Mechanical Characterization of Biofilms by Optical Coherence Elastography (OCE) Measurements of Elastic Waves

Hong-Cin Liou, F. Sabba, G. Wells, O. Balogun
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Abstract

Biofilms are biological materials composed of microbial communities encased in a self-produced extracellular polymeric substance (EPS). The viscoelastic properties of biofilms are related to the cross-link density in the EPS and ultimately the cohesiveness of biofilms. Accurate measurement of biofilm viscoelastic properties at the mesoscale remains a challenge. Rheological measurements, although being more common, provide only global properties, do not permit in-situ characterization, and are not amenable to complex sample geometries. To address these challenges, our work seeks to develop a nondestructive framework for characterizing biofilm viscoelastic properties using elastic wave propagation measured by the optical coherence elastography technique. The framework holds great potential to elucidate spatially varying mechanical properties and their correlation with sample morphology and composition.
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利用光学相干弹性成像(OCE)测量弹性波来表征生物膜的力学特性
生物膜是由微生物群落组成的生物材料,包裹在自产的细胞外聚合物(EPS)中。生物膜的粘弹性与EPS中的交联密度有关,最终与生物膜的内聚性有关。在中尺度上精确测量生物膜的粘弹性仍然是一个挑战。流变测量,虽然是更常见的,只提供全局性质,不允许原位表征,并不能适应复杂的样品几何形状。为了应对这些挑战,我们的工作旨在开发一种无损框架,利用光学相干弹性成像技术测量的弹性波传播来表征生物膜的粘弹性特性。该框架具有很大的潜力来阐明空间变化的力学性能及其与样品形态和组成的相关性。
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