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    • 2. 发明申请
    • A TECHNIQUE FOR SIMULTANEOUSLY SORTING AND ALIGNING A BIOLOGICAL ENTITY IN A FLOW CELL
    • 一种在流动细胞中同时排列和排列生物实体的技术
    • WO2017157445A1
    • 2017-09-21
    • PCT/EP2016/055794
    • 2016-03-17
    • SIEMENS HEALTHCARE GMBH
    • HAYDEN, OliverRICHTER, LukasUGELE, MatthiasKÜHN, DanielaSTANZEL, Manfred
    • G01N15/14B01L3/00G01N15/02
    • A technique is presented for simultaneously sorting a first biological entity from a second biological entity and aligning the first biological entity, in a desired region within a flow chamber of a flow cell. The flow chamber has a rectangular cross-section. A bottom flow input module, a top flow input module and a sample input module provide a first fluid, a second fluid, and the sample, respectively, to the flow chamber. The sample laminarly flows sandwiched between the first and the second fluids. By controlling flow rate of the first and/or the second fluid the sample flow is aligned adjacent to but distinct from the desired region. An acoustic transducer generates a standing acoustic wave having pressure node linearly arranged along an axis passing through the desired region thus moving, i.e. sorting, and simultaneously orienting, the first biological entity from the sample flow into the desired region.
    • 提出了一种用于同时从第二生物实体分拣第一生物实体并将第一生物实体排列在流动池的流动室内的期望区域中的技术。 流动室具有矩形横截面。 底部流动输入模块,顶部流动输入模块和样本输入模块分别向流动室提供第一流体,第二流体和样本。 样品层流地夹在第一流体和第二流体之间。 通过控制第一流体和/或第二流体的流速,样品流被排列成与所需区域相邻但不同。 声学换能器产生具有沿着穿过期望区域的轴线线性布置的压力节点的驻声波,因此将第一生物实体从样品流动移动,即分选和同时定向到期望区域。
    • 4. 发明申请
    • AN INTERFEROMETRIC MICROSCOPY ARRANGEMENT WITH A POINT-LIKE BEAM SPLITTING LAYER
    • 具有点状束分裂层的干涉仪显微镜安排
    • WO2018007101A1
    • 2018-01-11
    • PCT/EP2017/064213
    • 2017-06-12
    • SIEMENS HEALTHCARE GMBH
    • SCHICK, AntonHAYDEN, OliverSCHMIDT, Oliver
    • G03H1/04G01B9/021G01B9/02G01N21/45G02B21/36G02B21/00G01B9/04G03H1/00
    • G01B9/04G01B9/02001G01B9/02034G02B21/0056G02B21/361G02B27/108G03H1/0443G03H1/0493G03H2001/005G03H2001/0445
    • An interfere) metric microscopy arrangement (1) is presented having an objective lens (20) that receives a light beam (9) emerging after sample interaction, wherefrom the light beam (9) is received by a beam splitter unit (30), positioned at a focal length (22) of the objective lens (20), the beam splitter unit (30) having a transparent substrate (32) and a point-like beam-splitting layer (34) that splits a part of the light beam (9) into a spatially filtered reference beam (40) and an object beam (50). Thereafter, a reference beam tube lens (60) and an object beam tube lens (70) receive the reference (40) and the object (50) beams, respectively. A beam combiner unit (80) having a transparent substrate (82) and a beam-combining layer (84) receives the reference (40) and the object (50) beams from the reference (60) and the object (70) beam tube lenses, respectively, and combines the reference (40) and the object (50) beams to form pattern-generating beam (99) directed towards the optical detector (90) to form an interference pattern thereon.
