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A facile method for microfluidic metering and transport

机译:用于微流体计量和运输的容易方法

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摘要

Accurate metering and transport of samples and reagents are a critical process in many microfluidic applications, such as biochemical analysis, diagnostics and drug delivery. However, as the liquid volume to be processed is usually rather small, its sensoring and metering remains a challenging problem. Though some studies on this issue have been reported so far, there is still much room for improvement regarding the metering accuracy, system simplicity and control flexibility. In this work, we propose a simple, automatic and cost-effective method for microfluidic metering and transport. To improve the accuracy, the geometric metering approach with hydrophobic valves of minimum dead volumes is adopted. Besides, an on-chip Bernoulli pump is designed to reduce the hardware requirement, and a pulse width modulation (PWM) scheme is used to facilitate the operation. Testing results show that for metering of 20 mu L liquid, the averaged error is - 1.3%, the relative standard deviation is 0.42%. The liquid transport can also be well regulated via PWM method.
机译:准确的计量和样品和试剂的运输是许多微流体应用中的关键过程,例如生物化学分析,诊断和药物递送。然而,随着要加工的液体体积通常相当小,其传感器和计量仍然是一个具有挑战性的问题。虽然迄今为止已经报告了一些关于这个问题的研究,但有很多关于计量准确性,系统简单和控制灵活性的空间。在这项工作中,我们提出了一种简单,自动和经济高效的微流体计量和运输方法。为了提高准确性,采用了具有最小死体积的疏水阀的几何计量方法。此外,芯片伯努利泵旨在降低硬件要求,并且使用脉冲宽度调制(PWM)方案来促进操作。测试结果表明,对于20μl液体的计量,平均误差为-1.3%,相对标准偏差为0.42%。液体传输也可以通过PWM方法进行良好调节。

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