Kruger Karen M, Lenz Amy L, Dibbern Kevin N, de Cesar Netto Cesar, Ledoux William R, Thorhauer Eric D, Burssens Arne, Siegler Sorin, Rainbow Michael J, Welte Lauren, Peterson Andrew C, Conconi Michele, Williams David E, Turmezei Tom, Hansen Philip, Lintz François, Leardini Alberto
Department of Biomedical Engineering, Marquette University, 1515 W. Wisconsin Avenue, Milwaukee, WI 53233, USA; Shriners Children's Chicago, 2211 N. Oak Park Avenue, Chicago, IL 60707, USA.
Department of Orthopaedics, University of Utah, 590 Wakara Way, Salt Lake City, UT 84108, USA; Department of Biomedical Engineering, University of Utah, 36 S. Wasatch Drive, Salt Lake City, UT 84112, USA.
Foot Ankle Clin. 2025 Mar;30(1):221-237. doi: 10.1016/j.fcl.2024.08.006. Epub 2024 Dec 3.
Increasing utilization of weight-bearing computed tomography and fluoroscopy has driven the need for standardization of 3 dimensional (3D) measurements in the foot and ankle. These emerging imaging modalities are currently used to evaluate foot and ankle conditions including ankle osteoarthritis, progressive collapsing foot deformity, midfoot instability, and hallux valgus. This study aims first to provide a comprehensive review of clinical studies that have utilized these 3D methodologies. As a second goal, this study presents the methodological approach proposed by an international task force of experts toward addressing those concerns to provide validated guidelines for 3D static and dynamic measurements.
负重计算机断层扫描和荧光透视的使用日益增加,促使人们需要对足踝部的三维(3D)测量进行标准化。这些新兴的成像方式目前用于评估足踝部疾病,包括踝骨关节炎、进行性足部塌陷畸形、中足不稳和拇外翻。本研究的首要目的是全面回顾利用这些三维方法的临床研究。作为第二个目标,本研究介绍了一个国际专家特别工作组提出的方法,以解决这些问题,为三维静态和动态测量提供经过验证的指南。