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首页> 外文期刊>European Journal of Radiology >Radiographic bone texture analysis is correlated with 3D microarchitecture in the femoral head, and improves the estimation of the femoral neck fracture risk when combined with bone mineral density
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Radiographic bone texture analysis is correlated with 3D microarchitecture in the femoral head, and improves the estimation of the femoral neck fracture risk when combined with bone mineral density

机译:射线照相的骨质分析与股骨头的3D微结构相关联,并结合骨矿物质密度提高了对股骨颈骨折风险的估计

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Purpose Femoral neck fracture is a major public health problem in elderly persons, representing the main source of osteoporosis-related mortality and morbidity. In this study, we aimed at comparing radiographic texture analysis with three-dimensional (3D) microarchitecture in human femurs, and at evaluating whether bone texture analysis improved the assessment of the femoral neck fracture risk other than that obtainable by bone mineral density (BMD). Materials and methods Thirteen osteoporotic femoral heads from patients who fractured their femoral neck and twelve non-fractured femoral heads from osteoarthritic patients were studied using respectively (1) a new high-resolution digital X-ray device (BMA?, D3A Medical Systems) allowing for bone texture analysis with fractal parameter Hmean, and (2) a micro-computed tomograph (CT) for 3D microarchitecture. BMD was measured postoperatively by DXA in all patients in the contralateral femur. Results In these femoral heads, we found that fractal parameter Hmean was correlated with 3D microarchitecture parameters: bone volume fraction (BV/TV), trabecular number (Tb.N), trabecular separation (Tb.Sp) and fractal dimension (FD) respectively (p 0.05). Then, fractal parameter Hmean was significantly lower in the femoral heads from the fractured group than from the non-fractured group (p 0.01). Finally, multiple regression analysis showed that combining bone texture analysis and total hip BMD significantly improved the estimation of the femoral neck fracture risk from adjusted r2 = 0.46 to adjusted r2 = 0.67 (p 0.05). Conclusion Radiographic bone texture analysis was correlated with 3D microarchitecture parameters in the femoral head, provided accurate discrimination between the femoral heads from the fractured and non-fractured groups, and significantly improved the estimation of the femoral neck fracture risk when combined with BMD.
机译:目的股骨颈骨折是老年人的主要公共卫生问题,是骨质疏松症相关死亡率和发病率的主要来源。在这项研究中,我们旨在比较人股骨的放射照相纹理分析与三维(3D)微结构,并评估除通过骨矿物质密度(BMD)可获得的评估之外,骨纹理分析是否可以改善对股骨颈骨折风险的评估。材料和方法分别使用(1)一种新的高分辨率数字X射线设备(BMA ?, D3A Medical Systems)研究了13例股骨颈骨折的骨质疏松性股骨头和12例骨关节炎患者的非骨折性股骨头。用于分形参数Hmean的骨骼纹理分析,以及(2)用于3D微体系结构的微型计算机断层扫描仪(CT)。 DXA对所有对侧股骨患者进行术后骨密度测量。结果在这些股骨头中,我们发现分形参数Hmean与3D微结构参数相关:骨体积分数(BV / TV),小梁数目(Tb.N),小梁分离度(Tb.Sp)和分形维数(FD) (p <0.05)。然后,骨折组股骨头的分形参数Hmean显着低于未骨折组(p <0.01)。最后,多元回归分析表明,将骨纹理分析与全髋BMD相结合,可将股骨颈骨折风险的估计值从调整后的r2 = 0.46调整为调整后的r2 = 0.67(p <0.05)。结论放射影像学骨质分析与股骨头的3D微结构参数相关,可准确区分骨折组和非骨折组的股骨头,并与BMD结合可显着提高股骨颈骨折风险的估计。

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