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    • 11. 发明申请
    • Automatic separator/extractor and method of controlling same
    • 自动分离器/提取器及其控制方法
    • US20060110296A1
    • 2006-05-25
    • US11325075
    • 2006-01-04
    • Hideji TajimaNorihisa SagawaToyosaku SatoMasataka MoritaHiroshi HayasakaKouji SatoKahoru Takahashi
    • Hideji TajimaNorihisa SagawaToyosaku SatoMasataka MoritaHiroshi HayasakaKouji SatoKahoru Takahashi
    • B01L3/00G01N35/00
    • G01N35/025G01N35/0099G01N2035/00504
    • The invention relates to an automatic separator/extractor and a method of controlling same, with the object, particularly in all manner of fields such as medical science, agricultural science, scientific fields, or pharmaceuticals, of being able to achieve at high speed and accuracy, extraction or separation of precipitate or supernatant at a high quality, accuracy and reliability, above that which can be achieved by manual means. The construction has a conveying device for conveying a mounted vessel along a closed path, a dispensing section for dispensing a reagent or the like into the vessel mounted on the conveying device, a liquid processing section for removing and/or extracting liquid other than a precipitate inside the vessel mounted on the conveying device, a separator for performing separation with respect to the contents inside a vessel which is mounted on the conveying device and/or a vessel which is installed away from the conveying device, a vessel moving device for bringing in and taking out the vessel with respect to the conveying device and/or separator, and an operation/control section for performing operation and control with respect to the conveying device, the dispensing section, the liquid processing section, the vessel moving device, and the separator.
    • 本发明涉及一种自动分离器/提取器及其控制方法,其目的尤其在医学,农业科学,科学领域或医药领域的各种领域中,能够高速准确地实现 ,以高质量,准确性和可靠性提取或分离沉淀物或上清液,高于可通过手动方式实现的沉淀物或上清液。 该结构具有用于沿着封闭路径输送安装的容器的输送装置,用于将试剂等分配到安装在输送装置上的容器中的分配部分,用于去除和/或提取除了沉淀物之外的液体的液体处理部分 在安装在输送装置上的容器内部,分离器,用于相对于安装在输送装置上的容器内的内容物和/或远离输送装置安装的容器进行分离;容器移动装置,用于引入 并且相对于输送装置和/或分离器取出容器,以及用于对输送装置,分配部,液体处理部,容器移动装置和运送装置进行操作和控制的操作/控制部 分隔器。
    • 17. 发明授权
    • Culture tube and angle rotor receiving the tube in centrifuge
    • 培养管和角转子在离心机中接收管
    • US07214177B2
    • 2007-05-08
    • US10422852
    • 2003-04-25
    • Masaharu AizawaMasataka Morita
    • Masaharu AizawaMasataka Morita
    • B04B5/02
    • B01L3/5021B01L3/50825B04B5/0414C12M23/08C12M23/38C12M33/10
    • A culture/centrifugal tube includes a tube and a cap. The cap has a disk portion and an annular portion that define an annular groove therebetween. The annular groove opens at a position level with the surface of the disk portion. The open end of the tube extends into the annular groove, with the open end of the vessel in abutment against the surface of the disk portion when the cap is fully engaged on the tube. An angle rotor that is used in a centrifuge is formed with an accommodation hole that receives the culture/centrifugal tube. The accommodation hole including a smaller-diameter tube accommodating portion that accommodates the tube and a larger-diameter cap accommodating portion that accommodates the cap. The cap accommodating portion includes a region that entirely encompasses a corresponding portion of the outer periphery of the annular portion of the cap.
    • 培养/离心管包括管和帽。 盖具有在其间限定环形槽的圆盘部分和环形部分。 环形槽在与盘部分的表面的位置水平位置处打开。 管的开口端延伸到环形槽中,当盖完全接合在管上时,容器的开口端抵靠盘部分的表面。 在离心机中使用的角度转子形成有容纳培养/离心管的容纳孔。 容纳孔包括容纳管的较小直径的管容纳部分和容纳盖的较大直径的盖容纳部分。 盖容纳部分包括完全包围盖的环形部分的外周的相应部分的区域。
    • 19. 发明授权
    • Micro-plate adapter
    • 微板适配器
    • US6045760A
    • 2000-04-04
    • US756911
    • 1996-11-26
    • Masaharu AizawaMasataka MoritaYasuhiro KawaiIwao YamazakiHiroshi Ono
    • Masaharu AizawaMasataka MoritaYasuhiro KawaiIwao YamazakiHiroshi Ono
    • B01L9/00B04B5/04B01L3/00
    • B01L9/523B04B5/0421B01L2300/0829B04B2005/0435
    • A micro-plate adapter for mounting a micro-plate onto a centrifugal separator rotor. The micro-plate has a sample injection hole portion containing a sample therein and as a box-like external wall. The adapter includes a bearing surface contacting a back bottom surface of the sample injection hole portion. A swing rotor for a centrifugal separator includes a rotor body attached to a driving shaft of the centrifugal separator and provided with a plurality of bucket storage portions; buckets all swingably engaged with the rotor body in the respective storage portions so that samples stored in the buckets are subjected to centrifugal separation by a centrifugal force generated by rotation of the swing rotor. Each of the buckets is formed to have a shape which adapts with a bottom surface of a micro-plate so as to contact with the back bottom surface of a sample injection hole portion of the micro-plate to bear a centrifugal load of the micro-plate. The swing rotor further includes a shell enclosing the rotor body and the buckets so as to rotate together with the rotor body and the buckets.
    • 用于将微板安装到离心分离器转子上的微板适配器。 微板具有在其中包含样品的样品注入孔部分和作为盒状外壁。 适配器包括接触样品注入孔部分的后底表面的支承表面。 用于离心分离器的摆动转子包括安装在离心分离器的驱动轴上的转子体,并具有多个铲斗收纳部; 所有的转子都可摆动地与各个储存部分中的转子本体接合,使得通过旋转转子的旋转产生的离心力使储存在料斗中的样品进行离心分离。 每个桶形成为具有与微板的底面适应的形状,以便与微板的样品注入孔部分的后底面接触以承受微孔板的离心载荷, 盘子。 摆动转子还包括壳体,其包围转子主体和铲斗,以便与转子主体和铲斗一起旋转。