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Deviation analysis of atlantoaxial pedicle screws assisted by a drill template

机译:钻模板辅助下寰枢椎椎弓根螺钉的偏斜分析

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Although C1-C2 pedicle screw fixation provides an excellent fusion rate and rigid fixation, this technique has a potential risk. It is essential to develop an accurate screwing method to avoid this neurovascular injury. To develop and validate the accuracy of a novel navigational template for C1-C2 pedicle screw placement in cadaveric specimens, computed tomography scans with 1-mm-wide cuts were obtained of 32 cadaveric cervical specimens. The authors developed 64 three-dimensional full-scale templates that were created by computer modeling with a rapid prototyping technique from the computed tomography data. Drill templates were constructed with a custom trajectory for each level and side. The drill templates were used to guide the establishment of a pilot hole for screw placement. The average distances between ideal and actual entry points of the C1 pedicle screws in the x, y, and z axes were 0.16±0.46 mm, 0.11±0.52 mm, and -0.01±0.54 mm, respectively, on the left side and 0.11±0.49 mm, 0.01±0.56 mm, and -0.09±0.59 mm, respectively, on the right side. The average distances between ideal and actual entry points of the C2 pedicle screws in the x, y, and z axes were 0.05±0.54 mm, 0.20±0.59 mm, and -0.06±0.58 mm, respectively, on the left side and 0.17±0.55 mm, 0.1±0.58 mm, and -0.01±0.49 mm, respectively, on the right side. Factors related to human error and imprecision are responsible for most malpositioning of instrumentation. The rapid prototyping drill template for C1-C2 screw placement is described to minimize human error, although it introduces error related to computer software and variation in manufacturing.
机译:尽管C1-C2椎弓根螺钉固定提供了极好的融合率和刚性固定,但该技术具有潜在的风险。开发避免这种神经血管损伤的准确的拧紧方法至关重要。为了开发和验证用于尸体标本中C1-C2椎弓根螺钉放置的新型导航模板的准确性,获得了32具尸体宫颈标本的1毫米宽切口的计算机断层扫描。作者开发了64个三维全尺寸模板,这些模板是通过计算机建模和快速成型技术从计算机断层扫描数据中创建的。使用每个级别和每个侧面的自定义轨迹构造钻探模板。钻孔模板用于指导建立用于螺钉放置的导向孔。 C1椎弓根螺钉在x,y和z轴上的理想和实际进入点之间的平均距离在左侧分别为0.16±0.46 mm,0.11±0.52 mm和-0.01±0.54 mm。右侧分别为0.49毫米,0.01±0.56毫米和-0.09±0.59毫米。 C2椎弓根螺钉在x,y和z轴上的理想和实际进入点之间的平均距离在左侧分别为0.05±0.54 mm,0.20±0.59 mm和-0.06±0.58 mm,而在左侧为0.17±右侧分别为0.55毫米,0.1±0.58毫米和-0.01±0.49毫米。与人为错误和不精确度有关的因素是造成仪器放置错误的主要原因。描述了用于C1-C2螺钉放置的快速原型钻模板,以最大程度地减少人为错误,尽管它引入了与计算机软件和制造变化有关的错误。

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