Multispectral sensing of biological liquids with hollow-core microstructured optical fibres

Author:

Ermatov Timur,Noskov Roman E.ORCID,Machnev Andrey A.,Gnusov Ivan,Аtkin Vsevolod,Lazareva Ekaterina N.,German Sergei V.,Kosolobov Sergey S.,Zatsepin Timofei S.,Sergeeva Olga V.,Skibina Julia S.,Ginzburg Pavel,Tuchin Valery V.,Lagoudakis Pavlos G.ORCID,Gorin Dmitry A.ORCID

Abstract

AbstractThe state of the art in optical biosensing is focused on reaching high sensitivity at a single wavelength by using any type of optical resonance. This common strategy, however, disregards the promising possibility of simultaneous measurements of a bioanalyte’s refractive index over a broadband spectral domain. Here, we address this issue by introducing the approach of in-fibre multispectral optical sensing (IMOS). The operating principle relies on detecting changes in the transmission of a hollow-core microstructured optical fibre when a bioanalyte is streamed through it via liquid cells. IMOS offers a unique opportunity to measure the refractive index at 42 wavelengths, with a sensitivity up to ~3000 nm per refractive index unit (RIU) and a figure of merit reaching 99 RIU−1 in the visible and near-infra-red spectral ranges. We apply this technique to determine the concentration and refractive index dispersion for bovine serum albumin and show that the accuracy meets clinical needs.

Funder

Russian Foundation for Basic Research

Ministry of Science & Technology of Israel

Publisher

Springer Science and Business Media LLC

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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