Issue 28, 2019

Towards mechanical characterization of granular biofilms by optical coherence elastography measurements of circumferential elastic waves

Abstract

Microbial granular biofilms are spherical, multi-layered aggregates composed of communities of bacterial cells encased in a complex matrix of hydrated extracellular polymeric substances (EPS). While granular aggregates are increasingly used for applications in industrial and municipal wastewater treatment, their underlying mechanical properties are poorly understood. The challenges of viscoelastic characterization for these structures are due to their spherical geometry, spatially heterogeneous properties, and their delicate nature. In this study, we report a model-based approach for nondestructive characterization of viscoelastic properties (shear modulus and shear viscosity) of alginate spheres with different concentrations, which was motivated by our measurements in granular biofilms. The characterization technique relies on experimental measurements of circumferential elastic wave speeds as a function of frequency in the samples using the Optical Coherence Elastography (OCE) technique. A theoretical model was developed to estimate the viscoelastic properties of the samples from OCE data through inverse analysis. This work represents the first attempt to explore elastic waves for mechanical characterization of granular biofilms. The combination of the OCE technique and the theoretical model presented in this paper provides a framework that can facilitate quantitative viscoelastic characterization of samples with curved geometries and the study of the relationships between morphology and mechanical properties in granular biofilms.

Graphical abstract: Towards mechanical characterization of granular biofilms by optical coherence elastography measurements of circumferential elastic waves

Supplementary files

Article information

Article type
Paper
Submitted
12 Apr 2019
Accepted
28 Jun 2019
First published
02 Jul 2019

Soft Matter, 2019,15, 5562-5573

Author version available

Towards mechanical characterization of granular biofilms by optical coherence elastography measurements of circumferential elastic waves

H. Liou, F. Sabba, A. I. Packman, A. Rosenthal, G. Wells and O. Balogun, Soft Matter, 2019, 15, 5562 DOI: 10.1039/C9SM00739C

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