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Techniques and Applications of in vivo Diffusion Imaging of Articular Cartilage

机译:关节软骨体内扩散成像技术及应用

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摘要

Early in the process of osteoarthritis (OA) the composition (water, proteoglycan [PG], and collagen) and structure of articular cartilage is altered leading to changes in its mechanical properties. A technique that can assess the composition and structure of the cartilage in vivo can provide insight in the mechanical integrity of articular cartilage and become a powerful tool for the early diagnosis of OA. Diffusion tensor imaging (DTI) has been proposed as a biomarker for cartilage composition and structure. DTI is sensitive to the PG content through the mean diffusivity (MD) and to the collagen architecture through the fractional anisotropy (FA). However, the acquisition of DTI of articular cartilage in vivo is challenging due to the short T2 of articular cartilage (~40 ms at 3 T) and the high resolution needed (0.5–0.7 mm in plane) to depict the cartilage anatomy. We describe the pulse sequences used for in vivo DTI of articular cartilage and discus general strategies for protocol optimization. We provide a comprehensive review of measurements of DTI of articular cartilage from ex vivo validation experiments to its recent clinical applications.
机译:在骨关节炎(OA)的早期阶段,关节软骨的组成(水,蛋白聚糖[PG]和胶原蛋白)和结构发生了变化,从而导致其机械性能发生了变化。可以评估体内软骨组成和结构的技术可以提供对关节软骨机械完整性的了解,并成为OA早期诊断的有力工具。已经提出扩散张量成像(DTI)作为软骨组成和结构的生物标记。 DTI通过平均扩散率(MD)对PG含量敏感,并通过分数各向异性(FA)对胶原结构敏感。但是,由于关节软骨的T2短(3 T时约为40 ms)和描绘软骨解剖结构所需要的高分辨率(平面上0.5-0.7 mm),因此在体内获取关节软骨的DTI具有挑战性。我们描述了用于体内DTI的关节软骨的脉冲序列,并讨论了协议优化的一般策略。我们提供了从体外验证实验到最近的临床应用的关节软骨DTI测量的全面综述。

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