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How deep can straight instruments be inserted into the femoral canal: a simulation study based on cadaveric femora*

机译:笔直的器械可以插入股骨管多深:基于尸体股骨的模拟研究*

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Determining how deep instruments can be inserted into the femoral canal without touching adjacent structures is a fundamental necessity for navigating instruments in primary and revision total hip arthroplasty. The aim of the study was to determine the reachable depth of a straight instrument inserted into the femur canal during primary and revision total hip arthroplasty. Based on the three-dimensional data of twenty-six femurs, obtained from a CT scan, the insertion depth of a virtual, straight instrument was accessed by a simulation. The effect of the diameter of the virtual instrument and the extension of the osteotomy were evaluated. Without extending the osteotomy, 100% of the femoral canal was reachable to a depth of 5.1–6.3?cm for instruments with a diameter of 10?mm. The depth was measured from the lower edge of the osteotomy. A maximum lateral extension of the osteotomy by 1?cm enlarges the access to a depth of 8.8?cm. The results provide a theoretical basis for the limitations of guiding instruments used for the preparation of the femoral canal. Bone preserving methods need the development of angulated instruments to reach deep areas in the femoral canal.
机译:确定在不接触相邻结构的情况下可以将多深的器械插入股管是在初次和全髋关节置换术中导航器械的基本必要条件。该研究的目的是确定在初次和翻修全髋关节置换术期间插入股骨管的笔直器械的可到达深度。根据从CT扫描获得的26个股骨的三维数据,通过仿真访问虚拟笔直器械的插入深度。评价了虚拟器械的直径和截骨术的扩展的影响。在不进行截骨术的情况下,对于直径为10?mm的器械,股骨管的100%可以到达5.1-6.3?cm的深度。从截骨术的下边缘开始测量深度。截骨术的最大横向延伸量为1?cm,可将深度扩大到8.8?cm。研究结果为指导股骨管准备使用的器械的局限性提供了理论基础。骨保护方法需要发展成角度的器械才能到达股管深处。

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