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腰椎和股骨近端双能X线吸收法在骨质疏松症诊断及随访中的作用

The role of dual energy X-ray absorptiometry of lumbar spine and proximal femur in the diagnosis and follow-up of osteoporosis.

作者信息

Rizzoli R, Slosman D, Bonjour J P

机构信息

WHO Collaborating Center for Osteoporosis and Bone Disease, Department of Medicine, University Hospital, Geneva, Switzerland.

出版信息

Am J Med. 1995 Feb 27;98(2A):33S-36S. doi: 10.1016/s0002-9343(05)80043-9.

Abstract

Dual energy x-ray absorptiometry techniques have been validated for the quantitative assessment of bone mass at two skeletal sites particularly at risk of osteoporotic fracture, i.e., lumbar spine and proximal femur. These measurements assess areal bone mineral density (BMD), which integrates the size of the bone and its thickness, as well as the true volumetric density. Areal density provides useful information relative to fracture risk, since there is an inverse relationship between incidence of osteoporotic fractures and areal BMD. Although lumbar spine BMD measurements by a lateral view could offer the advantage over conventional anteroposterior projection of avoiding osteophytes and posterior element osteoarthritis, it does not seem to be superior in diagnostic sensitivity, except possibly for corticosteroid-induced bone loss. Femoral neck BMD appears to be a significantly better predictor of fracture of the proximal femur. Since this measurement does not appear to be influenced by osteoarthritis, it would be the most suitable for the diagnosis of osteoporosis in the elderly. However, the potential for error in terms of both accuracy and precision for dual x-ray absorptiometry measurements of lumbar spine and proximal femur emphasizes the need for strictly controlled conditions of measurement.

摘要

双能X线吸收法技术已被验证可用于定量评估两个特别易发生骨质疏松性骨折的骨骼部位的骨量,即腰椎和股骨近端。这些测量评估的是面积骨密度(BMD),它综合了骨骼的大小及其厚度,以及真正的体积密度。面积密度提供了与骨折风险相关的有用信息,因为骨质疏松性骨折的发生率与面积BMD之间存在反比关系。尽管通过侧位视图测量腰椎BMD可能比传统的前后位投影具有避免骨赘和后部椎体骨关节炎的优势,但除了可能对于皮质类固醇诱导的骨质流失外,其在诊断敏感性方面似乎并不优越。股骨颈BMD似乎是股骨近端骨折的一个明显更好的预测指标。由于该测量似乎不受骨关节炎的影响,因此它最适合用于老年人骨质疏松症的诊断。然而,腰椎和股骨近端双能X线吸收法测量在准确性和精密度方面存在误差的可能性,强调了测量条件需严格控制的必要性。

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