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Novel application of Joule heating to maintain biocompatible temperatures in a fully integrated electromagnetic cell sorting system

机译:焦耳加热在完全集成的电磁细胞分选系统中保持生物相容性温度的新应用

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摘要

Manipulation of magnetically labeled cells in a microfluidic channel is becoming a very important technique in the field of biomedical science. A microfabricated electromagnet produces a large magnetic field gradient in a cell sorting system. The microfabricated electromagnet generates Joule heating so it causes unnecessary heat-up in the device, which has been problematic for the development of a Lab-On-a-Chip (LOC). In this paper, we present a new application of Joule heating to supply thermal energy to an active area of a microfluidic device to increase the internal temperature of the device from ambient to a biocompatible temperature, e.g. 37 degrees C. The temperature is maintained in conjunction with coolant. We analyzed the temperature distribution of the device numerically and the results were in good agreement with the experimental data. Our approach will facilitate development of cell chips such as a micro-mammalian cell culture or electromagnetic micro-cell sorter.
机译:在微流体通道中操纵磁性标记的细胞正成为生物医学领域中非常重要的技术。微型电磁体会在细胞分选系统中产生较大的磁场梯度。微型电磁体会产生焦耳热,因此会在设备中造成不必要的加热,这对于芯片实验室(LOC)的开发一直存在问题。在本文中,我们提出了焦耳热的新应用,以向微流体设备的活动区域提供热能,以将设备的内部温度从环境温度提高到生物相容性温度,例如37摄氏度。与冷却剂一起保持温度。我们用数值方法分析了器件的温度分布,结果与实验数据吻合良好。我们的方法将促进细胞芯片的开发,例如微哺乳动物细胞培养或电磁微细胞分选仪。

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