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首页> 外文期刊>Investigative radiology >Change of diffusion tensor imaging parameters in articular cartilage with progressive proteoglycan extraction.
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Change of diffusion tensor imaging parameters in articular cartilage with progressive proteoglycan extraction.

机译:渐进性蛋白聚糖提取在关节软骨中扩散张量成像参数的变化。

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摘要

OBJECTIVE: To investigate changes of diffusion tensor imaging (DTI) parameters (mean apparent diffusion coefficient [ADC], fractional anisotropy [FA], and first eigenvector) with increasing proteoglycan (PG) extraction of articular cartilage. MATERIAL AND METHODS: Twelve cylindrical cartilage-on-bone samples were drilled from 4 human patellae (3 per patella). Each sample was divided into 2 pieces. One piece underwent histologic examination to assess the PG content of the native sample by safranin-O staining and its collagen architecture by polarized light microscopy. The other underwent magnetic resonance imaging (MRI) at 17.6 T for DTI measurement. After MRI, 2 of the 3 samples from each patella were immersed in a dilute trypsin solution (0.1 mg/mL), whereas the third sample was kept as a negative control in physiological saline. After incubation (6, 48, 72, and 96 hours), the samples were reimaged, stained for PG content and for the collagen orientation. Maps of ADC, FA, and the orientation of the first eigenvector as well as histology were available for each sample before and after incubation. RESULTS: PG loss led to increased ADC and reduced safranin-O staining from the articular surface to the bone-cartilage interface. A significant correlation (r(2) = 0.86, P < 0.01) was observed between the change in bulk ADC and PG loss. Regional analysis from the articular surface to the tide mark demonstrated depth dependent significant correlations of ADC and PG loss. FA and first eigenvector as well as polarized light microscopy showed only small changes in the order of magnitude of measurement errors, not correlating with PG loss. CONCLUSION: Mean diffusivity evidence by the ADC is linearly correlated to progressive PG extraction in articular cartilage. FA and the first eigenvector seem to be specific to the collagen architecture of cartilage. DTI has the potential to become a valuable biomarker for the workup of cartilage degeneration in osteoarthritis, since evaluation of the PG content and collagen architectural properties of cartilage can be performed with a single, non-contrast-enhanced proton-based MRI measurement.
机译:目的:研究随着关节软骨蛋白聚糖(PG)提取量的增加,张量张量成像(DTI)参数(平均表观扩散系数[ADC],分数各向异性[FA]和第一特征向量)的变化。材料与方法:从4个人类骨(每个(骨3个)中钻出十二个圆柱状骨软骨样品。每个样品被分成两块。一件经过了组织学检查,通过番红O染色和偏光显微镜评估了天然样品的PG含量及其胶原结构。另一例在17.6 T下进行了磁共振成像(MRI)以进行DTI测量。 MRI后,将每个骨的3个样品中的2个浸入稀胰蛋白酶溶液(0.1 mg / mL)中,而将第三个样品作为阴性对照保存在生理盐水中。温育(6、48、72和96小时)后,对样品进行重新成像,对PG含量和胶原蛋白取向染色。在孵育前后,每个样品都可获得ADC,FA,第一个特征向量的方向以及组织学图。结果:PG丢失导致ADC增加,而从关节表面到骨-软骨界面的番红素O染色减少。整体ADC的变化与PG损失之间存在显着相关性(r(2)= 0.86,P <0.01)。从关节表面到潮汐标记的区域分析表明,深度依赖于ADC和PG损失的显着相关性。 FA和第一特征向量以及偏光显微镜在测量误差的数量级中仅显示了很小的变化,与PG的损失无关。结论:ADC的平均扩散率证据与关节软骨中进行性PG提取呈线性相关。 FA和第一个特征向量似乎特定于软骨的胶原结构。 DTI可能成为骨关节炎软骨退变检查的有价值的生物标志物,因为可以使用单个非对比增强的基于质子的MRI测量来评估软骨的PG含量和胶原结构特性。

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