Department of Neurosciences, Institute of Human Anatomy, University of Padua, 35121 Padova, Italy.
Department of Medicine-DIMED, School of Radiology, Radiology Institute, University of Padua, 35122 Padova, Italy.
Medicina (Kaunas). 2024 Jul 3;60(7):1090. doi: 10.3390/medicina60071090.
Over the past decade, there has been a notable increase in research focused on ultrasound imaging of thoracolumbar fascia (TLF). Nevertheless, published papers' results about the application of US imaging in TLF examination are still sparse. : Hence, this systematic review was performed aiming to firstly investigate the use and the methodology of ultrasound imaging to assess pathologic and healthy TLF. Secondarily, we aim to assess intra- and inter-observer reproducibility of US imaging in TLF assessment. : The search was done on PubMed and Web of Science database from inception to April 2024. Furthermore, the references of included papers were thoroughly checked to find eligible publications. The MeSH keywords used were: "Thoracolumbar fascia", "Ultrasound Imaging", "Ultrasound", "Ultrasonography", and "Ultrasound examination". : Studies were aimed primarily at TLF diagnosis, treatment monitoring, or evaluating movement-related changes, underscoring the diverse clinical applications. The US parameters assessed included TLF thickness, echogenicity, stiffness, deformation, shear strain, and displacement, providing comprehensive insights into TLF features. : Advanced US imaging holds promise as a reliable tool in musculoskeletal assessment, offering insights into TLF pathology/disfunction, treatment outcomes, and movement dynamics.
在过去的十年中,针对胸腰筋膜(TLF)的超声成像研究显著增加。然而,关于超声成像在 TLF 检查中的应用的已发表论文的结果仍然很少。因此,进行了这项系统评价,旨在首先调查超声成像在评估病理性和健康 TLF 中的使用情况和方法学。其次,我们旨在评估 TLF 评估中 US 成像的观察者内和观察者间的可重复性。检索了从开始到 2024 年 4 月在 PubMed 和 Web of Science 数据库上的文献。此外,还仔细检查了纳入文献的参考文献,以找到合格的出版物。使用的 MeSH 关键词是:“Thoracolumbar fascia”、“Ultrasound Imaging”、“Ultrasound”、“Ultrasonography”和“Ultrasound examination”。研究主要针对 TLF 的诊断、治疗监测或评估与运动相关的变化,强调了其多样化的临床应用。评估的 US 参数包括 TLF 厚度、回声、硬度、变形、剪切应变和位移,提供了对 TLF 特征的全面了解。高级超声成像有望成为肌肉骨骼评估的可靠工具,提供 TLF 病理/功能障碍、治疗结果和运动动力学的见解。