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Measurement of the microscopic viscosities of microfluids with a dynamic optical tweezers system

机译:用动态光镊系统测量微流体的微观粘度

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摘要

Viscosity coefficients of microfluids—Newtonian and non-Newtonian—were explored through the rotational motion of a particle trapped by optical tweezers in a microflute. Unlike conventional methods based on viscometers, our microfluidic system employs samples of less than 30 µl to complete a measurement. Viscosity coefficients of ethanol and fetal bovine serum, as typical examples of Newtonian and non-Newtonian fluids, were obtained experimentally, and found to be in excellent agreement with theoretical predictions. Additionally, a practical application to a DNA solution with incremental ethidium bromide content was employed and the results are consistent with clinical data, indicating that our system provides a potentially important complementary tool for use in such biological and medical applications.
机译:通过微镊子中由光学镊子捕获的粒子的旋转运动,探索了微流体(牛顿和非牛顿)的粘度系数。与传统的基于粘度计的方法不同,我们的微流体系统采用小于30 µl的样品来完成测量。通过实验获得了作为牛顿流体和非牛顿流体的典型实例的乙醇和胎牛血清的粘度系数,发现它们与理论预测非常吻合。另外,使用了具有递增的溴化乙锭含量的DNA溶液的实际应用,其结果与临床数据一致,这表明我们的系统为此类生物学和医学应用提供了潜在的重要补充工具。

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