A systematic study of the effect of measurement parameters on determination of osteocyte lacunar properties using laboratory X-ray micro-computed tomography.

Bone Pub Date : 2025-01-13 DOI:10.1016/j.bone.2025.117391
Maja Østergaard, Nina Kølln Wittig, Henrik Birkedal
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Abstract

Accurate 3D characterization of osteocyte lacunae is important when investigating the role of osteocytes under various physiological and pathological conditions but remains a challenge. With the continued development of laboratory X-ray micro-computed tomography, an increasing number of studies employ these techniques beyond traditional bone morphometry to quantify osteocyte lacunae. However, there is a lack of knowledge on the effect of measurement parameters on the image quality and resolution and in turn the osteocyte lacunar quantification. Herein, we have examined the interplay between scan parameters and the resultant lacunar quantification in terms of lacunar size, shape, and density by comparison with a synchrotron benchmark dataset. We summarize our conclusions in a guide for use of μ-CT for osteocyte lacunar quantification: (1) Identification of the measurement requirements to address the research questions. (2) Collection and preparation of suitable sample(s) that fulfills these requirements. (3) Experimental considerations including determination of the required voxel size, in turn dictating the maximum FOV and by extension the maximum size of the sample(s). The experimental parameters chosen should ensure optimal image contrast, sufficient signal to noise, angular sampling etc. Usually, it is advisable to measure as well as possible within the limits of time, budget, data storage and analysis capabilities. (4) Data analysis and reporting of the results, including visual examination of the data at multiple steps in the analysis, to ensure correct feature identification and suitable reporting approaches. (5) Cross study comparisons, which may be unsuitable if the experimental conditions and analysis strategies are not comparable.

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使用实验室x射线微计算机断层扫描测定骨细胞腔隙特性的测量参数影响的系统研究。
在研究骨细胞在各种生理和病理条件下的作用时,准确的骨细胞腔隙三维表征是重要的,但仍然是一个挑战。随着实验室x射线微计算机断层扫描技术的不断发展,越来越多的研究使用这些技术超越传统的骨形态测量来量化骨细胞腔隙。然而,对测量参数对图像质量和分辨率的影响以及骨细胞腔隙定量的影响缺乏了解。在此,我们通过与同步加速器基准数据集的比较,研究了扫描参数与腔隙大小、形状和密度之间的相互作用。我们在μ-CT骨细胞腔隙定量指南中总结了我们的结论:(1)确定测量要求以解决研究问题。(2)收集和制备符合这些要求的合适样品。(3)实验考虑,包括所需体素大小的确定,进而决定最大视场和扩展的最大尺寸的样本。实验参数的选择应保证最佳的图像对比度、足够的信噪比、角度采样等。通常,在时间、预算、数据存储和分析能力的限制下尽可能地度量是明智的。(4)数据分析和报告结果,包括在分析的多个步骤中对数据进行目视检查,以确保正确识别特征和合适的报告方法。(5)交叉研究比较,如果实验条件和分析策略不具有可比性,可能不适合交叉研究比较。
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