Oraa Jaime, Beitia Maider, Fiz Nicolás, González Sergio, Sánchez Xabier, Delgado Diego, Sánchez Mikel
Arthroscopic Surgery Unit, Hospital Vithas Vitoria, 01008 Vitoria-Gasteiz, Spain.
Advanced Biological Therapy Unit, Hospital Vithas Vitoria, 01008 Vitoria-Gasteiz, Spain.
J Clin Med. 2021 Jul 29;10(15):3366. doi: 10.3390/jcm10153366.
Femoral shaft fractures are one of the most common injuries in trauma patients. The gold standard treatment consists of closed reduction and intramedullary nailing, providing a high fracture healing rate and allowing early mobilization. However, rotational malalignment is a well-known complication following this procedure, and excessive femoral anteversion or femoral retroversion can trigger functional complaints. In order to achieve the ideal degree of femoral rotation, a 3D planning and printing cutting guides procedure was developed to correct femoral malrotation. A patient series with malalignment after a femoral diaphyseal fracture was operated on with the customized guides and evaluated in this study. Computed tomography scans were performed to accurately determine the number of degrees of malrotation, allowing the design of specific and personalized surgical guides to correct these accurately. Once designed, they were produced by 3D printing. After surgery with the customized guides to correct femoral malrotation, all patients presented a normalized anteversion angle of the femur (average -10.3°, range from -5° to -15°), according to their contralateral limb. These data suggest that the use of customized cutting guides for femoral osteotomy is a safe and reproducible surgical technique that offers precise results when correcting femoral malrotation.
股骨干骨折是创伤患者中最常见的损伤之一。金标准治疗包括闭合复位和髓内钉固定,可实现较高的骨折愈合率并允许早期活动。然而,旋转畸形是该手术后众所周知的并发症,股骨过度前倾或后倾会引发功能障碍。为了达到理想的股骨旋转角度,开发了一种三维规划和打印切割导板程序来纠正股骨旋转不良。本研究对一组股骨干骨折后出现畸形的患者使用定制导板进行手术并进行评估。进行计算机断层扫描以准确确定旋转不良的度数,从而设计出特定的个性化手术导板以准确纠正这些问题。一旦设计完成,就通过3D打印制作出来。使用定制导板进行股骨截骨术纠正股骨旋转不良后,根据对侧肢体情况,所有患者的股骨前倾角度均恢复正常(平均-10.3°,范围为-5°至-15°)。这些数据表明,使用定制切割导板进行股骨截骨术是一种安全且可重复的手术技术,在纠正股骨旋转不良时能提供精确的结果。