    • 提供具有物镜(20)的干涉)度量显微镜装置(1),所述物镜(20)接收在样品相互作用之后出现的光束(9),其中光束(9) (30),所述分束器单元(30)具有透明衬底(32)和点状分束层(34),所述点分束器单元(30)位于所述物镜(20)的焦距(22) 将光束(9)的一部分分成空间滤波的参考光束(40)和物体光束(50)。 之后,参考光束管透镜(60)和物镜光管透镜(70)分别接收参考光束(40)和物体(50)光束。 具有透明衬底(82)和光束组合层(84)的光束组合器单元(80)接收来自参考(60)和物体(70)光束管的参考物体(40)和物体(50) (40)和物体(50)光束组合以形成指向光学检测器(90)的图案生成光束(99)以在其上形成干涉图案。
    • 5. 发明申请
    • ALIGNING A NON-SPHERICAL BIOLOGICAL ENTITY IN A SAMPLE FLOW USING AMBIENT VISCOELASTIC FLUID FLOWS
    • 使用环境粘弹性流体流动来排列样品流中的非球形生物实体
    • WO2017167361A1
    • 2017-10-05
    • PCT/EP2016/056955
    • 2016-03-30
    • SIEMENS HEALTHCARE GMBH
    • HAYDEN, OliverRICHTER, LukasUGELE, Matthias
    • G01N15/14B01L3/00
    • A technique is presented for aligning, in a desired region within a flow chamber of a flow cell, a non-spherical biological entity carried in a sample. The flow chamber has a rectangular cross-section. A bottom flow input module, a top flow input module and a sample input module provide a viscoelastic first fluid, a second viscoelastic fluid, and the sample, respectively, to the flow chamber. The first and the second viscoelastic fluids laminarly flow along a bottom and a top wall of the flow chamber and the sample laminarly flows sandwiched between them. By controlling rate of flow of the first and/or the second viscoelastic fluids the sample flow, and thus the non-spherical biological entity, is focused in the desired region. A gradient of sheer within the sample flow set up due to the first and second viscoelastic fluids orients the non-spherical biological entity in the desired region.
    • 提出了一种技术,用于在流动池的流动室内的期望区域中对准样品中携带的非球形生物实体。 流动室具有矩形横截面。 底部流动输入模块,顶部流动输入模块和样本输入模块分别向流动室提供粘弹性第一流体,第二粘弹性流体和样本。 第一和第二粘弹性流体沿流动室的底部和顶壁分层流动,并且样品层流地夹在它们之间。 通过控制第一和/或第二粘弹性流体的流动速率,样品流动并且因此非球形生物实体被聚焦在期望的区域中。 由于第一和第二粘弹性流体而建立的样品流内的陡度梯度将非球形生物实体定向在期望区域中。
    • 9. 发明申请
    • AN INTERFEROMETRIC MICROSCOPY ARRANGEMENT FOR INSPECTING A SAMPLE USING TWO ILLUMINATION SOURCES
    • 用于使用两个照明源检查样品的干涉显微镜装置
    • WO2017041841A1
    • 2017-03-16
    • PCT/EP2015/070627
    • 2015-09-09
    • SIEMENS HEALTHCARE GMBH
    • SCHICK, AntonHAYDEN, OliverSCHMIDT, Oliver
    • G02B21/16G02B21/18G01B9/02
    • G02B21/18G01B9/02007G01B9/02024G01B9/02027G01B9/02097G02B21/16
    • An interferometric microscopy arrangement for inspecting a sample includes a first illumination source providing a collimated first light beam, a second illumination source providing a second light beam focused onto the sample, a selection filter, an interferometric unit and an optical detector system. The selection filter directs the first and the second light beam towards the sample. The first and the second light beams after sample interaction are received by the interferometric unit. The interferometric unit generates from the first light beam a first object beam and a first reference beam, filters out object information from the first reference beam. The interferometric unit directs the first object beam, the first reference beam, and the second light beam towards the optical detector system. The optical detector assembly detects an interference pattern formed from the first light beam and also detects an optical pattern formed from the second light beam.
    • 用于检查样本的干涉式显微镜装置包括提供准直的第一光束的第一照明源,提供聚焦到样本上的第二光束的第二照明源,选择滤光器,干涉测量单元和光学检测器系统。 选择滤波器将第一和第二光束导向样品。 样品相互作用后的第一和第二光束被干涉仪接收。 该干涉单元从第一光束产生第一物体光束和第一参考光束,从第一参考光束滤出物体信息。 干涉测量单元将第一物体光束,第一参考光束和第二光束引导到光学检测器系统。 光检测器组件检测由第一光束形成的干涉图案,并且还检测由第二光束形成的光学图案。