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    • 2. 发明授权
    • Control device for automatic liquid handling system
    • 自动液体处理系统控制装置
    • US07374720B2
    • 2008-05-20
    • US10714889
    • 2003-11-18
    • Hiroatsu ToiHidetaka OsawaKenji YamadaTadashi Ohkawara
    • Hiroatsu ToiHidetaka OsawaKenji YamadaTadashi Ohkawara
    • B32B5/02
    • G01N35/1011G01N2035/103Y10T436/2575
    • In reagent reaction experiments using microplates, the operator cannot just set dispensing tips in all the fixing holes of the dispensing tip container. It is necessary to carry out the time-consuming task of deciding in advance on a suitable arrangement of positions for the dispensing tips. It is also necessary for the operator to carry out the time-consuming task of determining in advance the quantity of reagent used and how the reagent is to be arranged. These problems are solved by providing a control device that includes a dispensing tip arrangement calculator and reagent quantity and arrangement calculator, and that can inform the operator of these results. The dispensing tip arrangement, the reagent quantity used, and the reagent arrangement is calculated from the information set in advance on specific reagent, the quantity of reagent dispensed into one well of the microplate, the range of wells in the microplate into which reagent is dispensed, and the direction of dispensing.
    • 在使用微孔板的试剂反应实验中,操作者不能仅在分配尖端容器的所有固定孔中设置分配尖端。 需要进行耗时的任务,即预先决定用于分配提示的适当位置。 操作者还需要预先确定所用试剂的数量以及如何布置试剂的耗时的任务。 这些问题通过提供一种控制装置来解决,所述控制装置包括分配尖端布置计算器和试剂数量和布置计算器,并且可以向操作者通知这些结果。 根据预先对特定试剂设定的信息,分配到微板的一个孔中的试剂的量,分配试剂的微板中的孔的范围计算分配尖端装置,使用的试剂量和试剂装置 ,以及分配方向。
    • 5. 发明授权
    • Microplate liquid handling system
    • 微孔板液体处理系统
    • US07101511B2
    • 2006-09-05
    • US10669796
    • 2003-09-25
    • Hiroatsu ToiKenji YamadaTadashi OhkawaraMasashi Nagaoka
    • Hiroatsu ToiKenji YamadaTadashi OhkawaraMasashi Nagaoka
    • B01L3/02
    • G01N35/1074G01N35/028G01N35/109G01N2035/1076
    • A microplate liquid handling system capable of automatically performing both longitudinal collective suction/discharge and lateral collective suction/discharge on a single microplate. The microplate liquid handling system has a main body equipped with a moving device, a rotating mechanism, a dispensing mechanism, and a stage. Connected to the moving device is the dispensing mechanism for performing dispensing on wells in a microplate on the stage through the rotating mechanism. A plurality of cylinders are arranged in a row in the dispensing mechanism. The dispensing mechanism is capable of moving forwards and backwards and to the right and left with respect to the main body, and is rotatable about a vertically directed rotation axis, making it possible to change the direction of the cylinder array from origin position to 90 degrees position and vice versa.
    • 一种微孔板液体处理系统,能够在单个微孔板上自动执行纵向共同吸入/排出和侧向共同吸入/排出。 微板液体处理系统具有配备有移动装置,旋转机构,分配机构和台架的主体。 连接到移动装置的是分配机构,用于通过旋转机构在台上的微板中进行分配。 多个气缸在分配机构中排成一列。 分配机构能够相对于主体向前和向后以及向左右移动,并且可以围绕垂直定向的旋转轴线旋转,使得可以将气缸阵列的方向从原点位置改变到90度 位置,反之亦然。
    • 6. 发明授权
    • Microplate liquid handling system
    • 微孔板液体处理系统
    • US07169362B2
    • 2007-01-30
    • US10669810
    • 2003-09-25
    • Hiroatsu ToiKenji YamadaTadashi OhkawaraMasashi Nagaoka
    • Hiroatsu ToiKenji YamadaTadashi OhkawaraMasashi Nagaoka
    • B01L3/02
    • G01N35/1067G01N35/1072G01N35/1074G01N35/109G01N2035/103
    • A microplate liquid handling system requiring minimum installation area, helping to avoid waste of various reagents, and making it possible to perform dispensing the various reagents in the shortest possible time. The microplate liquid handling system has a main frame body provided with a moving mechanism, a dispensing mechanism, and a stage. On the stage, a microplate, two dispensing tip containers, and two reagent vessels are mounted. Formed in the microplate are 12×8 wells, i.e., 96 wells in total, arranged in matrix. The microplate, the dispensing tip containers, and the reagent vessels are substantially of the same, rectangular configuration. Each of the two dispensing tip containers is capable of accommodating 12×8 dispensing tips in total in a matrix fashion.
    • 需要最小安装面积的微孔板液体处理系统,有助于避免各种试剂的浪费,并且可以在尽可能短的时间内进行各种试剂的分配。 微孔板液体处理系统具有设置有移动机构,分配机构和台架的主框体。 在舞台上安装微板,两个分配头容器和两个试剂容器。 在微量培养板中形成的是12×8个孔,即96个孔,总共排列成矩阵。 微板,分配尖端容器和试剂容器基本上相同,矩形构造。 两个分配尖端容器中的每一个能够以矩阵方式总共容纳12×8个分配尖端。
    • 7. 发明授权
    • Centrifugal machine
    • 离心机
    • US07643236B2
    • 2010-01-05
    • US11848400
    • 2007-08-31
    • Tadashi Ohkawara
    • Tadashi Ohkawara
    • G11B5/02
    • B04B15/02B04B13/00
    • A centrifugal machine comprises a rotor drivable and rotatable by a motor while holding a specimen, and including a recording medium for recording data therein; a Peltier element, when a voltage is applied thereto, for controlling the temperature of the rotor; a recording head disposed at a position adjacent to the rotor for reproducing data from the recording medium or for recording data into the recording medium; and, a control device not only for controlling the operation of the Peltier element when the Peltier element controls the temperature of the rotor but also for controlling the operation of the recording head when the recording head reproduces the data from the recording medium or records the data into the recording medium, wherein the control device, when carrying out the data reproduction or data recording with respect to the recording medium provided in the rotor, controls the Peltier element in such a manner that the operation of the Peltier element is caused to stop.
    • 一种离心机,其特征在于,包括在保持试样的状态下由马达驱动并可旋转的转子,并且包括用于在其中记录数据的记录介质; 当对其施加电压时,珀尔帖元件用于控制转子的温度; 记录头,设置在与转子相邻的位置处,用于从记录介质再现数据或将数据记录到记录介质中; 以及控制装置,其不仅用于当珀耳帖元件控制转子的温度时控制珀尔帖元件的操作,而且还用于当记录头从记录介质再现数据或记录数据时控制记录头的操作 其中控制装置在对设置在转子中的记录介质进行数据再现或数据记录时,以使得停止Peltier元件的操作的方式控制珀尔帖元件。