南方医科大学学报 ›› 2015, Vol. 35 ›› Issue (02): 218-.

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基于3D打印技术的复杂胫骨平台骨折内固定手术数字化设计

黄华军,张国栋,欧阳汉斌,杨洋,吴章林,许靖,谢普生,黄文华   

  • 出版日期:2015-02-20 发布日期:2015-02-20

Internal fixation surgery planning for complex tibial plateau fracture based on digital
design and 3D printing

  • Online:2015-02-20 Published:2015-02-20

摘要: 目的探讨3D打印技术结合数字化技术在复杂胫骨平台内固定植入方案设计中的应用价值。方法收集临床复杂胫骨平
台骨折病例以及常用胫骨平台钢板的CT数据,在Mimics中进行骨折三维重建、虚拟复位以及建立钢板三维模型库,然后进行
内固定方案的数字化设计。3D打印出骨折复位模型以及钢板模型,在3D模型上按照数字化设计内固定方案进行模拟手术。
比较数字化虚拟手术与3D模型模拟手术的内固定植入效果。结果3D模型模拟手术的手术效果与内固定数字化设计方案的
手术效果一致,二者螺钉长度无明显差异(t=-1.594; v=12; P=0.137)。结论3D打印技术结合数字化设计能有效的提高复杂胫
骨平台骨折内固定植入效果。

Abstract: Objective To investigate the application of 3D printing and digital technology in preoperative assessment and
planning of internal fixation surgery for complex tibial plateau fracture. Methods Complex tibial plateau fractures and
commonly used plates for tibial plateau were imaged using computed tomography (CT) to reconstruct the 3D fracture and
plate models. The 3D models were used to perform virtual reduction and preoperative planning of internal fixation surgery
with the most appropriate plates assisted by the 3D library of plates. According to the optimal plan, the 3D physical models of
tibial plateau fractures and plates were 3D printed to simulate internal fixation operation. The effects of internal fixation were
compared between the virtual surgery and the simulated surgery based on the 3D models. Results The effects of internal
fixation in the simulated surgery based on the 3D models were consistent with those of the virtual surgery. No significant
difference was found in the screw length between the two surgeries. Conclusion The combination of 3D printing and digital
design can improve the effects of internal fixation for complex tibial plateau fractures.