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光学相干粘度测定法。

Optical coherence viscometry.

作者信息

Liu Hsiao-Chuan, Urban Matthew W

机构信息

Department of Radiology, Mayo Clinic, Rochester, Minnesota 55905, USA.

出版信息

Appl Phys Lett. 2021 Apr 19;118(16):164102. doi: 10.1063/5.0048608. Epub 2021 Apr 20.

Abstract

We report a technique, named optical coherence viscometry (OCV), to measure the viscosity of Newtonian fluids in a noncontact manner. According to linear wave theory with small amplitudes, capillary waves are associated with fluid mechanical properties. To perform this measurement and avoid the overdamped effects of capillary waves in viscous fluids, transient acoustic radiation force was applied to generate capillary waves. Within a very limited field-of-view using optical coherence tomography, wave motion acquired in the time domain was analyzed using Fourier methods to study the wave velocity dispersion and attenuation relationships for capillary waves, which can reduce the fluid quantity drastically into tissue culture scale. We measure the viscosities of water, water-glycerol solutions with three concentrations, and biological plasma using the proposed OCV and compare the experimental results to theoretical calculations. OCV is sensitive to wave perturbations and can be a promising technique for measuring the viscosity of biological fluids and could be applied in future applications for measurements for lipid membranes in cell biology and tissue engineering investigation.

摘要

我们报告了一种名为光学相干粘度测定法(OCV)的技术,用于以非接触方式测量牛顿流体的粘度。根据小振幅线性波理论,毛细波与流体力学性质相关。为了进行这种测量并避免粘性流体中毛细波的过阻尼效应,应用瞬态声辐射力来产生毛细波。在使用光学相干断层扫描的非常有限的视野范围内,利用傅里叶方法分析在时域中获取的波动,以研究毛细波的波速色散和衰减关系,这可以将流体量大幅减少到组织培养规模。我们使用所提出的OCV测量了水、三种浓度的水 - 甘油溶液以及生物血浆的粘度,并将实验结果与理论计算进行了比较。OCV对波扰动敏感,可能成为测量生物流体粘度的一种有前景的技术,并可应用于未来细胞生物学和组织工程研究中脂质膜测量的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39c9/8060048/2162f3c1a39c/APPLAB-000118-164102_1-g001.jpg

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