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High-resolution imaging techniques for the assessment of osteoporosis.用于评估骨质疏松症的高分辨率成像技术。
Radiol Clin North Am. 2010 May;48(3):601-21. doi: 10.1016/j.rcl.2010.02.015.
3
Structural and mechanical parameters of trabecular bone estimated from in vivo high-resolution magnetic resonance images at 3 tesla field strength.在 3 特斯拉场强下从活体高分辨率磁共振图像中估计的小梁骨结构和力学参数。
J Magn Reson Imaging. 2010 May;31(5):1157-68. doi: 10.1002/jmri.22158.
4
Spin-echo micro-MRI of trabecular bone using improved 3D fast large-angle spin-echo (FLASE).使用改进的三维快速大角度自旋回波(FLASE)对小梁骨进行自旋回波显微磁共振成像。
Magn Reson Med. 2009 May;61(5):1114-21. doi: 10.1002/mrm.21905.
5
Implications of resolution and noise for in vivo micro-MRI of trabecular bone.分辨率和噪声对小梁骨活体显微磁共振成像的影响。
Med Phys. 2008 Dec;35(12):5584-94. doi: 10.1118/1.3005598.
6
Rigid-body motion correction with self-navigation MRI.基于自导航磁共振成像的刚体运动校正
Magn Reson Med. 2009 Mar;61(3):739-47. doi: 10.1002/mrm.21883.
7
Trabecular bone structure analysis in the limited spatial resolution regime of in vivo MRI.体内磁共振成像有限空间分辨率条件下的小梁骨结构分析
Acad Radiol. 2008 Dec;15(12):1482-93. doi: 10.1016/j.acra.2008.05.015.
8
In vivo magnetic resonance detects rapid remodeling changes in the topology of the trabecular bone network after menopause and the protective effect of estradiol.体内磁共振检测绝经后小梁骨网络拓扑结构的快速重塑变化及雌二醇的保护作用。
J Bone Miner Res. 2008 May;23(5):730-40. doi: 10.1359/jbmr.080108.
9
Trabecular structure quantified with the MRI-based virtual bone biopsy in postmenopausal women contributes to vertebral deformity burden independent of areal vertebral BMD.基于MRI的虚拟骨活检对绝经后女性小梁结构进行量化,其对椎体畸形负荷的影响独立于椎体面积骨密度。
J Bone Miner Res. 2008 Jan;23(1):64-74. doi: 10.1359/jbmr.070815.
10
Image metric-based correction (autofocusing) of motion artifacts in high-resolution trabecular bone imaging.基于图像度量的高分辨率小梁骨成像中运动伪影校正(自动聚焦)
J Magn Reson Imaging. 2007 Jul;26(1):191-7. doi: 10.1002/jmri.20958.

在高分辨率 3D μMRI 中运动退化对骨小梁的意义。

On the significance of motion degradation in high-resolution 3D μMRI of trabecular bone.

机构信息

Laboratory for Structural NMR Imaging, Department of Radiology, University of Pennsylvania Medical Center, Philadelphia, 19104, USA.

出版信息

Acad Radiol. 2011 Oct;18(10):1205-16. doi: 10.1016/j.acra.2011.06.006. Epub 2011 Aug 4.

DOI:10.1016/j.acra.2011.06.006
PMID:21816638
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3168960/
Abstract

RATIONALE AND OBJECTIVES

Subtle subject movement during high-resolution three-dimensional micro-magnetic resonance imaging of trabecular bone (TB) causes blurring, thereby rendering the data unreliable for quantitative analysis. In this work, the effects of translational and rotational motion displacements were evaluated qualitatively and quantitatively.

MATERIALS AND METHODS

In experiment 1, motion was induced by applying various simulated and previously observed in vivo trajectories as phase shifts to k-space or rotation angles to k-space segments of a virtually motion-free data set. In experiment 2, images that were visually free of motion artifacts from two groups of 10 healthy individuals, differing in age, were selected to probe the effects of motion on TB parameters. In both experiments, images were rated for motion severity, and the scores were compared to a focus criterion, the normalized gradient squared.

RESULTS

Strong correlations were observed between the motion quality scores and the corresponding normalized gradient squared values (R(2) = 0.52-0.64, P < .01). The results from experiment 1 demonstrated consistently lower image quality and alterations in structural parameters of 9% to 45% with increased amplitude of displacements. In experiment 2, the significant differences in structural parameter group means of the motion-free images were lost upon motion degradation. Autofocusing, a postprocessing correction method, partially recovered the sharpness of the original motion-free images in 13 of 20 subjects.

CONCLUSIONS

Quantitative TB structural measures are highly sensitive to subtle motion-induced degradation, which adversely affects precision and statistical power. The results underscore the influence of subject movement in high-resolution three-dimensional micro-magnetic resonance imaging and its correction for TB structure analysis.

摘要

原理与目的

在高分辨率三维微磁共振成像(TB)中,细微的受试者运动导致图像模糊,从而使数据无法进行定量分析。本研究定性和定量评估了平移和旋转运动位移的影响。

材料与方法

在实验 1 中,通过将各种模拟的和之前观察到的体内轨迹作为相位偏移到 k 空间或旋转角度到 k 空间段来产生运动,以虚拟无运动数据集中的运动。在实验 2 中,选择了来自两组年龄不同的 10 位健康个体的无运动伪影的图像,以探究运动对 TB 参数的影响。在这两个实验中,图像的运动严重程度进行了评分,并将评分与焦点标准,即归一化梯度平方进行了比较。

结果

运动质量评分与相应的归一化梯度平方值之间存在很强的相关性(R²=0.52-0.64,P<.01)。实验 1 的结果表明,随着位移幅度的增加,图像质量始终较低,结构参数的改变幅度为 9%-45%。在实验 2 中,运动退化后,无运动图像的结构参数组平均值的显著差异消失。自动对焦,一种后处理校正方法,在 20 个受试者中的 13 个中部分恢复了原始无运动图像的清晰度。

结论

定量 TB 结构测量对细微的运动引起的退化非常敏感,这会降低精度和统计效力。这些结果强调了受试者在高分辨率三维微磁共振成像中的运动影响及其对 TB 结构分析的校正。