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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Microrheology of complex fluids using optical tweezers: a comparison with macrorheological measurements
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Microrheology of complex fluids using optical tweezers: a comparison with macrorheological measurements

机译:使用光学镊子的复杂流体的微流变学:与宏观流变学测量的比较

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The increasing interest in the mechanical properties of complex systems at mesoscopic scale has recently fueled the development of new experimental techniques, collectively indicated as microrheology. Unlike bulk-based approaches (macrorheology), these new techniques make use of micrometric probes (usually microspheres) which explore the mechanical properties of the surrounding medium. In this paper we discuss the basic idea of microrheology and we will focus on one specific technique based on optical tweezers (OT). The discussion starts from Newtonian fluids to tackle the more general case of complex fluids, also showing results of these techniques on solutions of a relevant biomolecule: hyaluronic acid (HA). In particular, we study the viscoelastic properties of low molecular weight HA (155 kDa) at low ionic strength over an extended frequency range (0.1-1000 Hz) and in a wide range of concentrations (0.01-20 mg ml(-1)), which include both the dilute and semidilute regime. In the concentration range here explored and within the test frequencies covered by our techniques, samples prevalently exhibit a viscous behavior, the elastic contribution becoming significant at the highest concentrations. By comparing OT outcomes to those obtained by a traditional rheometer, we found that they were in good agreement in the overlapping frequency range of the two techniques, thus confirming the reliability of the microrheological approach.
机译:近来,对介观尺度的复杂系统的机械性能的兴趣日益浓厚,这推动了新实验技术(统称为微观流变学)的发展。与基于体积的方法(宏观流变学)不同,这些新技术利用了测微探针(通常是微球)来探测周围介质的机械特性。在本文中,我们讨论了微流变学的基本概念,并将重点介绍一种基于光镊(OT)的特定技术。讨论从牛顿流体开始,以解决更复杂的复杂流体问题,还显示了这些技术在相关生物分子:透明质酸(HA)溶液中的结果。特别是,我们研究了低分子量HA(155 kDa)在较低的离子强度,扩展的频率范围(0.1-1000 Hz)和宽范围的浓度(0.01-20 mg ml(-1))下的粘弹性。 ,包括稀释和半稀释体制。在这里探索的浓度范围内,并且在我们的技术所涵盖的测试频率范围内,样品普遍表现出粘性,在最高浓度下弹性贡献变得明显。通过将OT结果与传统流变仪获得的结果进行比较,我们发现它们在两种技术的重叠频率范围内具有很好的一致性,从而证实了微流变方法的可靠性。

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