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首页> 外文期刊>Frontiers in Medicine >Beyond Bone Mineral Density: A New Dual X-Ray Absorptiometry Index of Bone Strength to Predict Fragility Fractures, the Bone Strain Index
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Beyond Bone Mineral Density: A New Dual X-Ray Absorptiometry Index of Bone Strength to Predict Fragility Fractures, the Bone Strain Index

机译:超越骨矿物密度:骨强度的新的双X射线吸收度指数,以预测脆弱性裂缝,骨菌株指数

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For a proper assessment of osteoporotic fragility fracture prediction, all aspects regarding bone mineral density, bone texture, geometry and information about strength are necessary, particularly in endocrinological and rheumatological diseases, where bone quality impairment is relevant. Data regarding bone quantity (density) and, partially, bone quality (structure and geometry) are obtained by the gold standard method of dual X-ray absorptiometry (DXA). Data about bone strength are not yet readily available. To evaluate bone resistance to strain, a new DXA-derived index based on the Finite Element Analysis (FEA) of a greyscale of density distribution measured on spine and femoral scan, namely Bone Strain Index (BSI), has recently been developed. Bone Strain Index includes local information on density distribution, bone geometry and loadings and it differs from bone mineral density (BMD) and other variables of bone quality like trabecular bone score (TBS), which are all based on the quantification of bone mass and distribution averaged over the scanned region. This state of the art review illustrates the methodology of BSI calculation, the findings of its in reproducibility and the preliminary data about its capability to predict fragility fracture and to monitor the follow up of the pharmacological treatment for osteoporosis.
机译:为了适当评估骨质疏松脆性裂缝预测,关于骨矿物质密度,骨骼纹理,几何形状和关于强度的信息的所有方面都是必要的,特别是在内分泌和风湿病疾病中,骨骼质量障碍是相关的。关于骨量(密度)和,部分,骨质质量(结构和几何)的数据通过双X射线吸收测定法(DXA)的金标准方法获得。关于骨强度的数据尚未容易获得。为了评估骨骼抵抗菌株,最近已经开发出基于在脊柱和股骨扫描上测量的密度分布的灰度分布的有限元分析(FEA)的新的DXA衍生指数,即骨应变指数(BSI)。骨应变指数包括关于密度分布,骨几何和载荷的局部信息,与骨矿物密度(BMD)和其他骨骼质量(TBS)等的其他变量不同,这些骨骼分数(TBS)都是基于骨质量和分布的量化平均在扫描区域上。这种最先进的综述说明了BSI计算的方法,其成果的再现性和初步数据有关其预测脆弱性折断的能力,并监测骨质疏松症的药理学治疗的后续。

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