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Conditioning lab on PCB to control temperature and mix fluids at the microscale for biomedical applications

机译:PCB上的调节实验室可控制温度并在微尺度上混合流体,以用于生物医学应用

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In this paper, a Lab on PCB (LOP) for conditioning the medium of cell culture is presented. The target is to control its temperature at 37 °C ± 0.1 °C, to assure the appropriate temperature conditions around the cells. The Lab on PCB is also able to mix other fluids into the medium, if it is necessary. The integration of a PDMS microfluidic circuit over a Printed Circuit Board (PCB) results in a smart platform with a low-cost fabrication process. The microfluidic platform of the system includes three inlet ports, microchannels, a micromixer and one outlet port. The correct operation of the LOP assures that the medium is within the adequate conditions in the outlet port. The PCB incorporates a NTC thermistor to measure the temperature, and microheaters that are activated if the medium temperature is under 36.9 °C. The microheater fabrication process consists of patterning the copper layer of the PCB. The NTC thermistor is welded into copper pads and embedded in PDMS to avoid the contact with the fluid. The system is designed to allow the mixing and heating of fluids and it is connected to a cell culture Lab on PCB, and to an electronic control module, which include the electronic adapting circuit of the NTC and the control of the microheaters. The results of this study concerning the heating and mixing of fluids and the monitoring of temperature are successful.
机译:在本文中,提出了一种用于调节细胞培养培养基的PCB实验室(LOP)。目标是将其温度控制在37°C±0.1°C,以确保电池周围具有适当的温度条件。如果需要的话,PCB实验室也可以将其他液体混合到介质中。 PDMS微流体电路在印刷电路板(PCB)上的集成形成了一个具有低成本制造工艺的智能平台。该系统的微流体平台包括三个入口,一个微通道,一个微型混合器和一个出口。 LOP的正确操作可确保介质在出口端口中处于适当的条件内。 PCB包含一个NTC热敏电阻以测量温度,并且在介质温度低于36.9°C时激活微型加热器。微型加热器的制造过程包括对PCB的铜层进行构图。 NTC热敏电阻焊接到铜垫中,并嵌入PDMS中,以避免与流体接触。该系统旨在允许流体的混合和加热,并且连接到PCB上的细胞培养实验室以及电子控制模块,该模块包括NTC的电子适配电路和微加热器的控制。关于流体的加热和混合以及温度监测的这项研究结果是成功的。

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