首页> 外文期刊>Veterinary and Comparative Orthopaedics and Traumatology >Accuracy of Patient-Specific 3D Printed Drill Guides in the Placement of a Canine Coxofemoral Toggle Pin through a Minimally Invasive Approach
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Accuracy of Patient-Specific 3D Printed Drill Guides in the Placement of a Canine Coxofemoral Toggle Pin through a Minimally Invasive Approach

机译:通过微创方法将犬型Coxoforal切换引脚放置患者特定于患者的3D印刷钻杆指南的准确性

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Objective?The aim of this study was to evaluate the accuracy of patient-specific three-dimensional printed drill guides (3D-PDG) for the placement of a coxofemoral toggle via a minimally invasive approach. Materials and Methods?Pre-procedure computed tomography (CT) data of 19 canine cadaveric hips were used to design a cadaver-specific 3D-PDG that conformed to the proximal femur. Femoral and acetabular bone tunnels were drilled through the 3D-PDG, and a coxofemoral toggle pin was placed. The accuracy of tunnel placement was evaluated with post-procedure CT and gross dissection. Results?Coxofemoral toggle pins were successfully placed in all dogs. Mean exit point translation at the fovea capitis was 2.5?mm (0.2–7.5) when comparing pre- and post-procedure CT scans. Gross dissection revealed the bone tunnel exited the fovea capitis inside (3/19), partially inside (12/19) and outside of (4/19) the ligament of the head of the femur. Placement of the bone tunnel through the acetabulum was inside (16/19), partially inside (1/19) and outside (2/19) of the acetabular fossa. Small 1 to 2?mm articular cartilage fragments were noted in 10 of 19 specimens. Clinical Significance?Three-dimensional printed drill guide designed for coxofemoral toggle pin application is feasible. Errors are attributed to surgical execution and identification of the borders of the fovea capitis on CT data. Future studies should investigate modifications to 3D-PDG design and methods. Three-dimensional printed drill guide for coxofemoral toggle pin placement warrants consideration for use in select clinical cases of traumatic coxofemoral luxation.
机译:客观的本研究的目的是评估患者特定的三维打印钻孔指南(3D-PDG)通过微创方法放置髋关节股骨拨动装置的准确性。材料和方法?利用19具犬尸体髋部的术前计算机断层扫描(CT)数据,设计出符合股骨近端的尸体专用3D-PDG。在3D-PDG中钻取股骨和髋臼骨隧道,并放置一个髋股骨栓。通过术后CT和大体解剖评估隧道放置的准确性。后果所有犬均成功置入髋股骨栓。头部中央凹的平均出口点平移为2.5?比较术前和术后CT扫描时,单位为mm(0.2–7.5)。大体解剖显示,骨隧道从股骨头韧带内侧(3/19)、部分内侧(12/19)和外侧(4/19)的头凹流出。穿过髋臼的骨隧道位于髋臼窝内侧(16/19),部分位于髋臼窝内侧(1/19),部分位于髋臼窝外侧(2/19)。小1到2?19个标本中有10个出现mm关节软骨碎片。临床意义?三维打印钻导设计用于髋关节股骨栓应用是可行的。错误归因于手术执行和CT数据上头颅凹边界的识别。未来的研究应调查3D-PDG设计和方法的修改。三维打印的髋股关节扳钉放置钻孔指南可供选择创伤性髋股关节脱位的临床病例使用。

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