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软骨成像:技术与进展

Cartilage Imaging: Techniques and Developments.

作者信息

Oei Edwin H G, Wick Marius C, Müller-Lutz Anja, Schleich Christoph, Miese Falk R

机构信息

Department of Radiology and Nuclear Medicine, Erasmus MC, University Medical Center Rotterdam, Rotterdam, The Netherlands.

Department of Diagnostic Radiology, Institute for Molecular Medicine and Surgery, Karolinska Institutet, Stockholm, Sweden.

出版信息

Semin Musculoskelet Radiol. 2018 Apr;22(2):245-260. doi: 10.1055/s-0038-1639471. Epub 2018 Apr 19.

Abstract

Cartilage degeneration is one of the most common chronic age-related joint disorders leading to pain and reduced joint motion. The increasing prevalence of osteoarthritis requires accurate cartilage imaging, both clinically and in research. Detailed cartilage imaging is also necessary for traumatic cartilage lesions and for pre- and postoperative assessment of cartilage repair procedures. Although still widely used, conventional radiography bears significant limitations because it assesses cartilage indirectly by joint space width. Magnetic resonance imaging (MRI) enables direct visualization of cartilage damage along with other concomitantly affected joint tissues. Several semiquantitative grading systems and volumetric analysis methods exist to assess cartilage damage and cartilage repair on MRI. Quantification of hyaline and fibrocartilage biochemical composition is possible with novel MRI methods such as T2- and T1ρ-mapping, delayed gadolinium-enhanced MRI of cartilage, glycosaminoglycan chemical exchange saturation transfer, and sodium imaging, along with quantitative computed tomography arthrography. These techniques provide promising quantitative imaging biomarkers that can detect early cartilage changes before morphological alterations occur.

摘要

软骨退变是最常见的与年龄相关的慢性关节疾病之一,会导致疼痛和关节活动度降低。骨关节炎患病率的不断上升,要求在临床和研究中都要进行准确的软骨成像。对于创伤性软骨损伤以及软骨修复手术的术前和术后评估,详细的软骨成像也是必要的。尽管传统放射成像仍被广泛使用,但它存在重大局限性,因为它通过关节间隙宽度间接评估软骨。磁共振成像(MRI)能够直接观察软骨损伤以及其他同时受影响的关节组织。目前存在几种半定量分级系统和容积分析方法来评估MRI上的软骨损伤和软骨修复情况。利用新型MRI方法,如T2和T1ρ映射、软骨延迟钆增强MRI、糖胺聚糖化学交换饱和转移和钠成像,以及定量计算机断层扫描关节造影,可以对透明软骨和纤维软骨的生化成分进行量化。这些技术提供了很有前景的定量成像生物标志物,能够在形态学改变发生之前检测到早期软骨变化。

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