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将双能X线吸收法(DXA)应用范围扩展至骨密度之外:了解髋部结构分析

Extending DXA beyond bone mineral density: understanding hip structure analysis.

作者信息

Beck Thomas J

机构信息

Division of Medical Imaging Physics, Department of Radiology, School of Medicine, The Johns Hopkins University, The Johns Hopkins Outpatient Center, Baltimore, MD 21287, USA.

出版信息

Curr Osteoporos Rep. 2007 Jun;5(2):49-55. doi: 10.1007/s11914-007-0002-4.

Abstract

The hip structure analysis (HSA) method was introduced to extract geometric strength information from archived hip dual-energy x-ray absorptiometry (DXA) scans acquired in large research studies. Research has shown that strength effects are not easily inferred from conventional DXA measures, so there is growing interest in the clinical community in more direct evaluation of bone strength in patients. This article reviews the factors that govern the strength of an object, how they are used in engineering simulations, and how those properties can be extracted from DXA data. It is important to recognize that that although DXA scanners can be used to measure geometric strength, they were not designed to do so. The current HSA method is fundamentally limited to evaluating bending strength in the plane of the image, so precision is sensitive to consistent femur positioning. The positioning issue and other limitations of the HSA method are discussed, as well as the critical importance of body-size scaling when interpreting bone geometry. Also discussed is how current HSA limitations could be ameliorated in a "next-generation" DXA scanner that is optimized for the purpose.

摘要

髋关节结构分析(HSA)方法被引入,用于从大型研究中获取的存档髋关节双能X线吸收测定法(DXA)扫描中提取几何强度信息。研究表明,强度效应不易从传统的DXA测量中推断出来,因此临床界对更直接评估患者骨强度的兴趣与日俱增。本文回顾了决定物体强度的因素、它们在工程模拟中的应用方式,以及如何从DXA数据中提取这些属性。必须认识到,虽然DXA扫描仪可用于测量几何强度,但它们并非为此而设计。当前的HSA方法从根本上局限于评估图像平面内的弯曲强度,因此精度对股骨的一致定位很敏感。文中讨论了定位问题和HSA方法的其他局限性,以及在解释骨骼几何形状时身体尺寸缩放的至关重要性。还讨论了如何在针对该目的进行优化的“下一代”DXA扫描仪中改善当前HSA的局限性。

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