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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >The Quantitative Structural and Compositional Analyses of Degenerating Intervertebral Discs Using Magnetic Resonance Imaging and Contrast-Enhanced Micro-Computed Tomography
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The Quantitative Structural and Compositional Analyses of Degenerating Intervertebral Discs Using Magnetic Resonance Imaging and Contrast-Enhanced Micro-Computed Tomography

机译:使用磁共振成像和对比增强微计算机断层扫描的退化椎间盘的定量结构和组成分析

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The intervertebral disc (IVD) is susceptible to degenerative changes that are associated with low back pain. Murine models are often used to investigate the mechanistic changes in the development, aging, and diseased states of the IVD, yet the detection of early degenerative changes in structure is challenging because of the minute size of the murine IVDs. Histology is the gold standard for examining the IVD structure, but it is susceptible to sectioning artifacts, spatial biases, and requires the destructive preparation of the sample. We have previously demonstrated the feasibility of using Ioversol for the contrast-enhanced micro-computed tomography (microCT) to visualize and quantitate the intact healthy murine IVD. In this work, we demonstrate utility of this approach to monitor the longitudinal changes of in vitro nucleolytic- and mechanical injury-degeneration models of the murine discs and introduce novel quantitative metrics to characterize the structure and composition of the IVD. Moreover, we compared the imaging quality and quantitation of these in vitro models to magnetic resonance imaging (MRI) and histology. Stab puncture, trypsin injection, and collagenase injection all induced detectable and significant changes in structure and composition of the discs overtime. Compared to MRI and histology, contrast-enhanced microCT produced superior images that capture the degenerative progression in these models. Contrast-enhanced microCT was also capable of monitoring the structural deteriorations via the changes in disc height and volume, and novel the nucleus pulposus intensity/disc intensity (NI/DI) parameter provides a surrogate measure of proteoglycan composition (R = 0.96). Overall, this approach allows for the nondestructive monitoring of the structure and composition of the IVD at very high resolutions.
机译:椎间盘(IVD)易受与腰痛相关的退行性变化的影响。鼠模型通常用于调查IVD的发育,衰老和患病状态的机制变化,但由于鼠IVDS的微小尺寸,结构的早期退行性变化的检测是具有挑战性的。组织学是用于检查IVD结构的金标准,但易于切断伪影,空间偏差,并且需要对样品的破坏性制备。我们之前已经展示了使用Iavesol用于对比增强的微计算断层扫描(MicroCT)来可视化和定量完整健康鼠IVD的可行性。在这项工作中,我们证明了这种方法的实用性来监测鼠盘的体外核溶解和机械损伤 - 退化模型的纵向变化,并引入新的定量度量,以表征IVD的结构和组成。此外,我们将这些体外模型的成像质量和定量与磁共振成像(MRI)和组织学相比。刺穿穿刺,胰蛋白酶注射和胶原酶注射所有诱导圆盘的结构和组成的可检测和显着变化。与MRI和组织学相比,对比度增强的MicroCT产生了捕获这些模型中的退行性进展的优越图像。对比度增强的微细胞也能够通过盘高度和体积的变化监测结构劣化,并且新颖的核骨髓强度/盘强度(Ni / Di)参数提供蛋白多糖组合物的替代衡量(R = 0.96)。总的来说,这种方法允许在非常高的分辨率下无损监测IVD的结构和组成。

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