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半月板延迟钆增强磁共振成像:半月板组织退变的一个指标?

Delayed gadolinium-enhanced magnetic resonance imaging of the meniscus: an index of meniscal tissue degeneration?

作者信息

Krishnan Nitya, Shetty Sanjay K, Williams Ashley, Mikulis Brandon, McKenzie Charles, Burstein Deborah

机构信息

Beth Israel Deaconess Medical Center and Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

Arthritis Rheum. 2007 May;56(5):1507-11. doi: 10.1002/art.22592.

Abstract

OBJECTIVE

Much attention has been focused recently on the need for a better understanding of the mechanisms and natural progression of knee osteoarthritis (OA), particularly in its early stages. One technique that has been used to investigate early OA is delayed gadolinium-enhanced magnetic resonance imaging of cartilage (dGEMRIC), where T1(Gd) (T1 value after penetration of the MRI contrast agent gadopentate dimeglumine [Gd-DTPA(2-)]) is used as an index of the molecular status of articular cartilage. The goal of this study was to explore T1(Gd) in the meniscus and its relationship with articular cartilage T1(Gd) in knee dGEMRIC image data sets.

METHODS

T1(Gd) maps of the meniscus and articular cartilage were made from knee dGEMRIC images obtained from prior studies of dGEMRIC of the knee in 21 asymptomatic subjects and 9 patients with self-reported OA.

RESULTS

T1(Gd) of the meniscus covered a range of values (247-515 msec) and patterns (homogeneous and focal variations). In addition, T1(Gd) of the meniscus correlated with that of articular cartilage (R = 0.38, P = 0.037; R = 0.57, P = 0.001 for correlations of the medial posterior meniscus with the medial femoral and tibial cartilage, respectively; T1[Gd] of the anterior meniscus and lateral compartments also correlated, with R > 0.38 and P < 0.037), potentially demonstrating parallel degradative processes in the knee.

CONCLUSION

While the biophysical basis for the T1(Gd) results relative to meniscus molecular structure needs investigation, these findings introduce a potential means of examining the time course of meniscal tissue change in the development and progression of arthritis.

摘要

目的

最近,人们越来越关注更好地理解膝关节骨关节炎(OA)的机制和自然进展,尤其是在其早期阶段。一种用于研究早期OA的技术是延迟钆增强磁共振成像软骨(dGEMRIC),其中T1(Gd)(MRI造影剂钆喷酸葡胺[Gd-DTPA(2-)]渗透后的T1值)被用作关节软骨分子状态的指标。本研究的目的是在膝关节dGEMRIC图像数据集中探索半月板的T1(Gd)及其与关节软骨T1(Gd)的关系。

方法

半月板和关节软骨的T1(Gd)图谱由从先前21名无症状受试者和9名自我报告患有OA的患者的膝关节dGEMRIC研究中获得的膝关节dGEMRIC图像制成。

结果

半月板的T1(Gd)涵盖了一系列值(247 - 515毫秒)和模式(均匀和局灶性变化)。此外,半月板的T1(Gd)与关节软骨的T1(Gd)相关(R = 0.38,P = 0.037;内侧后半月板与股骨内侧和胫骨软骨的相关性分别为R = 0.57,P = 0.001;前半月板和外侧间室的T1[Gd]也相关,R > 0.38且P < 0.037),这可能表明膝关节中存在平行的降解过程。

结论

虽然相对于半月板分子结构的T1(Gd)结果的生物物理基础需要研究,但这些发现引入了一种潜在方法,可用于检查关节炎发展和进展过程中半月板组织变化的时间进程。

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