论文标题

经线和纬线接线方法,用于快速,可修改,自我对准和无键的多电极微流体传感器的制造

Warp and Weft Wiring method for rapid, modifiable, self-aligned, and bonding-free fabrication of multi electrodes microfluidic sensors

论文作者

Olyanasab, Ali, Meskar, Zahra, Annabestani, Mohsen, Shaegh, Ali Mousavi, Fardmanesh, Mehdi

论文摘要

随着微流体成为生物医学传感器的一部分,对微流体设备的快速制造的需求已变得越来越重要。本文使用铜线的经线和纬线(www),提出了一种新型的低成本方法,用于快速,自我对准,无粘结和可修改的多电源微流体传感器的制造。所有提出的功能都是有希望的,强烈建议用于开发护理测试(POCT),而大多数常规方法的机会很低,从研究实验室出来,并且在POCTS开发中没有任何作用。为了有实验性的概念证明,提出的芯片被制造并通过两组实验进行了测试,这些实验显示了水质管理,卫生,生物医学阻抗测量,细胞分析,流式细胞仪等的潜在应用。

The need for rapid fabrication of microfluidic devices has become increasingly critical as microfluidics become part of biomedical sensors. Using Warp and Weft Wiring (WWW) of copper wires, this paper presents a novel low-cost method for rapid, self-aligned, bonding-free, and modifiable fabrication of multi-electrodes microfluidic sensors. All the proposed features are promising and highly recommended for the development of Point-of-Care Tests (POCTs), while most of the conventional methods have low chances of coming out of the research labs and play no role in POCTs development. To have an experimental proof of concept, the proposed chip was fabricated and then tested with two sets of experiments that showed the potential applications of water quality management, hygiene, biomedical impedance measurement, cell analysis, flow cytometry, etc.

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