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Spatial mapping of proteoglycan content in articular cartilage using near-infrared (NIR) spectroscopy

机译:使用近红外(NIR)光谱法对关节软骨中蛋白聚糖含量进行空间定位

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Diagnosis of articular cartilage pathology in the early disease stages using current clinical diagnostic imaging modalities is challenging, particularly because there is often no visible change in the tissue surface and matrix content, such as proteoglycans (PG). In this study, we propose the use of near infrared (NIR) spectroscopy to spatially map PG content in articular cartilage. The relationship between NIR spectra and reference data (PG content) obtained from histology of normal and artificially induced PG-depleted cartilage samples was investigated using principal component (PC) and partial least squares (PLS) regression analyses. Significant correlation was obtained between both data (R2 = 91.40%, p0.0001). The resulting correlation was used to predict PG content from spectra acquired from whole joint sample, this was then employed to spatially map this component of cartilage across the intact sample. We conclude that NIR spectroscopy is a feasible tool for evaluating cartilage contents and mapping their distribution across mammalian joint.
机译:使用当前的临床诊断成像方法来诊断疾病早期阶段的关节软骨病理学具有挑战性,尤其是因为组织表面和基质含量(例如蛋白聚糖)通常没有可见变化。在这项研究中,我们建议使用近红外(NIR)光谱在空间上映射关节软骨中的PG含量。使用主成分(PC)和偏最小二乘(PLS)回归分析,研究了NIR光谱与参考数据(PG含量)之间的关系,该参考数据是从正常和人工诱导的PG耗竭的软骨样品的组织学中获得的。两种数据之间均具有显着相关性(R2 = 91.40%,p <0.0001)。所得的相关性用于根据从整个关节样品获得的光谱预测PG含量,然后将其用于在整个完整样品中对软骨的这一成分进行空间映射。我们得出的结论是,近红外光谱是评估软骨含量并绘制跨哺乳动物关节分布的可行工具。

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