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High-Resolution Peripheral Quantitative Computed Tomography Can Assess Microstructural and Mechanical Properties of Human Distal Tibial Bone

机译:高分辨率外围定量计算机断层扫描可以评估人类远端胫骨的微结构和力学性能

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摘要

High-resolution peripheral quantitative computed tomography (HR-pQCT) is a newly developed in vivo clinical imaging modality. It can assess the 3D microstructure of cortical and trabecular bone at the distal radius and tibia and is suitable as an input for microstructural finite element (µFE) analysis to evaluate bone's mechanical competence. In order for microstructural and image-based µFE analyses to become standard clinical tools, validation with a current gold standard, namely, high-resolution micro-computed tomography (µCT), is required. Microstructural measurements of 19 human cadaveric distal tibiae were performed for the registered HR-pQCT and µCT images, respectively. Next, whole bone stiffness, trabecular bone stiffness, and elastic moduli of cubic subvolumes of trabecular bone in both HR-pQCT and µCT images were determined by µFE analysis. The standard HR-pQCT patient protocol measurements, derived bone volume fraction (BV/TVd), trabecular number (Tb.N*), trabecular thickness (Tb.Th), trabecular spacing (Tb.Sp), and cortical thickness (Ct.Th), as well as the voxel-based direct measurements, BV/TV, Tb.N*, Tb.Th*, Tb.Sp*, Ct.Th, bone surface-to-volume ratio (BS/BV), structure model index (SMI), and connectivity density (Conn.D), correlated well with their respective gold standards, and both contributed to µFE-predicted mechanical properties in either single or multiple linear regressions. The mechanical measurements, although overestimated by HR-pQCT, correlated highly with their gold standards. Moreover, elastic moduli of cubic subvolumes of trabecular bone predicted whole bone or trabecular bone stiffness in distal tibia. We conclude that microstructural measurements and mechanical parameters of distal tibia can be efficiently derived from HR-pQCT images and provide additional information regarding bone fragility. © 2010 American Society for Bone and Mineral Research.
机译:高分辨率外围定量计算机断层扫描(HR-pQCT)是一种新开发的体内临床成像方法。它可以评估远端骨和胫骨的皮质和小梁骨的3D微观结构,适合作为微观结构有限元(µFE)分析的输入,以评估骨骼的机械能力。为了使基于微结构和基于图像的µFE分析成为标准的临床工具,需要使用当前的金标准进行验证,即高分辨率微计算机断层扫描(µCT)。分别对已记录的HR-pQCT和µCT图像进行了19个人体尸体远端胫骨的微结构测量。接下来,通过µFE分析来确定HR-pQCT和µCT图像中的全骨刚度,小梁骨刚度和小梁骨立方亚体积的弹性模量。标准HR-pQCT患者方案测量值,派生的骨体积分数(BV / TVd),小梁数目(Tb.N *),小梁厚度(Tb.Th),小梁间距(Tb.Sp)和皮质厚度(Ct。 Th)以及基于体素的直接测量,BV / TV,Tb.N *,Tb.Th *,Tb.Sp *,Ct.Th,骨表面体积比(BS / BV),结构模型指数(SMI)和连通性密度(Conn.D)与它们各自的金标准之间有着很好的相关性,并且无论是单线性回归还是多元线性回归,都对µFE预测的机械性能有所贡献。尽管HR-pQCT高估了机械测量值,但机械测量值与其金标准高度相关。此外,小梁骨立方亚体积的弹性模量可预测胫骨远端的全骨或小梁骨硬度。我们得出的结论是,可以从HR-pQCT图像中有效地得出胫骨远端的微结构测量结果和力学参数,并提供有关骨脆性的其他信息。 ©2010美国骨骼和矿物质研究学会。

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