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首页> 外文期刊>Journal of orthopaedic trauma >Computer Hexapod-Assisted Orthopaedic Surgery for the Correction of Tibial Deformities
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Computer Hexapod-Assisted Orthopaedic Surgery for the Correction of Tibial Deformities

机译:电脑六足矫形手术矫正胫骨畸形

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摘要

We describe the intraoperative use of the Taylor Spatial Frame to correct complex multiplanar deformities of the tibia before definitive internal stabilization using minimally invasive techniques. Thirteen consecutive procedures were performed in 12 patients. All deformities of the tibia were assessed with standardized radiographs allowing estimation of the center of rotation of angulation (CORA) or multiple CORA for multiplanar deformities. The cause of the deformity included both posttraumatic and metabolic conditions. A wide range of deformities was deemed appropriate for correction with this technique. All underwent acute intraoperative correction through single or multiple osteotomies mediated by the Taylor Spatial Frame before definitive internal stabilization using a locked intramedullary nail. Deformity correction and restoration of the tibial mechanical axis was achieved in all cases. There were no cases of nonunion. There was only one superficial infection necessitating removal of implants following union of the osteotomies. Two patients developed a common peroneal nerve palsy, 1 had full recovery at 18 months and 1 had partial recovery. Another patient developed a tibial artery pseudoaneurysm treated successfully with a percutaneous stent. This series demonstrates the use of the Taylor Spatial Frame for acute intraoperative correction of complex tibial deformities and definitive internal stabilization.
机译:我们描述了泰勒空间框架术中使用微创技术在确定性内部稳定之前纠正胫骨复杂的多平面畸形的术中使用。 12名患者进行了13次连续手术。使用标准的X射线照片评估胫骨的所有畸形,以便估计多平面畸形的角度旋转中心(CORA)或多个CORA。畸形的原因包括创伤后和代谢状况。广泛的畸形被认为适合用该技术进行矫正。所有患者均通过泰勒空间框架介导的单次或多次截骨术进行急性术中矫正,然后使用锁定的髓内钉进行最终的内部稳定。在所有情况下都可以完成畸形矫正和胫骨机械轴的恢复。没有发生骨不连的情况。仅有一种表面感染需要在截骨术联合后去除植入物。两名患者出现了腓总神经麻痹,1例在18个月时完全康复,1例部分恢复。另一例患者发生了经皮支架成功治疗的胫动脉假性动脉瘤。该系列证明了泰勒空间框架在复杂的胫骨畸形的急性术中矫正和确定的内部稳定性中的应用。

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