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Hydrodynamic focusing of conducting fluids for conductivity-based biosensors

机译:用于基于电导率的生物传感器的导电流体的流体动力聚焦

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摘要

Hydrodynamic focusing of a conducting fluid by a non-conducting fluid to form a constricted current path between two sensing electrodes is implemented in order to enhance the sensitivity of a 4-electrode conductance-based biosensor. The sensor has a simple two-inlet T-junction design and performs four-point conductivity measurements to detect particles immobilized between the sensing electrode pair. Computational simulations conducted in conjunction with experimental flow studies using confocal microscopy show that a flat profile for the focused layer is dependent on the Reynolds number for the chosen flow parameters. The results also indicate that a flat focused layer is desirable for both increased sensitivity as well as surface-binding efficiency. Proof of concept for conductance measurements in a hydrodynamically focused conducting fluid was demonstrated with entrapped magnetic beads. Published by Elsevier B.V.
机译:为了增强基于四电极电导的生物传感器的灵敏度,实现了通过非导电流体对导电流体进行流体动力学聚焦以在两个感测电极之间形成狭窄的电流路径。该传感器采用简单的两入口T型结设计,并执行四点电导率测量,以检测固定在传感电极对之间的颗粒。使用共聚焦显微镜结合实验流动研究进行的计算模拟表明,聚焦层的平坦轮廓取决于所选流动参数的雷诺数。结果还表明,平坦的聚焦层对于提高灵敏度和表面结合效率都是理想的。截留的磁珠证明了在流体动力学聚焦的导电流体中进行电导测量的概念证明。由Elsevier B.V.发布

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