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Biomechanical properties and microarchitecture parameters of trabecular bone are correlated with stochastic measures of 2D projection images

机译:小梁骨的生物力学特性和微结构参数与二维投影图像的随机测量相关

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摘要

It is well known that loss of bone mass, quantified by areal bone mineral density (aBMD) using DXA, is associated with the increasing risk of bone fractures. However, bone mineral density alone cannot fully explain changes in fracture risks. On top of bone mass, bone architecture has been identified as another key contributor to fracture risk. In this study, we used a novel stochastic approach to assess the distribution of aBMD from 2D projection images of Micro-CT scans of trabecular bone specimens at a resolution comparable to DXA images. Sill variance, a stochastic measure of distribution of aBMD, had significant relationships with microarchitecture parameters of trabecular bone, including bone volume fraction, bone surface-to-volume ratio, trabecular thickness, trabecular number, trabecular separation and anisotropy. Accordingly, it showed significantly positive correlations with strength and elastic modulus of trabecular bone. Moreover, a combination of aBMD and sill variance derived from the 2D projection images (R2=0.85) predicted bone strength better than using aBMD alone (R2=0.63). Thus, it would be promising to extend the stochastic approach to routine DXA scans to assess the distribution of aBMD, offering a more clinically significant technique for predicting risks of bone fragility fractures.
机译:众所周知,使用DXA通过面骨矿物质密度(aBMD)量化的骨量损失与骨折风险增加有关。然而,仅骨矿物质密度不能完全解释骨折风险的变化。除了骨量外,骨骼结构还被认为是导致骨折风险的另一个关键因素。在这项研究中,我们使用了一种新颖的随机方法来评估小梁骨标本的Micro-CT扫描的2D投影图像中aBMD的分布,其分辨率可与DXA图像相媲美。基石方差是aBMD分布的一种随机度量,它与小梁骨的微结构参数有着显着的关系,包括骨体积分数,骨表面体积比,骨小梁厚度,骨小梁数目,骨小梁分离度和各向异性。因此,它与小梁骨的强度和弹性模量显示出显着的正相关。此外,从2D投影图像(R 2 = 0.85)得出的aBMD和门槛方差的组合比单独使用aBMD(R 2 = 0.63)预测骨强度更好。因此,将随机方法扩展到常规DXA扫描以评估aBMD的分布将是有希望的,它将为预测骨脆性骨折的风险提供更具临床意义的技术。

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