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Spectroscopic photonic force optical coherence elastography

Authors :
Lin, Yuechuan
Leartprapun, Nichaluk
Adie, Steven G.
Source :
Optics Letters; October 2019, Vol. 44 Issue: 19 p4897-4900, 4p
Publication Year :
2019

Abstract

We demonstrate spectroscopic photonic force optical coherence elastography (PF-OCE). Oscillations of microparticles embedded in viscoelastic hydrogels were induced by harmonically modulated optical radiation pressure and measured by phase-sensitive spectral-domain optical coherence tomography. PF-OCE can detect microparticle displacements with pico- to nano-meter sensitivity and millimeter-scale volumetric coverage. With spectroscopic PF-OCE, we quantified viscoelasticity over a broad frequency range from 1 Hz to 7 kHz, revealing rich microstructural dynamics of polymer networks across multiple microrheological regimes. Reconstructed frequency-dependent loss moduli of polyacrylamide hydrogels were observed to follow a general power scaling law G^′′∼ω^0.75, consistent with that of semiflexible polymer networks. Spectroscopic PF-OCE provides an all-optical approach to microrheological studies with high sensitivity and high spatiotemporal resolution, and could be especially beneficial for time-lapse and volumetric mechanical characterization of viscoelastic materials.

Details

Language :
English
ISSN :
01469592 and 15394794
Volume :
44
Issue :
19
Database :
Supplemental Index
Journal :
Optics Letters
Publication Type :
Periodical
Accession number :
ejs51062549