首页> 美国卫生研究院文献>Tissue Engineering. Part C Methods >Guidelines for Dual Energy X-Ray Absorptiometry Analysis of Trabecular Bone-Rich Regions in Mice: Improved Precision Accuracy and Sensitivity for Assessing Longitudinal Bone Changes
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Guidelines for Dual Energy X-Ray Absorptiometry Analysis of Trabecular Bone-Rich Regions in Mice: Improved Precision Accuracy and Sensitivity for Assessing Longitudinal Bone Changes

机译:小鼠小梁骨丰富区域的双能X线骨密度仪分析指南:评估纵向骨变化的提高的精度准确性和敏感性

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摘要

Trabecular bone is frequently studied in osteoporosis research because changes in trabecular bone are the most common cause of osteoporotic fractures. Dual energy X-ray absorptiometry (DXA) analysis specific to trabecular bone-rich regions is crucial to longitudinal osteoporosis research. The purpose of this study is to define a novel method for accurately analyzing trabecular bone-rich regions in mice via DXA. This method will be utilized to analyze scans obtained from the International Space Station in an upcoming study of microgravity-induced bone loss. Thirty 12-week-old BALB/c mice were studied. The novel method was developed by preanalyzing trabecular bone-rich sites in the distal femur, proximal tibia, and lumbar vertebrae via high-resolution X-ray imaging followed by DXA and micro-computed tomography (micro-CT) analyses. The key DXA steps described by the novel method were (1) proper mouse positioning, (2) region of interest (ROI) sizing, and (3) ROI positioning. The precision of the new method was assessed by reliability tests and a 14-week longitudinal study. The bone mineral content (BMC) data from DXA was then compared to the BMC data from micro-CT to assess accuracy. Bone mineral density (BMD) intra-class correlation coefficients of the new method ranging from 0.743 to 0.945 and Levene's test showing that there was significantly lower variances of data generated by new method both verified its consistency. By new method, a Bland–Altman plot displayed good agreement between DXA BMC and micro-CT BMC for all sites and they were strongly correlated at the distal femur and proximal tibia (r=0.846, p<0.01; r=0.879, p<0.01, respectively). The results suggest that the novel method for site-specific analysis of trabecular bone-rich regions in mice via DXA yields more precise, accurate, and repeatable BMD measurements than the conventional method.
机译:在骨质疏松症研究中经常研究骨小梁,因为骨小梁的变化是骨质疏松性骨折的最常见原因。小梁骨富集区域特有的双能X射线吸收法(DXA)分析对于纵向骨质疏松研究至关重要。这项研究的目的是定义一种通过DXA准确分析小鼠小梁骨富集区域的新方法。在即将进行的微重力引起的骨丢失研究中,将使用这种方法来分析从国际空间站获得的扫描图像。研究了30只12周龄的BALB / c小鼠。通过高分辨率X射线成像,然后进行DXA和微型计算机断层扫描(micro-CT)分析,预先分析股骨远端,胫骨近端和腰椎中的小梁骨富集部位,从而开发出了这种新方法。用新方法描述的DXA关键步骤是(1)正确放置鼠标,(2)感兴趣区域(ROI)大小和(3)ROI放置。新方法的准确性通过可靠性测试和为期14周的纵向研究进行了评估。然后将来自DXA的骨矿物质含量(BMC)数据与来自微型CT的BMC数据进行比较,以评估准确性。新方法的骨矿物质密度(BMD)类内相关系数在0.743至0.945之间,Levene检验表明,新方法生成的数据的方差明显更低,均证明了其一致性。通过新方法,Bland-Altman图显示了所有部位的DXA BMC和micro-CT BMC之间的良好一致性,并且它们在股骨远端和胫骨近端密切相关(r = 0.846,p <0.01; r ​​= 0.879,p < 0.01)。结果表明,与传统方法相比,通过DXA对小鼠小梁骨富集区域进行定点分析的新方法可产生更精确,准确和可重复的BMD测量值。

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