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首页> 外文期刊>Journal of orthopaedic research >Agreement and precision of periprosthetic bone density measurements in micro-CT, single and dual energy CT
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Agreement and precision of periprosthetic bone density measurements in micro-CT, single and dual energy CT

机译:微型CT,单能和双能量CT中的骨髓骨密度测量的协议和精度

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The objective of this study was to test the precision and agreement between bone mineral density measurements performed in micro CT, single and dual energy computed tomography, to determine how the keV level influences density measurements and to assess the usefulness of quantitative dual energy computed tomography as a research tool for longitudinal studies aiming to measure bone loss adjacent to total hip replacements. Samples from 10 fresh-frozen porcine femoral heads were placed in a Perspex phantom and computed tomography was performed with two acquisition modes. Bone mineral density was calculated and compared with measurements derived from micro CT. Repeated scans and dual measurements were performed in order to measure between- and within-scan precision. Mean density difference between micro CT and single energy computed tomography was 72mgHA/cm(3). For dual energy CT, the mean difference at 100keV was 128mgHA/cm(3) while the mean difference at 110-140keV ranged from -84 to -67mgHA/cm(3) compared with micro CT. Rescanning the samples resulted in a non-significant overall between-scan difference of 13mgHA/cm(3). Bland-Altman limits of agreement were wide and intraclass correlation coefficients ranged from 0.29 to 0.72, while 95% confidence intervals covered almost the full possible range. Repeating the density measurements for within-scan precision resulted in ICCs >0.99 and narrow limits of agreement. Single and dual energy quantitative CT showed excellent within-scan precision, but poor between-scan precision. No significant density differences were found in dual energy quantitative CT at keV-levels above 110keV. (c) 2016 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 35:1470-1477, 2017.
机译:本研究的目的是测试在微型CT,单一和双能量计算断层扫描中进行的骨矿物密度测量之间的精度和同意,以确定Kev水平如何影响密度测量,并评估定量双能量计算断层摄影的有用性纵向研究的研究工具,旨在测量总髋关节置换率邻近的骨质损失。从10个新鲜冷冻猪股头的样品放置在Perspex Phantom中,并且使用两种采集模式进行计算断层扫描。计算骨矿物密度并与源自微型CT的测量进行比较。重复扫描和双重测量是为了测量扫描精度和扫描内的扫描。 Micro CT和单能计算断层摄影之间的平均密度差异为72mgHa / cm(3)。对于双能CT,100KeV的平均差异为128mgHa / cm(3),而与Micro CT相比,110-140ke的平均差异为-84至-67mga / cm(3)。重新扫描样品导致非显着的整体在13mgHa / cm(3)之间的扫描差之间。 Bland-Altman的协议限制宽,脑内相关系数范围为0.29至0.72,而95%的置信区间几乎涵盖了全面的范围。重复扫描内精度的密度测量导致ICCS> 0.99和狭窄的协议限制。单一和双能量定量CT在扫描精度范围内显示出优异,但扫描精度之间的差。在110keV高于110keV级的双能量CT中没有发现显着的密度差异。 (c)2016骨科研究会。由Wiley期刊出版,Inc.J Orthop Res 35:1470-1477,2017。

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