Multiplexed polarized hypodermic Raman needle probe for biostructural analysis of articular cartilage
Author(s) -
Magnus Jensen,
Conor C. Horgan,
Tom Vercauteren,
Michael B. Albro,
Mads S. Bergholt
Publication year - 2020
Publication title -
optics letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.524
H-Index - 272
eISSN - 1071-2763
pISSN - 0146-9592
DOI - 10.1364/ol.390998
Subject(s) - raman spectroscopy , materials science , cartilage , articular cartilage , optics , sapphire , osteoarthritis , microscopy , biomedical engineering , laser , pathology , anatomy , medicine , physics , alternative medicine
In this Letter, we report a multiplexed polarized hypodermic Raman needle probe for the biostructural analysis of articular cartilage. Using a custom-developed needle probe with a sapphire ball lens, we measure polarized Raman spectra of cartilage. By imaging two polarizations simultaneously on the charge-coupled device (CCD) and binning them separately, we capture both biochemical and structural tissue information in real time. Here, we demonstrate that polarized Raman spectroscopy can distinguish between different collagen fibril alignment orientations in a cartilage explant model system, supporting its capacity for diagnosing the hallmark collagen alignment changes occurring in the early stages of osteoarthritis (OA). Accordingly, this work shows that needle-based polarized Raman spectroscopy has great potential for the monitoring and diagnosis of early OA.
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