaining to the analysis processing more efficient. More specifically, the present invention is characterized in that, from among a plurality of ending operation items set as analysis ending operations to perform at the end of analysis operations for analyzing a sample under analysis, one or more ending operation items to be performed are selected, and on the basis of monitoring results of monitoring the status of an automatic analyzer during the period from the end of the analysis ending operations to the start of analysis preparation operations for preparing for the analysis operations, one or more preparation operation items to be performed are selected from among a plurality of preparation operation items set as analysis preparation operations.
    • 本发明提供一种自动分析器,其能够通过使与分析处理有关的各种操作更有效地减少分析处理所需的时间。 更具体地说,本发明的特征在于,从作为分析结束操作的多个结束操作项目中,在用于分析被分析的样本的分析操作结束时执行的一个或多个结束操作项目被选择 并且基于在从分析结束操作结束到分析准备操作开始的分析结束操作期间监视自动分析器的状态的监视结果的基础上,进行用于分析操作的准备操作的一个或多个准备操作项目 从作为分析准备操作的多个准备操作项目中选择。
    • 8. 发明授权
    • Sample analyzer and a sample analyzing method
    • 样品分析仪和样品分析方法
    • US09151703B2
    • 2015-10-06
    • US13744904
    • 2013-01-18
    • Sysmex Corporation
    • Masaki ShibaTomoyuki NishidaYuji Wakamiya
    • G01N35/00G01N1/38
    • G01N1/38G01N35/00584G01N35/00594G01N35/00603G01N35/00613G01N35/00693G01N35/00712G01N35/026G01N2001/386
    • Herewith disclosed is a sample analyzer comprising: a measurement section configured to perform a measurement on a sample and generate a measurement value according to the concentration of an analyte in the sample; a memory storing a calibration curve; an analysis section; an output section; and an instruction receiver. When the instruction receiver receives an instruction to perform a diluting measurement on a calibration sample, the measurement section dilutes the calibration sample by a predetermined ratio and performs a measurement on the diluted calibration sample, and the analysis section determines the concentration of the analyte in the diluted calibration sample by applying a measurement value obtained from the diluted calibration sample to the calibration curve. Information generated based on the determined concentration and the known concentration is output.
    • 本发明公开了一种样品分析装置,包括:测定部,其对样品进行测定,并根据样品中的分析物的浓度生成测定值; 存储校准曲线的存储器; 分析部分; 输出部分; 和指令接收器。 当指示接收器接收到对校准样品进行稀释测量的指令时,测量部分以预定比例稀释校准样品并对稀释的校准样品进行测量,并且分析部分确定分析物的浓度 通过将从稀释的校准样品获得的测量值应用于校准曲线来稀释校准样品。 输出基于确定的浓度和已知浓度产生的信息。
    • 10. 发明申请
    • LINKAGE CONTROL DEVICE AND BLOOD GAS ANALYZER ADOPTING SAME
    • 链接控制装置和采用同样的气体分析仪
    • US20150260743A1
    • 2015-09-17
    • US14414078
    • 2012-07-30
    • EDAN INSTRUMENTS, INC.
    • Gaoxiang HuangZhixiang Zhao
    • G01N35/00F16K1/24
    • G01N35/00712F01L1/042F01L2105/00F16K1/24G01N33/4925G01N35/00693Y10T436/115831
    • Disclosed are a linkage control device and a blood gas analyzer adopting the linkage control device. The linkage control device comprises a power unit and a rotating component (4) provided with bosses (41, 42). The power unit generates power to drive the rotating component (4) to rotate. The linkage control device further comprises valve components (5, 6, 7, 8), a signal control unit, sensing switches, and sensing pins (43, 44, 45, 46). The valve components (5, 6, 7, 8) are matched with the bosses (41, 42) of the rotating component (4) in a pushing manner. The signal control unit controls the start or stop of the power unit. The sensing switches are connected to the signal control unit via signals. The sensing pins (43, 44, 45, 46) are arranged in pair with the sensing switches and are arranged on the rotating component (4).
    • 公开了采用该联动控制装置的联动控制装置和血液气体分析装置。 联动控制装置包括动力单元和设置有凸台(41,42)的旋转部件(4)。 动力单元产生动力以驱动旋转部件(4)旋转。 联动控制装置还包括阀组件(5,6,7,8),信号控制单元,感测开关和感测销(43,44,45,46)。 阀组件(5,6,7,8)以推动方式与旋转部件(4)的凸台(41,42)相配合。 信号控制单元控制电源单元的启动或停止。 感测开关通过信号连接到信号控制单元。 检测销(43,44,45,46)与检测开关成对配置,并布置在旋转部件(4)上。