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    • 82. 发明申请
    • AUTOMATIC BLOOD-SAMPLING TUBE PREPARATION DEVICE
    • US20160152367A1
    • 2016-06-02
    • US14403964
    • 2013-07-17
    • TECHNO MEDICA CO., LTD.
    • Mitsuru SATO
    • B65C3/12B65C9/18
    • B65C3/12A61B5/15003A61B5/150786A61B5/154B65C9/1865G01N35/04G01N2035/00861
    • It is an object of the present invention to provide a blood-sampling-tube automatic preparation device having a quite short width and a superior portability, and being very compact.The blood-sampling-tube automatic preparation device according to the present invention, comprising a blood-sampling-tube containing section (B) having at least two blood-sampling-tube containers (1) each of which are able to contain separately blood-sampling-tubes according to a kind of blood-sampling-tube, a label printing and pasting unit (E) that prints a blood sampling information data related to a patient on a label and then pastes the printed label on a surface of a blood-sampling-tube, a hand pasting label printer (F), a blood-sampling-tube collecting section (G) in which one or more blood-sampling-tubes with label pasted and, if necessary, one or more printed labels for hand pasting are collected for each patient, a blood-sampling-tube transferring device (C, D) that receives the blood-sampling-tube required to a blood test of a patient from the corresponding blood-sampling-tube container (1) and transfers the received blood-sampling-tube to the label printing and pasting unit (E), and a control device (70) that controls the each component (B to G) such as one or more blood-sampling-tubes required to the blood test of the patient are selectively taken out from the corresponding blood-sampling-tube container (1), the information data corresponding to the patient is printed on the label, the printed label is pasted each blood-sampling-tube, if necessary, the information data corresponding to the patient is printed on the label for hand pasting, and then one or more the label pasted blood-sampling-tubes and, if necessary, one or more labels for hand pasting are collected in the blood-sampling-tube collecting section (G) for each patient characterized in that all blood-sampling-tube containers (1) of the blood-sampling-tube containing section (B) are arranged side by side in a row on a same horizontal surface and the blood-sampling-tube transferring device (C, D), the label printing and pasting unit (E), and the hand pasting label printer (F) are arranged to be mutually superposed under the blood-sampling-tube containing section (B).
    • 83. 发明授权
    • Apparatus for separating cuvettes
    • 用于分离比色皿的装置
    • US09347964B2
    • 2016-05-24
    • US14508606
    • 2014-10-07
    • Roche Diagnostics Operations, Inc.
    • Gottlieb Schacher
    • B65G47/44G01N35/04B65G47/14
    • G01N35/04B65G47/1428B65G2201/0235G01N2035/0444G01N2035/0456G01N2035/0465
    • An apparatus, system for analyzing, and process for separating cuvettes supplied in bulk form are presented. The apparatus comprises a reservoir with an inlet for supplying cuvettes in bulk form to a reservoir space, a separator with an outlet for outputting separated cuvettes from a separator space communicating with the reservoir space, a reservoir spiral contained in the reservoir space to transport cuvettes to the separator space by rotating the reservoir spiral, and a separator spiral contained in the separator space to transport cuvettes to the outlet by rotating the separator spiral. Adjacent turns of the separator spiral have an inter-distance dimensioned such that a cuvette can be held in a holding position in which projections projecting outwards from a body for receiving liquid rest on adjacent turns, with the body dipping into a spiral groove between the adjacent turns.
    • 提出了一种用于分析和处理散装形式提供的比色杯的设备,系统。 该装置包括具有入口的储存器,该入口用于向容器空间供应散装形式的比色皿,具有出口的分离器,用于从与储存空间连通的分离器空间输出分离的反应杯,容纳在储存空间中的储存器螺旋,以将比色杯输送至 通过旋转储存器螺旋的分离器空间,以及容纳在分离器空间中的分离器螺旋,以通过旋转分离器螺旋将比色杯输送到出口。 分离器螺旋的相邻匝具有尺寸彼此相距的尺寸,使得比色皿可以保持在保持位置,在该保持位置中,从身体向外突出的突起用于接收液体停留在相邻匝上,其中身体浸入相邻的螺旋槽之间的螺旋槽 轮到
    • 84. 发明申请
    • Mobile Tip Waste Rack
    • 移动尖端垃圾架
    • US20160139163A1
    • 2016-05-19
    • US14798212
    • 2015-07-13
    • Roche Molecular Systems, Inc.
    • Andreas GislerRobert HueslerManu Kottuppallil MathewThomi Merk
    • G01N35/10G01N35/04G01N35/00G01N35/02
    • G01N35/10G01N35/00871G01N35/026G01N35/04G01N35/1081G01N2035/00277G01N2035/00851G01N2035/0491G01N2035/103
    • A method of wasting tips in an automated processing module is disclosed, which includes at least three positions for holding sample racks. One of the positions is a tip waste rack position holding a tip waste rack, which includes tip receiving openings. Furthermore, it includes a SWAP rack holding mechanism for temporarily holding a sample rack. The method includes transferring the tip waste rack from the tip waste rack position to an adjacent sample rack position. Once the tip waste rack is placed in the adjacent sample rack position, the error pipette tip is discarded into one of the tip receiving openings of the tip waste rack. Following this, the tip waste rack is transferred back to the tip waste rack position. The sample rack temporarily placed in the SWAP rack holding mechanism is transferred from the SWAP rack holding mechanism to the adjacent sample rack position.
