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    • 11. 发明授权
    • Device for automatic chemical analysis
    • 自动化学分析装置
    • US5575976A
    • 1996-11-19
    • US480281
    • 1995-06-07
    • Alfredo ChoperenaRoss KroghVenkatesh PrasadGershon Giter
    • Alfredo ChoperenaRoss KroghVenkatesh PrasadGershon Giter
    • G01N35/00G01N35/02G01N35/04G01N35/10
    • G01N35/0092G01N35/021G01N2035/0467G01N2035/1025G01N35/0098G01N35/1004Y10T436/11Y10T436/113332Y10T436/114165Y10T436/114998Y10T436/115831Y10T436/2575
    • This invention provides an automated chemical analyzer with improved processing flexibility and ease. In one embodiment of this invention, the analyzer includes an incubation station, a wash station and a read station. The incubation station includes an elongated, movable track to carry reaction vessels along an incubation path, the wash station includes a movable track to carry vessels along a wash-cycle path, and the read station is adapted to move vessels along a read path. A first transfer station is positioned adjacent a first end of the wash-cycle path to transfer vessels from the incubation path to the wash-cycle path and a second transfer station is positioned adjacent a second end of the wash-cycle path and a first end of the read path for selectively transferring a vessel from the wash-cycle path to either the incubation path or the read path. Optimally, the first transfer station is positioned adjacent a second end of the read path, enabling the first transfer station to transfer a vessel from the read path to the incubation path, e.g., for disposal at a central waste container.
    • 本发明提供一种自动化学分析仪,其具有改善的加工灵活性和容易性。 在本发明的一个实施例中,分析仪包括孵化站,洗涤站和读站。 孵化站包括细长的活动轨道,沿着孵化路径携带反应容器,洗涤站包括沿着洗涤循环路径运送血管的活动轨迹,并且读取站适于沿着读取路径移动容器。 第一转运站位于洗涤循环路径的第一端附近,以将容器从孵化路径转移到洗涤循环路径,并且第二转运站位于洗涤循环路径的第二端附近,第一端 用于选择性地将容器从洗涤循环路径转移到培养路径或读取路径的读取路径。 最佳地,第一传送站位于读路径的第二端附近,使得第一传送站能够将容器从读路径传送到孵育路径,例如用于在中央废物容器处理。
    • 13. 发明授权
    • Intravenous pumping air management systems and methods
    • 静脉泵送空气管理系统和方法
    • US08382711B2
    • 2013-02-26
    • US12981152
    • 2010-12-29
    • Thomas DudarRoss KroghJames MartucciShmuel Sternberg
    • Thomas DudarRoss KroghJames MartucciShmuel Sternberg
    • A61M1/00
    • A61M5/172A61M5/36A61M5/365A61M5/38A61M5/385A61M2205/60
    • An intravenous (“IV”) liquid delivery system includes: an IV pump tubing set; a shuttle pump or membrane pump actuator operable with the IV pump tubing set; upstream and downstream valve actuators operable with the IV pump tubing set; the IV pump tubing set including an air removal device; an air detector configured to sense air in the IV pump tubing set; a control unit configured and arranged to (i) open the upstream valve actuator and close the downstream valve actuator to allow the pump actuator to draw liquid into a pump actuation portion of the IV pump tubing set, and (ii) close the upstream valve actuator and open the downstream valve actuator to allow the pump actuator to push liquid out of the pump actuation portion, the system configured to attempt to remove the air via the air removal device while operating the upstream and downstream valve actuators according to (i) and (ii).
    • 静脉内(IV)液体输送系统包括:IV泵管组; 一个穿梭泵或膜泵驱动器,可与IV泵管组一起操作; 上游和下游阀致动器可与IV泵管组一起操作; 所述IV泵管组包括排气装置; 空气检测器,被配置为感测IV泵管组中的空气; 控制单元,其配置和布置成(i)打开上游阀致动器并关闭下游阀致动器以允许泵致动器将液体引入IV泵管组的泵致动部分,以及(ii)关闭上游阀致动器 并且打开下游阀致动器以允许泵致动器将液体推出泵致动部分,该系统构造成在根据(i)和(i)和(i))操作上游和下游阀致动器期间尝试经由除气装置去除空气, ii)。
    • 16. 发明授权
    • Vessel transport device for automatic chemical analysis
    • 船舶运输装置,用于自动化学分析
    • US5601783A
    • 1997-02-11
    • US260183
    • 1994-06-15
    • David BreeserAlan WirbiskyRoss Krogh
    • David BreeserAlan WirbiskyRoss Krogh
    • G01N35/04
    • G01N35/04G01N2035/0406G01N2035/0467Y10T436/11Y10T436/113332Y10T436/114165
    • The present invention provides a vessel shuttle which can be used, for example, for moving reaction vessels to or from an assay resource station in an automated chemical analyzer. The vessel shuttle has a plurality of movable plates including first and second vessel carrying plates adapted to move cooperatively with respect to one another to advance a vessel stepwise along a linear path without net motion of the first and second vessel carrying plates as the vessel is advanced one step. In a preferred embodiment, the first and second vessel carrying plates each comprise a plurality of fingers defining recesses for receiving vessels and the first vessel carrying plate is adapted to move in a direction substantially perpendicular to the vessels' linear path and the second vessel carrying plate is adapted to move rectilinearly both generally parallel to and generally perpendicular to that linear path. The present invention may also include a waste chute for disposing of spent reaction vessels, the waste chute having a novel gate design. In accordance with this embodiment, the vessel shuttle can move a new vessel to a position for access by a pipettor or the like, transport a reaction vessel from the vessel shuttle to an adjacent assay resource station, and transport a reaction vessel from that assay resource station to the waste chute in one motion of the vessel shuttle.
    • 本发明提供了可用于例如用于将自动化学分析仪中的测定资源站移动到或来自测定资源站的反应容器的血管梭。 船舶梭具有多个可移动板,包括第一和第二船只承载板,其适于彼此协作地移动,以在船只前进时沿着线性路径逐步推进船舶,而没有第一和第二船只承载板的网络运动 一步。 在优选实施例中,第一和第二容器承载板各自包括限定用于容纳容器的凹部的多个指状件,并且第一容器承载板适于沿基本上垂直于容器的线性路径的方向移动,并且第二容器承载板 适于直线移动,大致平行于并且大致垂直于该线性路径。 本发明还可以包括用于处理用过的反应容器的废料槽,废物槽具有新的浇口设计。 根据本实施例,血管穿梭器可以将新血管移动到通过移液器等进入的位置,将反应容器从血管穿梭器运输到相邻的测定资源站,并从该测定资源输送反应容器 站到垃圾槽一次运动的船只穿梭。