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Nanoscale quantitative surface roughness measurement of articular cartilage using second-order statistical-based biospeckle

机译:基于二阶统计的生物飞轨的纳米级定量表面粗糙度测量关节软骨

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Quantitative measurement of nanoscale surface roughness of articular cartilage tissue is significant to assess the surface topography for early treatment of osteoarthritis, the most common joint disease worldwide. Since it was not established by clinical diagnostic tools, the current studies have been suggesting the use of alternative diagnostic tools using pre-clinical methods. This study aims to measure the nanoscale surface roughness of articular cartilage tissue utilizing biospeckle which is used as a non-destructive and non-contact optical imaging technique. An experimental setup was implemented to capture biospeckle images from twelve cross-section areas of articular cartilage tissue gathered from bovine knee joints at 632 nm wavelength laser radiation. Then, to analyze the biospeckle image, a second-order statistical-based method was proposed through the combination of 308 highly correlated statistical features extracted from implemented gray-level co-occurrence matrices by employing principal component analysis. The result indicated that the measurement of the nanoscale surface roughness based on the first principal component only is able to provide accurate and precise quantitative measurement of early signs of articular cartilage degeneration up to 2500 nm.
机译:关节软骨组织的纳米级表面粗糙度的定量测量对于评估骨关节炎的表面形貌,全球最常见的联合疾病的表面形貌是显着的。由于临床诊断工具未建立,因此目前的研究一直在提出使用临床方法使用替代诊断工具。本研究旨在利用双球形用作非破坏性和非接触光学成像技术来测量关节软骨组织的纳米级表面粗糙度。实施实验设置以捕获从在632nm波长激光辐射的牛膝关节聚集的关节软骨组织的十二个横截面区域的生物扫描图像。然后,为了分析BioSpeckle图像,通过采用主要成分分析从实现的灰度共发生矩阵中提取的308高度相关的统计特征的组合提出了二阶统计学方法。结果表明,基于第一主成分的纳米级表面粗糙度的测量只能提供高达2500nm的关节软骨变性的早期迹象的准确和精确的定量测量。

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