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Prodigy 和 Horizon A 密度计的交叉校准和 Horizon A 密度计的精度。

Cross-Calibration of Prodigy and Horizon A Densitometers and Precision of the Horizon A Densitometer.

机构信息

Jean Mayer USDA Human Nutrition Research Center on Aging, Tufts University, Boston, MA, USA.

Jean Mayer USDA Human Nutrition Research Center on Aging, Tufts University, Boston, MA, USA.

出版信息

J Clin Densitom. 2021 Jul-Sep;24(3):474-480. doi: 10.1016/j.jocd.2021.02.003. Epub 2021 Feb 21.

Abstract

We performed this study to enable a reliable transition for clinical study participants and patients from a GE Lunar Prodigy to a Hologic Horizon A dual-energy X-ray absorptiometry (DXA) scanner and to assess the reproducibility of measurements made on the new DXA scanner. Forty-five older adults had one spine, hip, and total body scan on a Prodigy dual-energy X-ray absorptiometry (DXA) scanner and 2 spine, hip, and total body scans, with repositioning, on a new Hologic Horizon A DXA scanner. Linear regression models were used to derive cross calibration equations for each measure on the 2 scanners. Precision (group root-mean-square average coefficient of variation) of bone mineral density (BMD) of the total hip, femoral neck, and lumbar spine (L1-L4), and total body fat, bone, and lean mass, appendicular lean mass, and trabecular bone score (TBS) was assessed using the International Society of Clinical Densitometry's (ISCD's) Advanced Precision Calculation Tool. Correlation coefficients for the BMD and body composition measures on the 2 scanners ranged from 0.94 to 0.99 (p<0.001). When compared with values on the Prodigy, mean BMD on the Horizon A was lower at each skeletal site (0.136 g/cm lower at the femoral neck and 0.169 g/cm lower at the lumbar spine (L1-4)), fat mass was 0.47 kg lower, and lean mass was 4.50 kg higher. Precision of the Horizon A scans was 1.60% for total hip, 1.94% for femoral neck, and 1.25% for spine (L1-4) BMD. Precision of TBS was 1.67%. Precision of total body fat mass was 2.16%, total body lean mass was 1.26%, appendicular lean mass was 1.97%, and total body bone mass was 1.12%. The differences in BMD and body composition values on the 2 scanners illustrate the importance of cross-calibration to account for these differences when transitioning clinical study participants and patients from one scanner to another.

摘要

我们进行这项研究,旨在实现临床研究参与者和患者从 GE Lunar Prodigy 到 Hologic Horizon A 双能 X 射线吸收仪(DXA)扫描仪的可靠转换,并评估新 DXA 扫描仪上测量结果的可重复性。45 名老年人在 Prodigy DXA 扫描仪上进行了一次脊柱、髋部和全身扫描,在新的 Hologic Horizon A DXA 扫描仪上进行了两次脊柱、髋部和全身扫描,同时进行了重新定位。我们使用线性回归模型为两台扫描仪上的每个测量值推导出交叉校准方程。使用国际临床密度学学会(ISCD)的高级精密度计算工具评估了全髋、股骨颈和腰椎(L1-L4)、全身脂肪、骨和瘦体重、四肢瘦体重和小梁骨评分(TBS)的骨密度(BMD)的精密度(组均方根平均变异系数)。两台扫描仪上 BMD 和身体成分测量值的相关系数范围为 0.94 至 0.99(p<0.001)。与 Prodigy 上的值相比,Horizon A 上每个骨骼部位的平均 BMD 都较低(股骨颈低 0.136g/cm,腰椎(L1-4)低 0.169g/cm),脂肪量低 0.47kg,瘦体重高 4.50kg。Horizon A 扫描的精密度为全髋 1.60%、股骨颈 1.94%和脊柱(L1-4)BMD 1.25%。TBS 的精密度为 1.67%。全身脂肪量的精密度为 2.16%,全身瘦体重的精密度为 1.26%,四肢瘦体重的精密度为 1.97%,全身骨量的精密度为 1.12%。两台扫描仪上 BMD 和身体成分值的差异表明,在将临床研究参与者和患者从一台扫描仪转换到另一台扫描仪时,交叉校准对于解释这些差异非常重要。

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