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A novel and non-destructive method to examine meniscus architecture using 9.4 Tesla MRI.

机译:一种新颖且无损的方法,使用9.4 Tesla MRI检查半月板结构。

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OBJECTIVE: To investigate the ability of high-field (9.4 T) magnetic resonance (MR) imaging to delineate porcine knee meniscal tissue structure and meniscal tears. MATERIALS AND METHODS: Porcine knees were obtained from a local abattoir, and eight medial menisci with no visible defects were dissected. Lesions simulating longitudinal tears were created on two of the menisci. MR images of the menisci were obtained at 9.4 T using a three-dimensional (3D)-FLASH sequence. A detailed 3D internal architecture of the intact and injured menisci was demonstrated on high-resolution MR images. RESULTS: High-resolution 3D MR imaging allowed visualisation of internal architecture of the meniscus and disruption to the internal structural network in damage models. The architecture of the porcine knee meniscus revealed by the MR scans appeared similar to the structures visualised by histology in previously reported studies. CONCLUSION: High-field MRI is a non-destructive technique to examine the internal structural components and damage/wear of meniscal tissue. It has tremendous potential in the field of functional cartilage/meniscus biomechanics and biotribology.
机译:目的:研究高场(9.4 T)磁共振成像(MR)描绘猪膝半月板组织结构和半月板撕裂的能力。材料与方法:猪膝关节取自当地屠宰场,并解剖了八个内侧半月板,无可见缺损。在两个半月板中产生了模拟纵向眼泪的病变。使用三维(3D)-FLASH序列在9.4 T下获得半月板的MR图像。在高分辨率MR图像上展示了完整的半月板和受伤的半月板的详细3D内部结构。结果:高分辨率3D MR成像可以使半月板的内部结构可视化,并可以破坏模型中的内部结构网络。 MR扫描显示的猪膝半月板的结构看起来与以前报道的研究中通过组织学观察到的结构相似。结论:高场核磁共振成像是一种无损检查半月板组织内部结构和损伤/磨损的技术。它在功能性软骨/半月板生物力学和生物摩擦学领域具有巨大的潜力。

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