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Contactless Vibrational Analysis of Transparent Hydrogel Structures Using Laser-Doppler Vibrometry

机译:应用激光多普勒振动器透明水凝胶结构的非接触式振动分析

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摘要

Background Investigating the mechanical properties of biological and biocompatible hydrogels is important in tissue engineering and biofabrication. Atomic force microscopy (AFM) and compression testing are routinely used to determine mechanical properties of tissue and tissue constructs. However, these techniques are slow and require mechanical contact with the sample, rendering in situ measurements difficult. Objective We therefore aim at a fast and contactless method for determining the mechanical properties of biological hydrogels and investigate if an optical method, like Laser-Doppler vibrometry (LDV), can accomplish this task. Methods LDV is a fast contactless method for mechanical analysis. Nonetheless, LDV setups operating in the visible range of the optical spectrum are difficult to use for transparent materials, such as biological hydrogels, because LDV relies on reflected or back-scattered light from the sample. We therefore use a near-infrared (NIR) scanning LDV to determine the vibration spectra of cylindrical gelatin discs of different gelatin concentration and compare the results to AFM data and unconfined compression testing. Results We show that the gelatin test structures can be analyzed, using a NIR LDV, and the Young's moduli can be deduced from the resonance frequencies of the first normal (0,1) mode of these structures. As expected, the frequency of this mode increases with the square root of the Young's modulus and the damping constant increases exponentially with gelatin concentration, which underpins the validity of our approach. Conclusions Our results demonstrate that NIR wavelengths are suitable for a fast, contactless vibrational analysis of transparent hydrogel structures.
机译:背景技术研究生物和生物相容性水凝胶的机械性能在组织工程和生物结缔组织中是重要的。原子力显微镜(AFM)和压缩测试经常用于确定组织和组织构建体的机械性能。然而,这些技术缓慢并且需要与样品机械接触,呈现出原位测量困难。目的,我们旨在快速无接触的方法,用于确定生物水凝胶的机械性能,并研究了激光 - 多普勒振动器(LDV),如光学方法,可以实现这项任务。方法LDV是一种快速接触的机械分析方法。尽管如此,在光谱的可见范围内操作的LDV设置难以用于透明材料,例如生物水凝胶,因为LDV依赖于来自样品的反射或背部散射光。因此,我们使用近红外(NIR)扫描LDV来确定不同明胶浓度的圆柱形明胶盘的振动光谱,并将结果与​​AFM数据和非整合压缩测试进行比较。结果表明,可以使用NIR LDV分析明胶测试结构,并且可以从这些结构的第一正常(0,1)模式的共振频率从谐振频率推导出杨氏模。如预期的那样,这种模式的频率随着杨氏模量的平方根而增加,并且阻尼恒定随着明胶浓度指数增加,这使得我们的方法的有效性依次增加。结论我们的结果表明,NIR波长适用于透明水凝胶结构的快速,非接触的振动分析。

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