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C-Arm Image-Based Surgical Path Planning Method for Distal Locking of Intramedullary Nails

机译:基于C臂图像的髓内钉远端锁定手术路径规划方法

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Due to the curvature of the bone marrow cavity, the intramedullary nail used in long bone fracture fixation can be deformed, causing displacement of the locking holes. In this study, an algorithm using only one C-arm image to determine the center positions and axial directions of locking holes was developed for drilling guidance. Based on conventional method that the axial direction of locking hole would be identified when locking hole contour is presented as a circle, the proposed method can locate the circle contour centroid by using one C-arm image including two elliptical contours. Then the two distal locking holes’ axial direction and centers would be determined. Three experiments were conducted to verify the performance of the proposed algorithm, which are (1) computer simulation, (2) use of real intramedullary nails, and (3) actual drilling test with the bone model. The experimental results showed that the average error of the axial direction and center position were 0.62 ± 0.6°, 0.73 ± 0.53 mm (simulation) and 3.16 ± 1.36°, 1.10 ± 0.50 mm (actual nail), respectively. The last ten drilling test sets were completed successfully (with an average duration of 48 seconds). Based on the experimental results, the proposed algorithm was feasible for clinic applications.
机译:由于骨髓腔的弯曲,用于长骨折固定的髓内钉会变形,从而导致锁定孔移位。在这项研究中,开发了一种仅使用一个C型臂图像来确定锁定孔的中心位置和轴向方向的算法,用于进行钻孔引导。基于将锁定孔轮廓表示为圆形时识别锁定孔轴向的传统方法,该方法可以通过使用一个包含两个椭圆形轮廓的C臂图像来定位圆形轮廓质心。然后确定两个远端锁定孔的轴向和中心。进行了三个实验以验证所提出算法的性能,它们是(1)计算机模拟,(2)使用真正的髓内钉,以及(3)使用骨骼模型的实际钻孔测试。实验结果表明,轴向和中心位置的平均误差分别为0.62±±0.6°,0.73±0.53mm(模拟)和3.16±1.36°,1.10±0.50mm(实际钉)。最后十个钻孔测试集已成功完成(平均持续时间为48秒)。基于实验结果,该算法对临床应用是可行的。

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