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METHOD AND DEVICE FOR OPTICAL DETECTION OF A MOVEMENT IN A BIOLOGICAL SAMPLE WITH A SPATIAL EXTENT

机译:用于光学检测具有空间范围的生物样本中的运动的方法和装置

摘要

The invention relates to a method and a device for optical in vitro detection of a movement in a biological sample with a spatial extent in the form of a three-dimensional cell and/or tissue culture or a cell cluster or a sample made of freely swimming microorganisms. The method comprises the following steps: (a) providing a receptacle for the sample (1), a light beam source (6), an optical unit (7, 8) and a detector (2), (a1) wherein the optical unit (7, 8) is embodied to illuminate the whole sample (1) in the receptacle with radiation emanating from the light beam source and to guide at least some of the radiation (11) of the light beam source (6), which is changed at any point within the sample (1) by an interaction with the sample (1) in terms of the beam direction thereof, the polarization state thereof and/or the diffraction pattern thereof, to a detection surface (2a) of the detector (2), and (a2) wherein the detector (2) is embodied to generate a measurement signal (9) in a manner dependent on the detected radiation, the time profile of which measurement signal specifies a time profile of an intensity of the detected radiation (11) and/or from which the time profile of the intensity of the detected radiation (11) is derivable; (b) illuminating the sample (1) with radiation from the light beam source; and (c) detecting a movement in the biological sample (1) in a manner dependent on a temporal change in the measurement signal (9).
机译:用于光学检测生物样品中空间运动的方法和装置技术领域本发明涉及一种用于光学体外检测三维空间细胞和/或组织培养物或细胞簇或自由游泳制成的样品形式的具有空间范围的生物样品中的运动的方法和装置。微生物。该方法包括以下步骤:(a)提供用于样品( 1 )的容器,光束源( 6 ),光学单元( 7 ,8 )和检测器( 2 ),(a1),其中的光学单元( 7、8 )用于照亮整个样品( 1 ),其中光束从光束源发出,并引导光束源( 6 的至少一部分辐射( 11 ) >),它通过与样品( 1 )相互作用而在样品( 1 )中的任何点发生改变,即其光束方向,偏振状态和/或其衍射图样,到达检测器( 2 )的检测表面( 2 a ),和(a2)检测器( 2 )被实施为以取决于所检测到的辐射的方式生成测量信号( 9 ),该测量信号的时间分布图指定了传感器的时间分布图。探测到的辐射强度( 11 )和/或从中可以得出检测到的辐射强度( 11 )的时间曲线; (b)用光束源发出的辐射照亮样品( 1 ); (c)以依赖于测量信号( 9 )的时间变化的方式检测生物样品( 1 )中的运动。

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