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Batik-inspired wax patterning for cloth-based microfluidic device

机译:蜡染启发蜡图案的布基微流控设备

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This paper describes a new technique of fabricating low-cost and flexible microfluidic device for point of care diagnostics in remote region or developing countries. The technique is inspired from a traditional and ancient textile dye-resist technique, namely batik. In batik technique, wax is used to protect regions of textile material from the colouring dye(s). Similarly, we modify the wax content in cloth for defining hydrophilic channel for controlling fludic flow at micro liter volume level. Separate fluids can be dropped at different sites, and flown into a reaction site for inducing diffusion-induced mixing. As a comparison, we also fabricated cloth microfluidic device using a technique similar to that proposed by previous researchers to build 3-dimensional (3D) paper-based microfluidic device. The device made using our proposed technique can give clearer colour change display due to the mixing of different dyes. Such device could serve as a low-cost analytical device based on colorimetric (colour change) assay.
机译:本文介绍了一种制造低成本,灵活的微流控设备的新技术,该设备可用于偏远地区或发展中国家的即时诊断。该技术的灵感来自传统和古代的纺织品抗染技术,即蜡染。在蜡染技术中,蜡用于保护纺织材料区域免受着色染料的侵害。同样,我们修改布料中的蜡含量以定义亲水通道,以控制微升体积水平的流体流动。可以将单独的流体滴到不同的位置,然后流入反应位置以诱导扩散诱导的混合。作为比较,我们还使用类似于以前的研究人员提出的技术制造布料微流体装置,以构建基于3D(3D)纸张的微流体装置。由于混合了不同的染料,使用我们提出的技术制造的设备可以提供更清晰的变色显示。这样的设备可以用作基于比色(颜色变化)测定的低成本分析设备。

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