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利用同步18F-NaF PET/MRI对骨关节炎膝关节骨软骨复合体形态代谢变化进行定性和定量评估——一项初步研究

Qualitative and Quantitative Evaluation of Morpho-Metabolic Changes in Bone Cartilage Complex of Knee Joint in Osteoarthritis Using Simultaneous 18F-NaF PET/MRI-A Pilot Study.

作者信息

Jena Amarnath, Goyal Nidhi, Rana Prerana, Taneja Sangeeta, Vaish Abhishek, Botchu Rajesh, Vaishya Raju

机构信息

Department of Molecular Imaging and Nuclear Medicine, Indraprastha Apollo Hospital, New Delhi, India.

Department of Radiodiagnosis and Imaging, Indraprastha Apollo Hospitals, New Delhi, India.

出版信息

Indian J Radiol Imaging. 2023 Jan 6;33(2):173-182. doi: 10.1055/s-0042-1760285. eCollection 2023 Apr.

Abstract

Articular cartilage (AC) loss and deterioration, as well as bone remodeling, are all symptoms of osteoarthritis (OA). As a result, an ideal imaging technique for researching OA is required, which must be sensitive to both soft tissue and bone health.  The aim of this study was to assess the potential of simultaneous 18F sodium fluoride (18F-NaF) positron emission tomography/magnetic resonance imaging (PET/MRI) to identify as well as classify osseous metabolic abnormalities in knee OA and to see if degenerative changes in the cartilage and bone on MRI might be correlated with subchondral 18F-NaF uptake on PET.  Sixteen (32 knees) volunteers with no past history of knee injury, with or without pain, were enrolled for the research from January to July 2021. The images of both knees were taken utilizing an molecular magnetic resonance (mMR) body matrix coil on a simultaneous PET/MRI biograph mMR. The acquisition was conducted after 45 minutes of intravenous infusion of 18F-NaF 185-370 MBq (5-10 mCi) over one PET bed for 40 minutes, while MRI sequences were performed simultaneously.  All pathologies showed significantly higher maximum standardized uptake value (SUV ) than the background. Thirty-four subchondral magic spots were identified on 18F-NaF PET without any structural alteration on MRI. Bone marrow lesions (BMLs) and osteophytes with higher MRI osteoarthritis knee score (MOAKS) score showed higher 18F-NaF uptake (grade1˂grade2˂grade3). BMLs had corresponding AC degeneration. There was discordance between grade 1 osteophytes (86.6%), sclerosis (53.7%) and grade 1 BML in cruciate ligament insertion site (91.66%); they did not have high uptake of 18F-NaF. In case of cartilage, there was significant difference between AC grades and average subchondral SUV and T2* relaxometry (grade0˂grade1˂grade2˂grade3˂grade4). BMLs are much more metabolically active than other pathologies, while sclerosis is the least. We also found that the subchondral uptake was statistically increased in the areas of pathology:  18F-NaF PET/MRI was able to detect knee abnormalities unseen on MRI alone and simultaneously assessed metabolic and structural markers of knee OA across multiple tissues in the joint. Thus, it is a promising tool for detection of early metabolic changes in OA.

摘要

关节软骨(AC)丢失与退变以及骨重塑都是骨关节炎(OA)的症状。因此,需要一种理想的成像技术来研究OA,该技术必须对软组织和骨骼健康都敏感。

本研究的目的是评估同时进行的18F氟化钠(18F-NaF)正电子发射断层扫描/磁共振成像(PET/MRI)识别和分类膝关节OA骨代谢异常的潜力,并观察MRI上软骨和骨骼的退变变化是否与PET上的软骨下18F-NaF摄取相关。

2021年1月至7月,招募了16名(32个膝关节)无膝关节损伤史、有或无疼痛的志愿者参与研究。使用分子磁共振(mMR)体部矩阵线圈在同时进行PET/MRI的Biograph mMR上采集双膝图像。在静脉输注185-370 MBq(5-10 mCi)的18F-NaF 45分钟后,在一个PET床位上采集40分钟,同时进行MRI序列扫描。

所有病变的最大标准化摄取值(SUV )均显著高于背景值。在18F-NaF PET上识别出34个软骨下魔斑,MRI上无任何结构改变。骨髓病变(BMLs)和骨赘的MRI骨关节炎膝关节评分(MOAKS)较高者显示18F-NaF摄取较高(1级˂2级˂3级)。BMLs伴有相应的AC退变。1级骨赘(86.6%)、硬化(53.7%)和十字韧带附着部位的1级BML(91.66%)之间存在不一致;它们没有18F-NaF的高摄取。对于软骨,AC分级与平均软骨下SUV 和T2*弛豫测量值之间存在显著差异(0级˂1级˂2级˂3级˂4级)。BMLs的代谢活性比其他病变高得多,而硬化的代谢活性最低。我们还发现病变区域的软骨下摄取在统计学上增加:

18F-NaF PET/MRI能够检测到单独MRI上未见的膝关节异常,并同时评估关节内多个组织的膝关节OA的代谢和结构标志物。因此,它是检测OA早期代谢变化的一种有前景的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e56/10132889/4112973d7bdb/10-1055-s-0042-1760285-i2261679-1.jpg

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