首页> 外文期刊>Journal of Bone and Mineral Metabolism >Cortical and trabecular bone structure analysis at the distal radius—prediction of biomechanical strength by DXA and MRI
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Cortical and trabecular bone structure analysis at the distal radius—prediction of biomechanical strength by DXA and MRI

机译:radius骨远端的皮质和小梁骨结构分析— DXA和MRI预测生物力学强度

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摘要

The purpose of this study was to investigate whether the combination of dual-energy X-ray absorptiometry (DXA)-based bone mass and magnetic resonance imaging (MRI)-based cortical and trabecular structural measures improves the prediction of radial bone strength. Thirty-eight left forearms were harvested from formalin-fixed human cadavers. Bone mineral content (BMC) and bone mineral density (BMD) of the distal radius were measured using DXA. Cortical and trabecular structural measures of the distal radius were computed in high-resolution 1.5T MR images. Cortical measures included average cortical thickness and cross-sectional area. Trabecular measures included morphometric and texture parameters. The forearms were biomechanically tested in a fall simulation to measure absolute radial bone strength (failure load). Relative radial bone strength was determined by dividing radial failure loads by age, body mass index, radius length, and average radius cross-sectional area, respectively. DXA derived BMC and BMD showed statistically significant (p < 0.05) correlations with absolute and relative radial bone strength (r ≤ 0.78). Correlation coefficients for cortical and trabecular structural measures with absolute and relative radial bone strength amounted up to r = 0.59 and r = 0.74, respectively, (p < 0.05). In combination with DXA-based bone mass, trabecular but not, cortical structural measures, added in multiple regression models significant (p < 0.05) information in predicting absolute and relative radial bone strength (up to R adj = 0.88). Thus, a combination of DXA-based bone mass and MRI-based trabecular structural measures most accurately predicted absolute and relative radial bone strength, whereas structural measures of the cortex did not provide significant additional information in combination with DXA.
机译:这项研究的目的是调查基于双能量X射线吸收法(DXA)的骨量与基于磁共振成像(MRI)的皮质和小梁结构措施的组合是否能改善对radial骨强度的预测。从福尔马林固定的人类尸体上收获了38个左前臂。使用DXA测量远端radius骨的骨矿物质含量(BMC)和骨矿物质密度(BMD)。在高分辨率的1.5T MR图像中计算了远端radius骨的皮质和小梁结构测量值。皮质测量包括平均皮质厚度和横截面积。骨小梁测量包括形态和纹理参数。在跌倒模拟中对前臂进行了生物力学测试,以测量绝对径向骨强度(失败负荷)。通过将径向破坏载荷除以年龄,体重指数,radius骨长度和平均cross骨横截面积来确定相对radial骨强度。 DXA衍生的BMC和BMD与绝对和相对radial骨强度(r≤0.78)具有统计显着性(p <0.05)相关性。绝对和相对radial骨强度的皮质和小梁结构测量的相关系数分别达到r = 0.59和r = 0.74(p <0.05)。与基于DXA的骨量结合在一起,在多个回归模型中添加了小梁而不是皮质结构测量,在预测绝对和相对radial骨强度(高达R adj = 0.88)方面具有重要的信息(p <0.05)。因此,基于DXA的骨量和基于MRI的小梁结构量度的组合最准确地预测了绝对和相对radial骨强度,而皮质的结构量度与DXA组合并不能提供重要的附加信息。

著录项

  • 来源
    《Journal of Bone and Mineral Metabolism》 |2013年第2期|212-221|共10页
  • 作者单位

    Klinikum rechts der Isar Institut für Radiologie Technische Universität München">(1);

    Klinikum rechts der Isar Institut für Radiologie Technische Universität München">(1);

    Klinikum rechts der Isar Institut für Radiologie Technische Universität München">(1);

    Institut und Poliklinik für Diagnostische Radiologie Universitätsklinikum Köln">(2);

    Max-Planck-Institut für extraterrestrische Physik">(3);

    Institute of Anatomy and Musculoskeletal Research Paracelsus Medical University Salzburg">(4);

    Institute of Anatomy and Musculoskeletal Research Paracelsus Medical University Salzburg">(4);

    Klinikum rechts der Isar Institut für Radiologie Technische Universität München">(1);

    Musculoskeletal and Quantitative Imaging Research Group Department of Radiology and Biomedical Imaging University of California San Francisco">(5);

    Klinikum rechts der Isar Institut für Radiologie Technische Universität München">(1);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Osteoporosis; Radius; DXA; MRI;

    机译:骨质疏松症;半径;DXA;核磁共振;

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