首页> 外文期刊>Journal of clinical densitometry >Precision, accuracy, and reproducibility of dual X-ray absorptiometry measurements in mice in vivo.
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Precision, accuracy, and reproducibility of dual X-ray absorptiometry measurements in mice in vivo.

机译:体内小鼠双X线吸收法测量的准确性,准确性和可重复性。

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Dual X-ray absorptiometry (DXA) has currently become a clinical standard for the assessment of bone mass and bone mineral density (BMD) at multiple sites for the diagnosis and follow-up assessment of osteoporosis in humans. The precision of DXA measurement in human studies has been well documented during the last two decades. However, there have been no systematic reports on the precision and accuracy of BMD measurements in mice using DXA, although mice have proven to be useful models for the study of osteoporosis. Accordingly, BMD of total body as well as regions of interest (ROIs) was measured twice in mice in vivo after a short (10-min) and long (16-hr) interval between scans by DXA, and scanning variations were calculated. Inter- and intra-analyzer variations from the same scans were also determined. The percent coefficients (%CVs) of short-interval scanning variation and inter- and intra-analyzer variations for total body and regional BMDs were less than 2% at sites, demonstrating high precision of in vivo BMD measurements in mice. Moreover, the BMD values comparing in vivo and ex vivo samples from the same animals were of %CV less than 10% at all sites. The correlation of bone mineral content (BMC) to bone ash was further examined, and the correlation between ROI BMC and bone ash was relatively high at all sites both in vivo and ex vivo, with the latter higher. We conclude that in vivo DXA BMD measurements in mice are very reliable with high precision and acceptable accuracy, and therefore useful for longitudinal studies of the mouse skeleton.
机译:目前,双X线骨密度仪(DXA)已成为评估多个部位的骨质量和骨矿物质密度(BMD)的临床标准,以诊断和后续评估人的骨质疏松症。在过去的二十年中,人类研究中DXA测量的精确度得到了很好的证明。但是,尽管已证明小鼠是研究骨质疏松症的有用模型,但尚无关于使用DXA进行的BMD测量的准确性和准确性的系统报告。因此,在通过DXA扫描之间的短暂(10分钟)和较长(16小时)间隔之后,在体内小鼠体内两次测量了全身BMD以及感兴趣区域(ROI),并且计算了扫描变化。还确定了来自同一扫描的分析仪间和分析仪内变化。全身和区域BMD的短时间间隔扫描变异以及分析仪间和分析仪变异的百分比系数(%CVs)在部位小于2%,表明小鼠体内BMD测量的高精度。而且,比较来自相同动物的体内和离体样品的BMD值在所有位点的%CV小于10%。进一步检查了骨矿物质含量(BMC)与骨灰的相关性,并且在体内和离体所有部位的ROI BMC和骨灰之间的相关性都相对较高,后者更高。我们得出的结论是,体内DXA BMD在小鼠中的测量非常可靠,具有高精度和可接受的准确性,因此可用于对小鼠骨骼进行纵向研究。

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