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Multiplexed polarized hypodermic Raman needle probe for biostructural analysis of articular cartilage

机译:用于关节软骨的生物结构分析的多路复用偏振皮下垂拉曼探针

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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. (C) 2020 Optical Society of America
机译:在这封信中,我们报告了一种多路复用的偏振性皮下垂针针探针,用于关节软骨的生物结构分析。 使用带有蓝宝石球镜的定制针头探头,我们测量软骨的极化拉曼光谱。 通过在电荷耦合器件(CCD)上同时成像两种偏振并分开渗入它们,我们实时捕获生物化学和结构组织信息。 在这里,我们证明偏振拉曼光谱可以区分软骨探测蛋白模型系统中的不同胶原纤维排列取向,支持其用于诊断骨关节炎(OA)的早期阶段发生的标志性胶原蛋白对准变化的能力。 因此,该工作表明,基于针的极化拉曼光谱对早期OA的监测和诊断具有很大的潜力。 (c)2020美国光学学会

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