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Decoupling directed and passive motion in dynamic systems: particle tracking microrheology of sputum

机译:在动态系统中去耦和被动运动:痰的粒子跟踪微流学

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摘要

Probing the physical properties of heterogeneous materials is essential to understand the structure, function and dynamics of complex fluids including cells, mucus, and polymer solutions. Particle tracking microrheology is a useful method to passively probe viscoelastic properties on micron length scales by tracking the thermal motion of beads embedded in the sample. However, errors associated with active motion have limited the implementation to dynamic systems. We present a simple method to decouple active and Brownian motion, enabling particle tracking to be applied to fluctuating heterogeneous systems. We use the movement perpendicular to the major axis of motion in time to calculate rheological properties. Through simulated data we demonstrate that this method removes directed motion and performs equally well when there is no directed motion, with an average percent error of <1%. We use this method to measure glycerol-water mixtures to show the capability to measure a range of materials. Finally, we use this technique to characterize the compliance of human sputum. We also investigate the effect of a liquefaction agent used to prepare sputum for diagnostic purposes. Our results suggest that the addition of high concentration sodium hydroxide increases sample heterogeneity by increasing the maximum observed creep compliance.
机译:探究异质材料的物理性质对于理解复杂流体(包括细胞,粘液和聚合物溶液)的结构,功能和动力学至关重要。粒子跟踪微流变学是一种有用的方法,可通过跟踪嵌入样品中的微珠的热运动来被动地探测微米长度尺度的粘弹性。但是,与主动运动相关的错误将实现方式限制为动态系统。我们提出了一种将主动运动与布朗运动解耦的简单方法,从而可以将粒子跟踪应用于波动的异构系统。我们及时使用垂直于运动主轴的运动来计算流变特性。通过仿真数据,我们证明了该方法可以消除定向运动,并且在没有定向运动的情况下性能同样好,平均百分比误差<1%。我们使用这种方法测量甘油-水混合物,以显示测量各种材料的能力。最后,我们使用这种技术来表征人类痰液的顺应性。我们还研究了用于准备痰液以用于诊断目的的液化剂的作用。我们的结果表明,高浓度氢氧化钠的添加会通过增加最大观察到的蠕变顺应性来增加样品的异质性。

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