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Evaluation of the Bone-ligament and tendon insertions based on Raman spectrum and its PCA and CLS analysis

机译:基于拉曼光谱及其PCA和CLS分析的骨韧带和肌腱插入评估

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摘要

Injuries to the Anterior Cruciate Ligament (ACL) and Rotator Cuff Tendon (RCT) are common in physically active and elderly individuals. The development of an artificial prosthesis for reconstruction/repair of ACL and RCT injuries is of increasing interest due to the need for viable tissue and reduced surgically-related co-morbidity. An optimal prosthesis design is still elusive, therefore an improved understanding of the bone-soft tissue interface is extremely urgent. In this work, Raman spectral mapping was used to analyze, at the micron level, the chemical composition and corresponding structure of the bone-soft tissue interface. Raman spectroscopic mapping was performed using a Raman spectrometer with a 785 nm laser coupled to a microscope. Line-mapping procedure was performed on the ACL and RCT bone insertion sites. The classical least squares (CLS) fitting model was created from reference spectra derived from pure bone and soft-tissue components, and spectral maps collected at multiple sites from ACL and RCT specimens. The results suggest that different source of interface shows different boundary, even they seems have the same components. Compared to the common histology results, it provided intact molecular information that can easily distinguished some relative component change.
机译:前肢交叉韧带(ACL)和肩袖肌腱(RCT)的损伤在体育锻炼和老年人中很常见。由于需要活组织并且减少了与手术相关的合并症,因此用于ACL和RCT损伤的重建/修复的人工假体的开发受到越来越多的关注。最佳的假体设计仍然难以捉摸,因此,对骨软组织界面的更好了解非常迫切。在这项工作中,拉曼光谱图被用于分析微米级的骨软组织界面的化学成分和相应的结构。使用拉曼光谱仪将拉曼光谱仪与785 nm激光耦合到显微镜进行拉曼光谱映射。在ACL和RCT骨插入位点上进行线映射程序。根据从纯骨和软组织成分中提取的参考光谱以及从ACL和RCT标本的多个位置收集的光谱图,创建了经典最小二乘(CLS)拟合模型。结果表明,即使界面似乎具有相同的成分,不同的界面来源也会显示不同的边界。与普通的组织学结果相比,它提供了完整的分子信息,可以轻松地区分某些相对的组分变化。

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