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    • 1. 发明申请
    • On-Site Liquid Production
    • 现场液体生产
    • US20110045498A1
    • 2011-02-24
    • US12675232
    • 2008-08-25
    • Martin LindbergLars Winther
    • Martin LindbergLars Winther
    • G01N33/567C12M1/02C12M1/36
    • G01N35/00029G01N2035/00138G01N2035/00217G01N2035/00544
    • A biological sample processing system for on-site liquid production comprises a processing apparatus for processing of biological samples arranged on microscope slides, and a production unit connected to the apparatus. The production unit comprises a first ingredient source, a second ingredient source, and a mixer station. The mixer station is configured to mix ingredients to produce a liquid product. Supply conduits are arranged to supply an amount of a first ingredient and an amount of a second ingredient from the first and second ingredient sources to the mixer station. A delivery conduit is provided for transportation of an amount of the liquid product from the mixer station. A production controller is arranged in communication with the production unit, and is configured to control the operation of the production unit.
    • 用于现场液体生产的生物样品处理系统包括用于处理布置在显微镜载片上的生物样品的处理装置和连接到该装置的生产单元。 生产单元包括第一成分源,第二成分源和混合站。 搅拌站配置成混合成分以产生液体产品。 供应管道被布置成将一定量的第一成分和第二成分的量从第一和第二成分源提供给混合器站。 输送管道用于运输来自混合站的液体产品的量。 生产控制器被布置成与生产单元通信,并且被配置为控制生产单元的操作。
    • 2. 发明申请
    • Removal of Embedding Medium
    • 去除嵌入介质
    • US20090155907A1
    • 2009-06-18
    • US12095432
    • 2006-11-24
    • Lars WintherMartin Lindberg
    • Lars WintherMartin Lindberg
    • C12N5/06C12M1/00C12M1/36
    • G01N1/30G01N1/312G01N1/36G01N2001/307G01N2035/00881
    • A method, apparatus and system for automated removal of an embedding medium from an embedded biological sample. The method comprising the steps of: providing an automated sample processing apparatus having an automated process operation capability that causes automated process operation events through robotic sample process functions; providing a clearing solvent, e.g. an organic solvent, capable of lowering the melting point of an embedding medium and/or dissolving an embedding medium; loading a plurality of carriers with embedded biological samples in the automated sample processing apparatus; exposing an embedded biological sample to the clearing solvent, whereby the embedding medium is liquefied; and providing a washing solution capable of removing the clearing solvent and the liquefied embedded medium from said biological sample, said clearing solvent and said washing solution being immiscible.
    • 一种用于从嵌入式生物样品中自动去除嵌入介质的方法,装置和系统。 该方法包括以下步骤:提供具有自动化处理操作能力的自动化样品处理设备,其通过机器人样品处理功能引起自动过程操作事件; 提供清除溶剂,例如 能够降低嵌入介质的熔点和/或溶解嵌入介质的有机溶剂; 在自动化样品处理装置中加载具有嵌入式生物样品的多个载体; 将嵌入的生物样品暴露于清除溶剂,由此嵌入介质液化; 并且提供能够从所述生物样品中除去清除溶剂和液化的嵌入介质的洗涤溶液,所述清除溶剂和所述洗涤溶液是不混溶的。
    • 4. 发明申请
    • Cell Counting
    • 细胞计数
    • US20080194508A1
    • 2008-08-14
    • US11884247
    • 2006-02-06
    • Nanna K. ChristensenJesper LaursenLars Winther
    • Nanna K. ChristensenJesper LaursenLars Winther
    • A61K31/70C12Q1/06G01N33/569A61P43/00A61K31/59C12M1/00
    • G01N15/1459G01N33/543G01N33/54366G01N33/54393G01N2015/1486Y10T436/101666
    • The inventions relates to compositions and method for determining the absolute counts of cells per unit volume of a sample. Such a method comprises: (a) providing a container containing: (i) a predetermined quantity of microparticles; and (ii) a cell-binding agent; in which the microparticles are disposed in or on a matrix which adheres to at least one wall of the container such that substantially all the microparticles are thereby attached to the container; (b) adding a known volume of sample to the container; (c) determining the ratio of microparticles to cells by counting microparticles and cells in a volume of the sample; and (d) determining the absolute count of cells by multiplying the number of cells per microparticle by the concentration of microparticles in the sample. Preferably, the matrix retains substantially all the microparticles in or on the container during routine handling, including inversion, of the container, in the absence of mechanical retaining means such as a retainer grid in the container.
