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Magnetic flow cytometry for single cell detection

A magnetic flow and cell technology, applied in the field of through-flow blood cell counting, can solve the problem that the positive signal cannot be uniquely traced back to a single cell, and achieve the effect of reducing the background signal

Active Publication Date: 2016-08-03
SIEMENS AG
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

But the positive signal here cannot be uniquely traced back to a single cell

Method used

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  • Magnetic flow cytometry for single cell detection
  • Magnetic flow cytometry for single cell detection
  • Magnetic flow cytometry for single cell detection

Examples

Experimental program
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Embodiment Construction

[0062] exist figure 1 The course of the measurement signal over time t shown in , firstly shows a positive measurement deflection and then a negative measurement deflection of the same magnitude A. This signal is formed when a single cell 10 moves via a single measuring resistor. Flow in time towards 20 in figure 2 shown in . figure 2 shows that at three instants t 1 , t 2 and t 3 of cells10. Cell 10 at time interval t 1 to t 3 in the measured resistance. Furthermore, the scattered field of the cell 10 is shown. Here, only the in-plane field (in-plane), ie the field parallel to the direction of motion indicated by the velocity arrow v, is registered by the measuring resistor. Fields perpendicular to the direction of motion and perpendicular to the plane in which the resistors lie are not picked up by the sensor. The external field for accumulating the cells 10 on the resistor is aligned exactly in this direction perpendicular to the direction of motion.

[0063]...

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Abstract

The present invention relates to a flow cytometer. The method according to the invention ensures unique single cell detection and cell measurement of cells in flow. For this purpose, a pair of magnetoresistive components is used to generate characteristic measurement signal samples from which information can be obtained: the measured deflection quantity, the measured deflection distance, the measured deflection amplitude, the measured deflection direction and the measured deflection direction sequence. From this, the flow velocity and cell diameter can be determined. Furthermore, the signal-to-noise ratio is determined based on the measured deflection amplitude.

Description

technical field [0001] The present invention relates to a flow-through blood cell count. Background technique [0002] Flow-through measurements are known in the field of cytometry and cell detection, in which a magnetically labeled analyte flows through a magnetic sensor. Here, however, the positive signal cannot be uniquely traced back to individual cells. Thus, cells incorrectly labeled by lateral selection of magnetic markers also give rise to positive signals. In addition, free markers can also cause positive signals. Cell aggregation in turn can only result in a positive signal and cannot be recognized per se. Contents of the invention [0003] The technical problem to be solved by the present invention is to reduce background signals and avoid false positive signals in magnetic flow cytometry. [0004] The aforementioned technical problem is solved by the method according to claim 1 and the device according to claim 9 . Developments of the method and advantageo...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N15/10
CPCG01N15/1031G01N27/72
Inventor O.海登M.J.赫卢S.F.特德
Owner SIEMENS AG