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Evaluation of accuracy of an electromagnetic computer-assisted navigation system in total knee arthroplasty

机译:电磁计算机辅助导航系统在全膝关节置换术中的准确性评估

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摘要

The objective of this study was to develop a method to assess the accuracy of an electromagnetic technology image-free navigation system for total knee arthroplasty in a leg with normal or abnormal mechanical alignment. An acrylic phantom leg was constructed to simulate tibia and femur deformation. Determination of actual leg alignment was achieved using a digital caliper unit. In the setting of normal alignment, the mean error of the system characterised as the difference between the measured computer navigation and digital caliper angles ranged between 0.8° (frontal plane) and 1.5° (lateral plane). In the setting of abnormal alignment, the mean error ranged between 0.4° (frontal plane) and 1.6° (lateral plane). Deformity had no demonstrable effect on accuracy. The study demonstrates satisfactory in vitro system accuracy in both normal and abnormal leg mechanical alignment settings.
机译:这项研究的目的是开发一种方法来评估具有正常或异常机械对齐方式的腿部全膝关节置换术的电磁技术无图像导航系统的准确性。构造了丙烯酸假肢腿以模拟胫骨和股骨变形。使用数字卡尺单元可以确定实际的腿部对齐方式。在法线对齐的设置中,系统的平均误差的特征是所测得的计算机导航角度与数字卡尺角度之间的差值介于0.8°(正面)和1.5°(侧面)之间。在异常对准的情况下,平均误差在0.4°(前平面)和1.6°(侧面)之间。变形对准确性没有明显影响。该研究证明了正常和异常腿部机械对准设置中令人满意的体外系统精度。

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