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Automatic bio-sampling system based on micro-injection pump and pneuamtic micro valves

机译:基于微注射泵和气动微阀的自动生物采样系统

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Synthetic biology is a promising research field. As many operations in the laboratory are still manual or semi automatic, experimenters spend a considerable amount of time supervising or advancing experimental procedures. In addition, manual operation also comes with an increased risk of contamination and human error. Research into automatic experiments is therefore important to increase efficiency and speed of Biological experiments. Fluid handling is a common procedure in synthetic biological experiments, e.g. when adding a reagent to a cell culture. This paper proposes an automatic system based on micro-pump and pneumatic micro valve designed for a flexible modular system. Scientists can set up experimental procedures in software, and the system will add reagents automatically and accurately. The system's micro-injection pump is controlled by a stepper motor and achieves high accuracy by using feedback from an angular encoder. Micro pneumatic valves with elastic membranes operated by pressurized air are used to route fluid froth pump to different locations in the system. Experiments showed that the system can dispense liquids within less than ± 2% of the target volume. By comparison, the manually operated precision pipette was within ± 3%of the target volume. The system has thus proven suitable for automated biological experiments.
机译:合成生物学是一个有前途的研究领域。由于实验室中的许多操作仍是手动或半自动的,因此实验人员花费大量时间来监督或推进实验程序。此外,手动操作还会增加污染和人为错误的风险。因此,对自动实验的研究对于提高生物实验的效率和速度很重要。液体处理是合成生物学实验中的常见程序,例如向细胞培养物中添加试剂时。本文提出了一种基于微型泵和气动微阀的自动化系统,该系统是为柔性模块化系统设计的。科学家可以在软件中设置实验程序,系统会自动,准确地添加试剂。该系统的微注射泵由步进电机控制,并利用角度编码器的反馈实现高精度。带有通过压缩空气操作的弹性膜的微型气动阀用于将流体泡沫泵输送到系统中的不同位置。实验表明,该系统可以分配小于目标体积±2%的液体。相比之下,手动精密移液器在目标体积的±3%之内。因此,该系统已证明适用于自动化生物实验。

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