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Arthroscopic Determination of Cartilage Proteoglycan Content and Collagen Network Structure with Near-Infrared Spectroscopy

机译:用近红外光谱法测定软骨蛋白多糖含量和胶原网络结构的测定

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Conventional arthroscopic evaluation of articular cartilage is subjective and insufficient for assessing early compositional and structural changes during the progression of post-traumatic osteoarthritis. Therefore, in this study, arthroscopic near-infrared (NIR) spectroscopy is introduced, for the first time, for in vivo evaluation of articular cartilage thickness, proteoglycan (PG) content, and collagen orientation angle. NIR spectra were acquired in vivo and in vitro from equine cartilage adjacent to experimental cartilage repair sites. As reference, digital densitometry and polarized light microscopy were used to evaluate superficial and full-thickness PG content and collagen orientation angle. To relate NIR spectra and cartilage properties, ensemble neural networks, each with two different architectures, were trained and evaluated by using Spearman's correlation analysis (rho). The ensemble networks enabled accurate predictions for full-thickness reference properties (PG content: rho(in vitro, Val)=0.691, rho(in vivo)=0.676; collagen orientation angle: rho(in vitro, Val)=0.626, rho(in vivo)=0.574) from NIR spectral data. In addition, the networks enabled reliable prediction of PG content in superficial (25%) cartilage (rho(in vitro, Val)=0.650, rho(in vivo)=0.613) and cartilage thickness (rho(in vitro, Val)=0.797, rho(in vivo)=0.596). To conclude, NIR spectroscopy could enhance the detection of initial cartilage degeneration and thus enable demarcation of the boundary between healthy and compromised cartilage tissueduring arthroscopic surgery.
机译:常规关节镜的关节软骨评估是主观的,不足以评估在创伤后骨关节炎的进展过程中的早期组成和结构变化。因此,在本研究中,首次首次引入关节镜近红外(NIR)光谱(NIR)光谱,用于体内评估关节软骨厚度,蛋白多糖(PG)含量和胶原取向角。在与实验软骨修复位点相邻的马软骨中获得了NIR光谱。作为参考,使用数字密度测定和偏振光显微镜来评估浅表和全厚的PG含量和胶原取向角。通过使用Spearman的相关性分析(RHO),培训和评估,以涉及NIR Spectra和软骨特性,每个具有两个不同架构的核心网络,每个架构都有和评估。集合网络能够实现完全厚度参考属性的准确预测(PG含量:rhO(体外,val)= 0.691,Rho(体内)= 0.676;胶原取向角度:rho(体外,val)= 0.626,rho(在vivo)= 0.574)来自NIR光谱数据。此外,该网络能够使浅表(25%)软骨(Rho(体外,Val)= 0.650,Rho(体内)= 0.613)和软骨厚度(rho(体外,val)= 0.797中的PG含量预测,rho(体内)= 0.596)。为了得出结论,NIR光谱可以增强初始软骨变性的检测,从而能够使健康和受损的软骨组织型关节镜手术之间的边界的划分。

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