Steadman Philippon Research Institute, Vail, CO, USA.
Department of Radiology, Stanford University, 1201 Welch Rd, Stanford, CA, 94305, USA.
Skeletal Radiol. 2023 Nov;52(11):2159-2183. doi: 10.1007/s00256-022-04271-7. Epub 2023 Jan 17.
Imaging of the joint in response to loading stress may provide additional measures of joint structure and function beyond conventional, static imaging studies. Exercise such as running, stair climbing, and squatting allows evaluation of the joint response to larger loading forces than during weight bearing. Quantitative MRI (qMRI) may assess properties of cartilage and meniscus hydration and organization in vivo that have been investigated to assess the functional response of these tissues to physiological stress. [F]sodium fluoride ([F]NaF) interrogates areas of newly mineralizing bone and provides an opportunity to study bone physiology, including perfusion and mineralization rate, as a measure of joint loading stress. In this review article, methods utilizing quantitative MRI, PET, and hybrid PET-MRI systems for assessment of the joint response to loading from exercise in vivo are examined. Both methodology and results of various studies performed are outlined and discussed. Lastly, the technical considerations, challenges, and future opportunities for these approaches are addressed.
负荷应激下的关节影像学检查除了传统的静态影像学研究外,还可能提供额外的关节结构和功能评估指标。运动,如跑步、爬楼梯和下蹲,可以评估关节对更大负荷力的反应,而不是在负重时。定量磁共振成像(qMRI)可以评估软骨和半月板水合作用和组织的特性,这些特性已经被研究过,以评估这些组织对生理应激的功能反应。[F]氟化钠([F]NaF)检测新矿化骨的区域,为研究骨生理学提供了机会,包括灌注和矿化率,作为关节负荷应激的测量指标。在这篇综述文章中,我们研究了利用定量 MRI、PET 和 PET-MRI 混合系统评估运动引起的关节负荷反应的方法。概述并讨论了各种研究的方法学和结果。最后,讨论了这些方法的技术考虑、挑战和未来的机会。