Movement Analysis Laboratory, IRCCS Istituto Ortopedico Rizzoli, Bologna, Italy.
Movement Analysis Laboratory, IRCCS Istituto Ortopedico Rizzoli, Bologna, Italy.
Foot Ankle Surg. 2021 Feb;27(2):168-174. doi: 10.1016/j.fas.2020.03.013. Epub 2020 Apr 27.
For the diagnosis and treatment of foot and ankle disorders, objective quantification of the absolute and relative orientation angles is necessary. The present work aims at assessing novel techniques for 3D measures of foot bone angles from current Cone-Beam technology.
A normal foot was scanned via weight-bearing CT and 3D-model of each bone was obtained. Principal Component Analysis, landmark-based and mid-diaphyseal axes were exploited to obtain bone anatomical references. Absolute and relative angles between calcaneus and first metatarsal bone were calculated both in 3D and in a simulated sagittal projections. The effects of malpositioning were also investigated via rotations of the entire foot model.
Large angle variations were found between the different definitions. For the 3D relative orientation, variations larger than 10 degrees were found. Foot malposition in axial rotation or in varus/valgus can result in errors larger than 5 and 3 degrees, respectively.
New measures of foot bone orientation are possible in 3D and in weight-bearing, removing operator variability and the effects of foot positioning.
为了诊断和治疗足踝疾病,有必要对绝对和相对方位角进行客观量化。本研究旨在评估从现有的锥形束 CT 获得三维足骨角度测量的新技术。
通过负重 CT 扫描正常足,并获得每个骨骼的三维模型。利用主成分分析、基于标志点和骨干中轴线的方法获得骨骼解剖参考。在三维和模拟矢状投影中分别计算跟骨和第一跖骨之间的绝对和相对角度。还通过整个足模型的旋转来研究定位不当的影响。
不同定义之间存在较大的角度变化。对于三维相对方位,发现变化大于 10 度。轴向旋转或内翻/外翻时足部位置不当可导致误差分别大于 5 度和 3 度。
可以在三维和负重条件下进行新的足骨方位测量,消除操作者变异性和足部定位的影响。