    • 本发明涉及用于确定样品每单位体积的细胞的绝对计数的组合物和方法。 这种方法包括:(a)提供容器,其包含:(i)预定量的微粒; 和(ii)细胞结合剂; 其中微粒设置在基质中或基体上,该基质附着在容器的至少一个壁上,使得基本上所有的微粒从而附着到容器上; (b)向容器中加入已知体积的样品; (c)通过计数样品体积中的微粒和细胞来确定微粒与细胞的比例; 和(d)通过将每个微粒的细胞数乘以样品中微粒的浓度来确定细胞的绝对计数。 优选地,在没有诸如容器中的保持架网格的机械保持装置的情况下,基体在基本上将容器内的所有微粒保持在容器的常规处理(包括反转)中。
    • 8. 发明授权
    • Cell counting
    • 细胞计数
    • US08541227B2
    • 2013-09-24
    • US11884247
    • 2006-02-06
    • Nanna K ChristensenJesper LaursenLars Winther
    • Nanna K ChristensenJesper LaursenLars Winther
    • C12M1/34G01N33/543G01N31/22
    • G01N15/1459G01N33/543G01N33/54366G01N33/54393G01N2015/1486Y10T436/101666
    • The inventions relates to compositions and method for determining the absolute counts of cells per unit volume of a sample. Such a method comprises: (a) providing a container containing (i) a predetermined quantity of microparticles; and (ii) a cell-binding agent; in which the microparticles are disposed in or on a matrix which adheres to at least one wall of the container such that substantially all the microparticles are thereby attached to the container; (b) adding a known volume of sample to the container; (c) determining the ratio of microparticles to cells by counting microparticles and cells in a volume of the sample; and (d) determining the absolute count of cells by multiplying the number of cells per microparticle by the concentration of microparticles in the sample. Preferably, the matrix retains substantially all the microparticles in or on the container during routine handling, including inversion, of the container, in the absence of mechanical retaining means such as a retainer grid in the container.
    • 本发明涉及用于确定样品每单位体积的细胞的绝对计数的组合物和方法。 这种方法包括:(a)提供容器,其容纳(i)预定量的微粒; 和(ii)细胞结合剂; 其中微粒设置在基质中或基体上,该基质附着在容器的至少一个壁上,使得基本上所有的微粒从而附着到容器上; (b)向容器中加入已知体积的样品; (c)通过计数样品体积中的微粒和细胞来确定微粒与细胞的比例; 和(d)通过将每个微粒的细胞数乘以样品中微粒的浓度来确定细胞的绝对计数。 优选地,在没有诸如容器中的保持架网格的机械保持装置的情况下,基体在基本上将容器内的所有微粒保持在容器的常规处理(包括反转)中。
    • 10. 发明申请
    • Standard
    • 标准
    • US20060154234A1
    • 2006-07-13
    • US10563820
    • 2004-07-08
    • Lars WintherKunt Pll
    • Lars WintherKunt Pll
    • C12Q1/00C12Q1/68G01N33/567
    • G01N33/5005C12Q1/6841G01N1/36G01N33/54346G01N33/54353G01N33/54386G01N33/96G01N2001/2893G01N2496/00C12Q2545/113
    • Disclosed is a reference standard for a detectable entity, the reference standard comprising a support medium, such as an embedding medium, a compact particle having a compact shape with a quantity of detectable entity coupled thereto and supported by the medium, in which the compact particle is a biological, such as a cellular compact particle. We also disclose a reference standard for a detectable entity, the reference standard comprising a support medium, such as an embedding medium, a compact particle having a compact shape with a quantity of detectable entity coupled thereto and supported by the medium, in which the compact particle is a non-biological compact particle, such as a non-cellular compact particle having cell-like dimensions, preferably less than 1.5 mm.
    • 公开了可检测实体的参考标准,参考标准包括支持介质,例如嵌入介质,具有紧凑形状的致密颗粒,其具有与其连接并由介质支持的可检测实体的量,其中致密颗粒 是生物的,例如细胞紧密颗粒。 我们还公开了可检测实体的参考标准,参考标准包括支持介质,例如嵌入介质,具有紧凑形状的致密颗粒,其具有与其连接并由介质支持的可检测实体的量,其中紧凑型 颗粒是非生物致密颗粒,例如具有细胞样尺寸,优选小于1.5mm的非细胞致密颗粒。