Gholinezhad Shima, Rasmussen John, Halloum Ahmed, Kold Søren, Rahbek Ole
Department of Orthopedic Surgery Aalborg University Hospital Aalborg Denmark.
Department of Medicine Aalborg University Aalborg Denmark.
J Exp Orthop. 2024 Jul 29;11(3):e12111. doi: 10.1002/jeo2.12111. eCollection 2024 Jul.
Postoperative assessment of surgical interventions for correcting femoral rotational deformities necessitates a comparative analysis of femoral rotation pre- and post-surgery. While 2D assessment methods are commonly employed, ongoing debate surrounds their accuracy and reliability. To address the limitations associated with 2D analysis, we introduced and validated a 3D model-based analysis method for quantifying the angular and rotational impact of corrective rotational osteotomy in the growing femur.
The method is based on surface registration of the pre- and post-intervention 3D femoral models. To this end, 3D triangulated surface models were generated using CT images for the right femurs of 11 skeletally immature pigs, each scanned at two distinct time points with a 12-week interval between scans. In our validation procedures, femoral corrective rotational osteotomy of the post-12-week femur was simulated at varying angles of 5, 10, 15 and 20 degrees in three dimensions. Subsequently, a surface 3D/3D registration-based approach was applied to determine the 3D femoral angulation and rotation between the two models to assess the method's detection accuracy of the predefined twist angles as ground truth references.
The results document the precision and accuracy of the registration-based method in evaluating rotation angles. Consistently high accuracy was observed across all angles, with an accuracy rate of 92.97% and a coefficient of variance of 8.14%.
This study has showcased the potential for improving post-operative assessments with significant implications for experimental studies evaluating the effects of correcting rotational deformities in the growing femur.
Not applicable.
对矫正股骨旋转畸形的手术干预进行术后评估,需要对手术前后的股骨旋转情况进行对比分析。虽然二维评估方法被广泛应用,但围绕其准确性和可靠性仍存在争议。为解决二维分析的局限性,我们引入并验证了一种基于三维模型的分析方法,用于量化生长中的股骨矫正旋转截骨术的角度和旋转影响。
该方法基于干预前后三维股骨模型的表面配准。为此,使用计算机断层扫描(CT)图像为11只骨骼未成熟猪的右侧股骨生成三维三角测量表面模型,每只猪在两个不同时间点进行扫描,扫描间隔为12周。在我们的验证过程中,在三维空间中以5度、10度、15度和20度的不同角度模拟12周后股骨的矫正旋转截骨术。随后,应用基于表面三维/三维配准的方法来确定两个模型之间的三维股骨角度和旋转,以评估该方法将预定义扭转角度作为地面真值参考的检测准确性。
结果证明了基于配准的方法在评估旋转角度方面的精度和准确性。在所有角度上均观察到一致的高精度,准确率为92.97%,变异系数为8.14%。
本研究展示了改进术后评估的潜力,对评估生长中的股骨旋转畸形矫正效果的实验研究具有重要意义。
不适用。