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首页> 外文期刊>Analytical and Bioanalytical Chemistry >Hydrodynamic and electrical considerations in the design of a four-electrode impedance-based microfluidic device
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Hydrodynamic and electrical considerations in the design of a four-electrode impedance-based microfluidic device

机译:基于四电极阻抗的微流体装置设计中的流体动力和电气考虑

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摘要

A four-electrode impedance-based microfluidic device has been designed with tunable sensitivity for future applications to the detection of pathogens and functionalized microparticles specifically bound to molecular recognition molecules on the surface of a microfluidic channel. In order to achieve tunable sensitivity, hydrodynamic focusing was employed to confine the electric current by simultaneous introduction of two fluids (high- and low-conductivity solutions) into a microchannel at variable flow-rate ratios. By increasing the volumetric flow rate of the low-conductivity solution (sheath fluid) relative to the high-conductivity solution (sample fluid), increased focusing of the high-conductivity solution over four coplanar electrodes was achieved, thereby confining the current during impedance interrogation. The hydrodynamic and electrical properties of the device were analyzed for optimization and to resolve issues that would impact sensitivity and reproducibility in subsequent biosensor applications. These include variability in the relative flow rates of the sheath and sample fluids, changes in microchannel dimensions, and ionic concentration of the sample fluid. A comparative analysis of impedance measurements using four-electrode versus two-electrode configurations for impedance measurements also highlighted the advantages of using four electrodes for portable sensor applications.
机译:设计了一种基于四电极阻抗的微流体装置,其灵敏度可调,可用于将来检测病原体和功能化微粒,这些微粒与微流体通道表面上的分子识别分子特异性结合。为了获得可调的灵敏度,通过将两种流体(高电导率和低电导率溶液)同时以可变的流量比引入微通道,利用流体动力聚焦来限制电流。通过增加低电导率溶液(鞘液)相对于高电导率溶液(样品流体)的体积流速,可以实现高电导率溶液在四个共面电极上的聚焦增加,从而在阻抗询问期间限制电流。分析了该设备的流体力学和电气特性,以进行优化并解决可能影响后续生物传感器应用中的灵敏度和可重复性的问题。这些包括护套和样品流体的相对流速的可变性,微通道尺寸的变化以及样品流体的离子浓度。使用四电极和两电极配置进行阻抗测量的阻抗测量结果的比较分析也凸显了在便携式传感器应用中使用四电极的优势。

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