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[3特斯拉磁共振图像小梁骨形态计量学和力学定量分析的可重复性和准确性]

[Reproducibility and accuracy in the morphometric and mechanical quantification of trabecular bone from 3 Tesla magnetic resonance images].

作者信息

Alberich-Bayarri A, Martí-Bonmatí L, Sanz-Requena R, Sánchez-González J, Hervás Briz V, García-Martí G, Pérez M Á

机构信息

Servicio de Radiología, Hospital Quirón de Valencia, Valencia, España.

Servicio de Radiología, Hospital Quirón de Valencia, Valencia, España; Unidad de Radiología, Departamento de Medicina, Universitat de València, Valencia, España.

出版信息

Radiologia. 2014 Jan-Feb;56(1):27-34. doi: 10.1016/j.rx.2013.06.001. Epub 2013 Oct 2.

Abstract

OBJECTIVE

We used an animal model to analyze the reproducibility and accuracy of certain biomarkers of bone image quality in comparison to a gold standard of computed microtomography (μCT).

MATERIAL AND METHODS

We used magnetic resonance (MR) imaging and μCT to study the metaphyses of 5 sheep tibiae. The MR images (3 Teslas) were acquired with a T1-weighted gradient echo sequence and an isotropic spatial resolution of 180μm. The μCT images were acquired using a scanner with a spatial resolution of 7.5μm isotropic voxels. In the preparation of the images, we applied equalization, interpolation, and thresholding algorithms. In the quantitative analysis, we calculated the percentage of bone volume (BV/TV), the trabecular thickness (Tb.Th), the trabecular separation (Tb.Sp), the trabecular index (Tb.N), the 2D fractal dimension (D(2D)), the 3D fractal dimension (D(3D)), and the elastic module in the three spatial directions (Ex, Ey and Ez).

RESULTS

The morphometric and mechanical quantification of trabecular bone by MR was very reproducible, with percentages of variation below 9% for all the parameters. Its accuracy compared to the gold standard (μCT) was high, with errors less than 15% for BV/TV, D(2D), D(3D), and E(app)x, E(app)y and E(app)z.

CONCLUSIONS

Our experimental results in animals confirm that the parameters of BV/TV, D(2D), D(3D), and E(app)x, E(app)y and E(app)z obtained by MR have excellent reproducibility and accuracy and can be used as imaging biomarkers for the quality of trabecular bone.

摘要

目的

我们使用动物模型分析某些骨图像质量生物标志物的可重复性和准确性,并与计算机显微断层扫描(μCT)的金标准进行比较。

材料与方法

我们使用磁共振(MR)成像和μCT研究了5只绵羊胫骨的干骺端。MR图像(3特斯拉)采用T1加权梯度回波序列采集,各向同性空间分辨率为180μm。μCT图像使用体素各向同性空间分辨率为7.5μm的扫描仪采集。在图像制备过程中,我们应用了均衡、插值和阈值算法。在定量分析中,我们计算了骨体积百分比(BV/TV)、小梁厚度(Tb.Th)、小梁间距(Tb.Sp)、小梁指数(Tb.N)、二维分形维数(D(2D))、三维分形维数(D(3D))以及三个空间方向(Ex、Ey和Ez)的弹性模量。

结果

MR对小梁骨的形态学和力学定量具有很高的可重复性,所有参数的变异百分比均低于9%。与金标准(μCT)相比,其准确性较高,BV/TV、D(2D)、D(3D)以及E(app)x、E(app)y和E(app)z的误差小于15%。

结论

我们在动物身上的实验结果证实,通过MR获得的BV/TV、D(2D)、D(3D)以及E(app)x、E(app)y和E(app)z参数具有出色的可重复性和准确性,可作为小梁骨质量的成像生物标志物。

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