Nordberg Cecilie Lerche, Hansen Bjarke Brandt, Nybing Janus Damm, Hansen Philip, Bliddal Henning, Griffith James F, Fournier Gilles, Guglielmi Giuseppe, Boesen Mikael
Department of Rheumatology, The Parker Institute, Bispebjerg and Frederiksberg Hospital, Copenhagen University, Copenhagen, Denmark.
Department of Radiology, Bispebjerg and Frederiksberg Hospital, Copenhagen University, Copenhagen, Denmark.
Semin Musculoskelet Radiol. 2019 Dec;23(6):609-620. doi: 10.1055/s-0039-1697936. Epub 2019 Nov 19.
Magnetic resonance imaging (MRI) has an established role in the assessment of degenerative musculoskeletal conditions. However, conventional supine MRI findings often correlate poorly with clinical findings. Some patients experience accentuated back pain in the weight-bearing position. Therefore, supine MRI may underestimate the severity of degenerative spine findings. To try and improve the clinical validity of spine imaging, axial loading devices have been used with conventional supine MR imaging to simulate loading of the upright spine. More recently, upright weight-bearing MRI systems (0.25-0.6 T) were introduced, allowing images to be obtained in the standing or seated weight-bearing position and even during upright flexion or extension, rotation, or bending. Some scanners even enable capturing of real-time spinal movement. This review addresses the technical aspects and potential challenges of weight-bearing MRI, both in clinical practice and research.
磁共振成像(MRI)在评估退行性肌肉骨骼疾病方面具有既定作用。然而,传统仰卧位MRI检查结果往往与临床检查结果相关性较差。一些患者在负重位时会出现背痛加剧的情况。因此,仰卧位MRI可能会低估退行性脊柱病变的严重程度。为了尝试提高脊柱成像的临床有效性,轴向加载装置已与传统仰卧位MR成像一起使用,以模拟直立脊柱的负荷。最近,引入了直立负重MRI系统(0.25 - 0.6 T),能够在站立或坐位负重位甚至在直立屈伸、旋转或弯曲过程中获取图像。一些扫描仪甚至能够捕捉实时脊柱运动。本综述探讨了负重MRI在临床实践和研究中的技术方面及潜在挑战。