Research Center, CHU St Justine, Montréal, QC, Canada H3T 1C5.
Magn Reson Imaging. 2013 Jan;31(1):36-43. doi: 10.1016/j.mri.2012.06.008. Epub 2012 Aug 16.
Magnetic resonance imaging (MRI) offers great potential as a sensitive and noninvasive technique for describing the alterations in mechanical properties, as shown in vitro on intervertebral disc (IVD) or cartilage tissues. However, in vivo, the IVD is submitted to complex loading stimuli. Thus, the present question focuses on the influence of the mechanical loading during an MRI acquisition on the relaxation times, magnetization transfer and diffusion parameters within the IVD.
An apparatus allowing the compression of isolated IVDs was designed and manufactured in acrylonitrile butadiene styrene. IVDs were dissected from fresh young bovine tail, measured for their thickness and submitted to compression just before the MRI acquisition. Six discs received 0% (platen positioned at the initial disc thickness), 5% (platen positioned at 95% of the initial disc thickness), 10%, 20% and 40% deformation. The MRI parameters were compared between the loading states using mean and standard deviation for T1 and T2, and matrix subtraction for Magnetization Transfer, fractional anisotropy and apparent diffusion coefficient.
The compression of the IVD did not lead to any significant change of the MRI parameters, except for the diffusion that decreased in the direction of the compressive stress.
This experimental in vitro study shows that multi-parametric MRI on isolated discs in vitro is not sensitive to compression or to the partial confined relaxation that followed the compression.
磁共振成像(MRI)作为一种敏感且非侵入性的技术,具有很大的潜力,可用于描述椎间盘(IVD)或软骨组织的体外机械性能变化。然而,在体内,IVD 会受到复杂的加载刺激。因此,目前的问题集中在 MRI 采集过程中的机械加载对 IVD 内弛豫时间、磁化转移和扩散参数的影响。
设计并制造了一种允许压缩离体 IVD 的装置,该装置由丙烯腈丁二烯苯乙烯制成。从新鲜的小牛尾巴中解剖出 IVD,测量其厚度,并在进行 MRI 采集之前进行压缩。六个椎间盘分别接受 0%(压板位于初始椎间盘厚度处)、5%(压板位于初始椎间盘厚度的 95%处)、10%、20%和 40%的变形。使用 T1 和 T2 的平均值和标准差以及磁化转移、各向异性分数和表观扩散系数的矩阵减法,比较加载状态下的 MRI 参数。
椎间盘的压缩不会导致 MRI 参数发生任何显著变化,除了扩散方向随压缩应力而减小。
这项体外实验研究表明,离体椎间盘的多参数 MRI 对压缩或随后的部分约束弛豫不敏感。