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在体外,磁共振扩散对人体椎间盘的机械负荷敏感。

MR diffusion is sensitive to mechanical loading in human intervertebral disks ex vivo.

作者信息

Alkalay Ron N, Burstein Deborah, Westin Carl-Fredrik, Meier Dominick, Hackney David B

机构信息

Center for Advanced Orthopedic Studies, Department of Orthopedics, Beth Israel Deaconess Medical Center and Harvard Medical School, Boston, Massachusetts, USA.

出版信息

J Magn Reson Imaging. 2015 Mar;41(3):654-64. doi: 10.1002/jmri.24624. Epub 2014 Jun 3.

Abstract

PURPOSE

To use T2 and diffusion MR to determine the change in the mechanical function of human disks with increased degenerative state.

MATERIALS AND METHODS

Spatial changes in T2 and diffusion were quantified in five cadaveric human lumbar disks under compressive loads. Regression models were used to investigate the relationship between the change in MR parameters and the disk's dynamic and viscoelastic properties.

RESULTS

Compressive loading caused a significant reduction in the disk's mean diffusivity ([11.3 versus 9.7].10(-4) .mm(2) /s, P < 0.001) but little change in T2 (P < 0.05). Diffusivity and T2 were correlated with the disk's dynamic (P < 0.01 and P < 0.05) and long-term viscoelastic (P < 0.05 and P < 0.05) stiffness. Diffusivity but not T2, was correlated with its viscoelastic dampening (r(2) = 0.45, P < 0.01) and instantaneous stiffness (r(2) = 0.44, P < 0.05). Nucleus diffusivity was significantly higher than the annulus's (-21% to -4%, P < 0.01). MR-estimated hydration was correlated with the instantaneous viscoelastic stiffness of the nucleus (r(2) = 0.35, P < 0.05) and the dynamic (r(2) = 0.44, P < 0.05) and long-term viscoelastic (r(2) = 0.42, P < 0.05) stiffness in the annulus. T2 correlated with diffusivity at low load (r(2) = 0.66, P < 0.05), but not at high load.

CONCLUSION

The strong correlations between diffusivity and the rheological assessments of disk mechanics suggest that MR might permit quantitative assessment of disk functional status and structural integrity.

摘要

目的

利用T2和扩散磁共振成像来确定退变程度增加的人体椎间盘力学功能的变化。

材料与方法

对五具尸体的腰椎间盘在压缩负荷下的T2和扩散的空间变化进行量化。采用回归模型研究磁共振参数变化与椎间盘动态和粘弹性特性之间的关系。

结果

压缩负荷导致椎间盘的平均扩散率显著降低([11.3对9.7].10(-4).mm(2)/s,P<0.001),但T2变化不大(P<0.05)。扩散率和T2与椎间盘的动态(P<0.01和P<0.05)以及长期粘弹性(P<0.05和P<0.05)刚度相关。扩散率而非T2与其粘弹性阻尼(r(2)=0.45,P<0.01)和瞬时刚度(r(2)=0.44,P<0.05)相关。髓核扩散率显著高于纤维环(-21%至-4%,P<0.01)。磁共振估计的水合作用与髓核的瞬时粘弹性刚度(r(2)=0.35,P<0.05)以及纤维环的动态(r(2)=0.44,P<0.05)和长期粘弹性(r(2)=0.42,P<0.05)刚度相关。在低负荷下T2与扩散率相关(r(2)=0.66,P<0.05),但在高负荷下不相关。

结论

扩散率与椎间盘力学流变学评估之间的强相关性表明,磁共振成像可能允许对椎间盘功能状态和结构完整性进行定量评估。

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本文引用的文献

1
Effect of the Degenerative State of the Intervertebral Disk on the Impact Characteristics of Human Spine Segments.
Front Bioeng Biotechnol. 2013 Dec 16;1:16. doi: 10.3389/fbioe.2013.00016. eCollection 2013.
2
Sensitivity of multi-parametric MRI to the compressive state of the isolated intervertebral discs.
Magn Reson Imaging. 2013 Jan;31(1):36-43. doi: 10.1016/j.mri.2012.06.008. Epub 2012 Aug 16.
4
Lumbar intervertebral disc abnormalities: comparison of quantitative T2 mapping with conventional MR at 3.0 T.
Eur Radiol. 2010 Nov;20(11):2715-22. doi: 10.1007/s00330-010-1843-2. Epub 2010 Jun 19.
6
The strain-dependent osmotic pressure and stiffness of the bovine nucleus pulposus apportioned into ionic and non-ionic contributors.
J Biomech. 2008 Aug 7;41(11):2411-6. doi: 10.1016/j.jbiomech.2008.05.025. Epub 2008 Jul 10.
8
Classification of intervertebral disk degeneration with axial T2 mapping.
AJR Am J Roentgenol. 2007 Oct;189(4):936-42. doi: 10.2214/AJR.07.2142.
9
What is intervertebral disc degeneration, and what causes it?
Spine (Phila Pa 1976). 2006 Aug 15;31(18):2151-61. doi: 10.1097/01.brs.0000231761.73859.2c.
10
Quantitative magnetic resonance imaging of enzymatically induced degradation of the nucleus pulposus of intervertebral discs.
Spine (Phila Pa 1976). 2006 Jun 15;31(14):1547-54. doi: 10.1097/01.brs.0000221995.77177.9d.

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