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    • 3. 发明公开
    • Fluid dispenser for fluid in assay
    • FlüssigkeitsabgabenvorrichtungfüreinenStrömungskanal
    • EP1760473A1
    • 2007-03-07
    • EP06018323.3
    • 2006-09-01
    • Fuji Photo Film Co., Ltd.
    • Muraishi, Katsuaki Fuji Photo Film Co., Ltd.Fujikura, Tatsuo Fuji Photo Film Co., Ltd.Takai, Shinya Fuji Photo Film Co., Ltd.
    • G01N35/10B01L3/02G01N21/05
    • B01L3/021B01L2200/022B01L2300/0829G01N21/553G01N35/1095
    • A fluid dispenser (18) for surface plasmon resonance (SPR) assay apparatus includes a first pipette device (30, 62) on a first pipette head (101), and a second pipette device (35, 62) on a second pipette head (102). In a standby state, the first pipette head is set in an upper position, a coil spring (132) and a stopper (130) set the second pipette head together with the first pipette head, and locate the second pipette head in a high position. While the first and second pipette devices are in an aspirating position, a driving mechanism (104) sets the first pipette head in a lower position. A blocking mechanism sets the second pipette head in a high position against the coil spring. First, third and fifth pipette tips are positioned lower than second, fourth and sixth pipette tips, to access a well. The first to sixth pipette tips, while in an assay position, are equally lowered.
    • 用于表面等离子体共振(SPR)测定装置的流体分配器(18)包括在第一移液管头(101)上的第一移液管装置(30,62)和在第二移液管头上的第二移液管装置(35,62) 102)。 在待机状态下,将第一移液管头设置在上部位置,螺旋弹簧(132)和止动件(130)将第二移液管头与第一移液管头一起设置,并将第二移液管头定位在高位置 。 当第一和第二移液管装置处于抽吸位置时,驱动机构(104)将第一移液管头设置在较低位置。 阻塞机构将第二移液管头设置在高于螺旋弹簧的高位置。 首先,第三和第五移液器吸头的位置比第二,第四和第六移液器吸头低,以进入井。 在测定位置时,第一至第六移液器吸头同样降低。
    • 6. 发明授权
    • Instrument and method for the automated thermal treatment of liquid samples
    • 仪器仪表和自动化仪表自动化仪表
    • EP2463661B1
    • 2014-01-08
    • EP10191156.8
    • 2010-11-15
    • F. Hoffmann-La Roche AGRoche Diagnostics GmbH
    • Schildknecht, KurtIten, RogerSarofim, EmadCherubini, Claudio
    • G01N35/02B01L7/00G01N33/53G01N21/25
    • B01L3/50851B01L3/50853B01L7/52B01L2200/022B01L2300/041B01L2300/0654B01L2300/0829B01L2300/1805C12Q1/686G01N21/0332G01N21/253G01N21/645G01N21/6452G01N35/028G01N2021/6419G01N2021/6484G01N2035/00346G01N2035/00376G01N2201/0627
    • The present invention pertains to an instrument for the automated thermal treating of liquid samples, comprising a temperature-controlled receptacle for receiving a plurality of vessels for containing said samples in thermal communication therewith, a detection module equipped with a detection arrangement provided with one or more detectors for detecting light emitted from said samples and a coupling arrangement provided with a plurality of optical fibers for transmitting said emitted light to said detection arrangement, wherein said optical fibers have first and second end portions, said first end portion and said second end portion of each optical fiber being fixed with respect to each other, and a moving mechanism for moving said coupling arrangement and/or said receptacle in a manner to vary an inter-distance between said coupling arrangement and said receptacle so as to allow the vessels to be loaded to or unloaded from said receptacle and to enable detection of light from samples contained in said one or more receptacle-loaded vessels. It further pertains to a method for the automated thermal treatment of liquid samples comprising a step of varying an inter-distance between a temperature-controlled receptacle for loading with a plurality of vessels for containing said samples and end portions of optical fibers, wherein said receptacle is configured to form a thermal communication with said loaded vessels and wherein said optical fibers have first and second end portions, said first end portion and said second end portion of each optical fiber being fixed with respect to each other for transmitting light, said variation of said inter-distance allowing the vessels to be loaded to or unloaded from said receptacle and to enable detection of light from said samples contained in said one or more receptacle-loaded vessels.
    • 本发明涉及一种用于液体样品的自动热处理的仪器,包括用于接收多个容器的温度控制的容器,用于容纳与其热连通的所述样品;检测模块,其配备有检测装置,该检测装置设置有一个或多个 用于检测从所述样品发射的光的检测器和设置有用于将所述发射光传输到所述检测装置的多个光纤的耦合装置,其中所述光纤具有第一和第二端部,所述第一端部和所述第二端部 每个光纤相对于彼此固定;以及移动机构,用于以改变所述耦合装置和所述插座之间的间距的方式移动所述耦合装置和/或所述插座,以允许所述容器被加载 从所述容器进入或卸载并且能够检测来自样品的光 包含在所述一个或多个容器加载的容器中。 它还涉及用于液体样品的自动热处理的方法,包括改变用于装载用于容纳所述样品和光纤的端部的多个容器的温度控制容器之间的间距的步骤,其中所述容器 被配置为与所述加载的容器形成热连通,并且其中所述光纤具有第一和第二端部,每个光纤的所述第一端部和所述第二端部相对于彼此固定以透射光,所述变化 所述间距允许容器从所述容器装载或卸载,并且能够检测包含在所述一个或多个容器加载的容器中的所述样品的光。
    • 10. 发明公开
    • Adjustable laboratory rack
    • Einstellbares Laborregal
    • EP1997560A1
    • 2008-12-03
    • EP08009536.7
    • 2008-05-26
    • Bel-Art Products, Inc.St. Jude Children's Research Hospital Inc.
    • Zatechka Jr., StevenGomes, FrancisLandsberger, David
    • B01L9/00
    • B01L9/00B01L2200/021B01L2200/022B01L2200/025
    • A laboratory rack assembly for supporting columns and receptacle tubes and other paraphernalia during laboratory procedures such as such as filtration, chromatography, plasma preparation, affinity purification, and so on, includes upper and lower support portions that are connected together for relative sliding movement. An upper rack module is connected to the upper support portion and is configured to receive at least one column. A lower rack module is connected to the lower support portion and is configured to receive at least one receptacle tube. At least one of the rack modules is removably connected to at least one of the support portions. An adjustment mechanism is operably associated with the upper and lower support portions for adjusting a position of one support portion with respect to the other support portion to thereby vary the distance between the upper and lower rack modules.
    • 在诸如过滤,色谱法,等离子体制备,亲和纯化等实验室操作过程中用于支撑柱和容器管和其他用具的实验室架组件包括连接在一起以进行相对滑动的上部和下部支撑部分。 上机架模块连接到上支撑部分并且被配置为接收至少一个列。 下部机架模块连接到下部支撑部分,并且构造成容纳至少一个插座管。 至少一个支架模块可移除地连接到至少一个支撑部分。 调节机构与上支撑部分和下支撑部分可操作地相关联,用于调节一个支撑部分相对于另一个支撑部分的位置,从而改变上部和下部机架模块之间的距离。