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Validity of serial milling-based imaging system for microdamage quantification.

机译:基于串行铣削的成像系统对微损伤定量的有效性。

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Understanding the three-dimensional distribution of microdamage within trabecular bone may help provide a better understanding of the mechanisms of bone failure. Toward that end, a novel serial milling-based fluorescent imaging system was developed for quantifying microscopic damage in three dimensions throughout cores of trabecular bone. The overall goal for this study was to compare two-dimensional (2D), surface-based measures of microdamage extracted from this new imaging system against those from more conventional histological section analyses. Human vertebral trabecular cores were isolated, stained en bloc with a series of chelating fluorochromes, monotonically loaded, and underwent microdamage quantification via the two methods. Bone area fraction measured by the new system was significantly correlated to that measured by histological point counting (p<0.001, R(2)=0.80). Additionally, the new system produced statistically equivalent (p=0.021) measures of damage fraction (mean+/-SD), Dx.AF=0.047+/-0.021, to that obtained from stereological point counting, Dx.AF=0.048+/-0.017, at a 10% difference level. These results demonstrate that this serial milling-based fluorescent imaging system provides a destructive yet practical alternative to more conventional histologic section analysis in addition to its ability to provide a better understanding of the three-dimensional nature of microdamage.
机译:了解小梁骨内微损伤的三维分布可能有助于更好地了解骨衰竭的机制。为此,开发了一种新颖的基于连续铣削的荧光成像系统,用于量化整个小梁骨核心的三个方向的微观损伤。这项研究的总体目标是将这种新成像系统提取的二维(2D),基于表面的微损伤测量结果与更常规的组织学切片分析结果进行比较。分离人椎骨小梁核心,用一系列螯合荧光染料整块染色,单调加载,并通过两种方法进行微损伤定量。通过新系统测量的骨面积分数与通过组织学点计数测量的骨面积分数显着相关(p <0.001,R(2)= 0.80)。此外,新系统还产生了与统计分数(Dx.AF = 0.048 +/-)相当的统计指标(p = 0.021)的损伤分数(平均值+/- SD)Dx.AF = 0.047 +/- 0.021。 0.017,相差10%。这些结果表明,这种基于连续研磨的荧光成像系统除了能够更好地了解微损伤的三维本质之外,还提供了更具破坏性的实用替代方法,可以替代传统的组织学切片分析。

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