    • 公开了一种在自动处理模块中浪费尖端的方法,其包括用于保持样品架的至少三个位置。 其中一个位置是保持尖端废物架的尖端垃圾架位置,其包括尖端接收开口。 此外,还包括用于临时保持样品架的SWAP架保持机构。 该方法包括将尖端废弃物架从尖端废物架位置转移到相邻的样品架位置。 一旦尖头垃圾架被放置在相邻的样品架位置,误差移液器尖端被丢弃到尖端废弃架的尖端接收开口之一。 接下来,将垃圾架转回到垃圾架的位置。 临时放置在SWAP支架保持机构中的样品架从SWAP机架保持机构传递到相邻的样品架位置。
    • 86. 发明授权
    • RFID—specimen transport puck process features and process method to efficiently wand, rack, transport, track specimens in the laboratory
    • RFID样品运输游泳过程的特点和工艺方法,可以有效地在实验室中进行棒,轨道,运输,跟踪标本
    • US09289770B2
    • 2016-03-22
    • US12714442
    • 2010-02-27
    • Lear Sirous Lavi
    • Lear Sirous Lavi
    • G06K7/01B01L9/06B01L3/00G01N35/04
    • B01L9/06B01L3/54B01L3/5453B01L2300/022G01N35/04
    • This invention is for the process method of an RFID Specimen Transport puck that can be used in the process of performing overall efficient receiving of specimen identifying information, racking, transporting and tracking of specimens throughout the entire lab. This puck design process can be used on a conveyor system, contains an RFID chip, can be used to wand specimens for tracking, can be used to rack specimens, can be used to transport specimens to laboratory areas and instruments, can be used to track specimen, is made of plastics, is small, has the ability to hold various tubes sizes, that has few pieces to assemble, that is low in cost, can be held in a rack carrying tray. By having all these process features in the one puck design, this ‘puck’ can be used in high volume and can be used though out the entire laboratory.
    • 本发明是用于RFID标本传输圆盘的处理方法,其可以用于在整个实验室中对标本识别信息进行总体有效接收,样品运送和跟踪。 这个圆盘设计过程可以在输送系统上使用,包含一个RFID芯片,可用于将样品用于跟踪,可用于机架标本,可用于将样品运送到实验室区域和仪器,可用于跟踪 试样由塑料制成,体积小,具有容纳各种管尺寸,成本低廉,成本低的能力,可以保持在托架托盘中。 通过在一个圆盘设计中具有所有这些过程特征,这个“冰球”可以大量使用,并且可以在整个实验室中使用。
    • 87. 发明申请
    • METHOD FOR ANALYZING PLURALITY OF SAMPLES
    • 分析样本多样性的方法
    • US20160060680A1
    • 2016-03-03
    • US14213900
    • 2014-03-14
    • Gen-Probe Incorporated
    • David A. BUSEDavid OpalskyJason F. RHUBOTTOMNorbert D. HAGENJennifer L. TIDD
    • C12Q1/68
    • C12Q1/6806B01L3/50825B01L3/527B01L3/565B01L7/5255B01L2200/026B01L2200/0689B01L2300/046C12Q1/686G01N35/04G01N2035/0418G01N2035/0436
    • A diagnostic system performs a first nucleic acid amplification reaction and a second, different nucleic acid amplification reaction. The diagnostic system includes a compartment configured to store at least a first bulk reagent container comprising a first bulk reagent for performing a sample preparation process, and a second bulk reagent container comprising a second bulk reagent for performing the first reaction. The system including a compartment configured to store at least one unit-dose pack comprising a plurality of unit-dose reagents for performing the second reaction. The diagnostic system is configured to perform the sample preparation process using the first bulk reagent on each of a plurality of samples provided to the diagnostic system. The system is configured to perform the first reaction using the second bulk reagent on a first sample subset, and perform the second reaction using the plurality of first unit-dose reagents on a second sample subset.
    • 诊断系统进行第一次核酸扩增反应和第二次不同的核酸扩增反应。 诊断系统包括隔室,其被配置为至少存储包含用于进行样品制备过程的第一体积试剂的第一体积试剂容器和包含用于进行第一反应的第二体积试剂的第二体试试剂容器。 所述系统包括被配置为存储至少一个包含用于进行第二反应的多个单位剂量试剂的单位剂量包装的室。 诊断系统被配置为使用提供给诊断系统的多个样本中的每一个上的第一批量试剂进行样品制备过程。 该系统被配置为在第一样品子集上使用第二本体试剂进行第一反应,并且在第二样品子集上使用多个第一单位剂量试剂进行第二反应。