Automated simulation of areal bone mineral density assessment in the distal radius from high-resolution peripheral quantitative computed tomography

被引:32
作者
Burghardt, A. J. [1 ]
Kazakia, G. J. [1 ]
Link, T. M. [1 ]
Majumdar, S. [1 ]
机构
[1] Univ Calif San Francisco, Dept Radiol & Biomed Imaging, Musculoskeletal Quantitat Imaging Res Grp, San Francisco, CA 94158 USA
关键词
Bone mineral density; DXA; HR-pQCT; Osteoporosis; Simulation; X-RAY ABSORPTIOMETRY; IN-VIVO ASSESSMENT; POSTMENOPAUSAL WOMEN; TRABECULAR BONE; FRACTURE RISK; OSTEOPOROTIC FRACTURES; CANCELLOUS BONE; HR-PQCT; FOREARM; ARCHITECTURE;
D O I
10.1007/s00198-009-0907-0
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
An automated image processing method is presented for simulating areal bone mineral density measures using high-resolution peripheral quantitative computed tomography (HR-pQCT) in the ultra-distal radius. The accuracy of the method is validated against clinical dual X-ray absorptiometry (DXA). This technique represents a useful reference to gauge the utility of novel 3D quantification methods applied to HR-pQCT in multi-center clinical studies and potentially negates the need for separate forearm DXA measurements. Osteoporotic status is primarily assessed by measuring areal bone mineral density (aBMD) using 2D dual X-ray absorptiometry (DXA). However, this technique does not sufficiently explain bone strength and fracture risk. High-resolution peripheral quantitative computed tomography (HR-pQCT) has been introduced as a method to quantify 3D bone microstructure and biomechanics. In this study, an automated method is proposed to simulate aBMD measures from HR-pQCT distal radius images. A total of 117 subject scans were retrospectively analyzed from two clinical bone quality studies. The distal radius was imaged by HR-pQCT and DXA on one of two devices (Hologic or Lunar). Areal BMD was calculated by simulation from HR-pQCT images (aBMD(sim)) and by standard DXA analysis (aBMD(dxa)). The reproducibility of the simulation technique was 1.1% (root mean-squared coefficient of variation). HR-pQCT-based aBMD(sim) correlated strongly to aBMD(dxa) (Hologic: R (2) = 0.82, Lunar: R (2) = 0.87), though aBMD(sim) underestimated aBMD(dxa) for both DXA devices (p < 0.0001). Finally, aBMD(sim) predicted aBMD at the proximal femur and lumbar spine with equal power compared to aBMD(dxa). The results demonstrate that aBMD can be simulated from HR-pQCT images of the distal radius. This approach has the potential to serve as a surrogate forearm aBMD measure for clinical HR-pQCT studies when axial bone mineral density values are not required.
引用
收藏
页码:2017 / 2024
页数:8
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