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Cell manipulation system based on a silicon micro force sensor with self-calibration from backside

机译:基于硅微力传感器的细胞处理系统,可从背面进行自我校准

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In this work a system for cell manipulation is presented. A two axis stage was arranged on an inverted microscope to place cells in focus. Cell manipulation can thereby be observed while the system automatically runs force controlled measurements. A high precision linear motor moves a silicon force sensor, which has been equipped with a stimulation tool e.g. a micro capillary for cell injection. The sensor is made of silicon and consists of a membrane with a boss structure, which enables measurements as low as 120 µN. For the first tests on the sensor, an injection capillary is mounted on the topside, while the backside is fixed to a printed circuit board (PCB) which has an integrated connection for the air pressure. An air pressure was applied under the membrane because the glass capillaries with outer diameters of at least 1 µm do not allow calibration via other force sensors. This setup allows a unique self-calibration of the mounted sensor system, before the measurements of the occurred forces on the cells during the penetration of the capillary.
机译:在这项工作中,提出了一种用于细胞操纵的系统。将两轴载物台布置在倒置显微镜上以使细胞聚焦。因此,在系统自动运行受力控制的测量时,可以观察到细胞操作。高精度线性电动机移动硅力传感器,该硅力传感器已配备有刺激工具,例如用于细胞注射的微毛细管。该传感器由硅制成,由具有凸台结构的膜组成,可以进行低至120 µN的测量。对于传感器的首次测试,将注射毛细管安装在顶侧,而将背面固定到具有集成式气压连接的印刷电路板(PCB)。在膜片下方施加气压是因为外径至少为1 µm的玻璃毛细管不允许通过其他力传感器进行校准。这种设置允许在毛细管穿透过程中测量发生在细胞上的力之前,对安装的传感器系统进行独特的自校准。

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