Department of Radiology, NYU Langone Medical Center, New York, New York.
Semin Musculoskelet Radiol. 2021 Jun;25(3):388-396. doi: 10.1055/s-0041-1730912. Epub 2021 Sep 21.
Computed tomography (CT) is most commonly used to produce three-dimensional (3D) models for evaluating bone and joint morphology in clinical practice. However, 3D models created from magnetic resonance imaging (MRI) data can be equally effective for comprehensive and accurate assessment of osseous and soft tissue structure morphology and pathology. The quality of 3D MRI models has steadily increased over time, with growing potential to replace 3D CT models in various musculoskeletal (MSK) applications. In practice, a single MRI examination for two-dimensional and 3D assessments can increase the value of MRI and simplify the pre- and postoperative imaging work-up. Multiple studies have shown excellent performance of 3D MRI models in shoulder injuries, in the hip in the setting of femoroacetabular impingement, and in the knee for the creation of bone surface models. Therefore, the utility of 3D MRI postprocessed models is expected to continue to rise and broaden in applications. Computer-based and artificial intelligence-assisted postprocessing techniques have tremendous potential to improve the efficiency of 3D model creation, opening many research avenues to validate the applicability of 3D MRI and establish 3D-specific quantitative assessment criteria. We provide a practice-focused overview of 3D MRI acquisition strategies, postprocessing techniques for 3D model creation, MSK applications of 3D MRI models, and an illustration of cases from our daily clinical practice.
计算机断层扫描(CT)常用于临床评估骨骼和关节形态的三维(3D)模型。但是,基于磁共振成像(MRI)数据的 3D 模型对于全面准确评估骨和软组织结构形态及病理学同样有效。3D MRI 模型的质量随着时间的推移稳步提高,在各种肌肉骨骼(MSK)应用中具有替代 3D CT 模型的巨大潜力。在实践中,单次 MRI 检查即可进行二维和 3D 评估,从而增加 MRI 的价值并简化术前和术后影像学检查。多项研究表明,3D MRI 模型在肩部损伤、髋关节撞击症和膝关节骨表面模型的构建中具有出色的性能。因此,预计 3D MRI 后处理模型的实用性将继续增加并拓宽应用范围。基于计算机的人工智能辅助后处理技术具有极大的潜力来提高 3D 模型创建的效率,为验证 3D MRI 的适用性和建立 3D 特定的定量评估标准开辟了许多研究途径。我们提供了一个注重实践的 3D MRI 采集策略概述、3D 模型创建的后处理技术、3D MRI 模型在 MSK 中的应用以及我们日常临床实践中的病例示例。