评估膝关节 [F]氟化钠 PET 定量测量在骨关节炎和健康受试者中的软骨下骨灌注和矿化。

Assessment of quantitative [F]Sodium fluoride PET measures of knee subchondral bone perfusion and mineralization in osteoarthritic and healthy subjects.

机构信息

Department of Bioengineering, Stanford University, Stanford CA, USA; Department of Radiology, Stanford University, Stanford CA, USA.

Norwich Medical School, University of East Anglia, Norwich, United Kingdom; Department of Radiology, University of Cambridge, Cambridge, United Kingdom.

出版信息

Osteoarthritis Cartilage. 2021 Jun;29(6):849-858. doi: 10.1016/j.joca.2021.02.563. Epub 2021 Feb 24.

Abstract

OBJECTIVE

Molecular information derived from dynamic [F]sodium fluoride ([F]NaF) PET imaging holds promise as a quantitative marker of bone metabolism. The objective of this work was to evaluate physiological mechanisms of [F]NaF uptake in subchondral bone of individuals with and without knee osteoarthritis (OA).

METHODS

Eleven healthy volunteers and twenty OA subjects were included. Both knees of all subjects were scanned simultaneously using a 3T hybrid PET/MRI system. MRI MOAKS assessment was performed to score the presence and size of osteophytes, bone marrow lesions, and cartilage lesions. Subchondral bone kinetic parameters of bone perfusion (K), tracer extraction fraction, and total tracer uptake into bone (K) were evaluated using the Hawkins 3-compartment model. Measures were compared between structurally normal-appearing bone regions and those with structural findings.

RESULTS

Mean and maximum SUV and kinetic parameters K, K, and extraction fraction were significantly different between Healthy subjects and subjects with OA. Between-group differences in metabolic parameters were observed both in regions where the OA group had degenerative changes as well as in regions that appeared structurally normal.

CONCLUSIONS

Results suggest that bone metabolism is altered in OA subjects, including bone regions with and without structural findings, compared to healthy subjects. Kinetic parameters of [F]NaF uptake in subchondral bone show potential to quantitatively evaluate the role of bone physiology in OA initiation and progression. Objective measures of bone metabolism from [F]NaF PET imaging can complement assessments of structural abnormalities observed on MRI.

摘要

目的

从动态[F]氟化钠([F]NaF) PET 成像中获得的分子信息有望成为骨代谢的定量标志物。本研究旨在评估有和没有膝骨关节炎(OA)的个体的软骨下骨中[F]NaF 摄取的生理机制。

方法

纳入 11 名健康志愿者和 20 名 OA 患者。所有受试者的双侧膝关节均同时使用 3T 杂交 PET/MRI 系统进行扫描。对所有受试者进行 MRI MOAKS 评估,以评估骨赘、骨髓病变和软骨病变的存在和大小。使用 Hawkins 3 室模型评估软骨下骨的骨灌注(K)、示踪剂提取分数和总示踪剂摄取到骨中的动力学参数(K)。将结构正常的骨区和存在结构发现的骨区的测量值进行比较。

结果

与健康受试者相比,OA 患者的平均和最大 SUV 以及动力学参数 K、K 和提取分数存在显著差异。在 OA 组存在退行性改变的区域和结构正常的区域均观察到代谢参数的组间差异。

结论

结果表明,与健康受试者相比,OA 患者的骨代谢发生改变,包括存在和不存在结构发现的骨区。软骨下骨中[F]NaF 摄取的动力学参数具有定量评估骨生理学在 OA 起始和进展中的作用的潜力。来自[F]NaF PET 成像的骨代谢的客观测量可以补充 MRI 上观察到的结构异常评估。

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