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    • 23. 发明申请
    • APPARATUS AND METHOD FOR IDENTIFYING MAGNETICALLY MARKED MICRO OBJECTS
    • 用于识别磁性标记的微物体的装置和方法
    • US20130063141A1
    • 2013-03-14
    • US13698526
    • 2011-05-13
    • Karsten HiltawskyRoland Weiss
    • Karsten HiltawskyRoland Weiss
    • G01R33/02
    • G01N33/54326G01N15/1468G01N35/00069G01N35/0098
    • An apparatus is disclosed for identifying magnetically marked micro objects, in particular biological micro objects, preferably tumor cells. In at least one embodiment, the apparatus includes a carrier for at least one micro object; a device for applying a region with a magnetic gradient field, wherein the gradient field comprises at least one zero point; a device for applying the micro object with a high frequency magnetic field, in particular at the site of the zero point; a device for relative movement of the carrier and region to one another; a device for receiving a change in a magnetic flux through the micro object; a device for evaluating the received change in the magnetic flux and for identifying the position of the micro object; and a device for in particular automatically analyzing the micro object.
    • 公开了用于识别磁性标记的微物体,特别是生物微物体,优选肿瘤细胞的装置。 在至少一个实施例中,该装置包括用于至少一个微物体的载体; 用于施加具有磁梯度场的区域的装置,其中所述梯度场包括至少一个零点; 用于施加具有高频磁场的微物体的装置,特别是在零点的位置; 载体和区域相对运动的装置; 用于接收通过微物体的磁通量变化的装置; 用于评估接收的磁通变化并识别微物体的位置的装置; 以及用于特别地自动分析微物体的装置。
    • 24. 发明申请
    • DETECTION OF LIVING, CIRCULATING, OR DISSEMINATED CELLS OR CELL CONSTITUENTS IN BLOOD OR BONE MARROW FOLLOWING FILTRATION OF BLOOD
    • 在血液过滤中检测血液或骨髓中的生命,循环或破裂细胞或细胞因子
    • US20120021435A1
    • 2012-01-26
    • US13187792
    • 2011-07-21
    • Karsten HiltawskyEvamaria Stütz
    • Karsten HiltawskyEvamaria Stütz
    • G01N21/64G01N21/17C12M1/40G01N33/53C12M1/34
    • G01N33/56966
    • A method is disclosed for detecting circulating cells in a body fluid sample. In at least one embodiment, the method includes: filtering the body fluid sample through a porous membrane; transferring the porous membrane with the cells located thereon as filter residue to a cell culture vessel, wherein one surface of the cell culture vessel is coated with a first antibody which is directed to a first cell-specific marker; incubating the porous membrane in the cell culture vessel with a cell culture medium, wherein cell-specific markers released by any cells present are bound by the first antibody to produce a bound first cell-specific marker on the surface coated with the first antibody; removing the porous membrane with the cells located thereon as filter residue from the cell culture vessel; detecting the bound first cell-specific marker on the surface coated with the first antibody.
    • 公开了一种用于检测体液样品中的循环细胞的方法。 在至少一个实施方案中,该方法包括:通过多孔膜过滤体液样品; 将位于其上的细胞的多孔膜作为过滤器残留物转移到细胞培养容器中,其中细胞培养容器的一个表面涂覆有针对第一细胞特异性标记物的第一抗体; 用细胞培养基培养细胞培养容器中的多孔膜,其中由任何存在的细胞释放的细胞特异性标记物被第一抗体结合,以在被第一抗体包被的表面上产生结合的第一细胞特异性标记; 用位于其上的细胞从细胞培养容器中除去多孔膜作为过滤残留物; 检测被第一抗体包被的表面上结合的第一细胞特异性标记。
    • 27. 发明申请
    • DEVICE AND METHOD TO EXTRACT MATERIAL OF A MATERIAL RESERVOIR
    • 提取材料储存材料的装置和方法
    • US20100076340A1
    • 2010-03-25
    • US12566009
    • 2009-09-24
    • Gerald EcksteinKarsten HiltawskyHeinz-Ingo SchneiderDaniel Sickert
    • Gerald EcksteinKarsten HiltawskyHeinz-Ingo SchneiderDaniel Sickert
    • A61B10/02A61B10/00
    • A61B10/0045A61B10/007A61B10/0233A61B2010/008A61B2017/00336
    • A device to extract material of a material reservoir has at least one guide tube with internal space and with an inner wall surrounding the internal space; at least one sled that can implement a sled translation movement in the inner space along a longitudinal alignment of the guide tube; and at least one collection unit with collection surface to collect the material. The collection unit and the sled are coupled to one another such that the sled translation movement of the sled leads to a collection translation movement of the collection surface of the collection unit, and such that the collection surface can be inserted into the material reservoir and be withdrawn from the material reservoir. A rotation mechanism that is operated manually or automatically can be provided with which a wire, which acts as a collection device, can be displaced in vivo over a length of 1 mm to up to 2 cm within a venous cannula. The invention is used in medical technology, for example, to collect cells from a reservoir in the form of a bodily fluid.
    • 提取材料储存器材料的装置具有至少一个具有内部空间的引导管和围绕内部空间的内壁; 至少一个可以沿着导管的纵向排列在内部空间中实现滑动平移运动的滑板; 以及至少一个具有收集表面的收集​​单元以收集材料。 收集单元和滑雪板彼此联接,使得滑板的滑轨平移运动导致收集单元的收集表面的收集​​平移运动,并且使得收集表面可以插入材料储存器中并且被 从物料库撤出。 可以提供手动或自动操作的旋转机构,其中用作收集装置的线可以在静脉插管内在1mm至高达2cm的长度内在体内移位。 本发明用于医疗技术,例如以体液的形式从储存器收集细胞。