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A pre-operative approach of range of motion simulation and verification for femoroacetabular impingement

机译:股骨髋臼撞击运动模拟和验证的术前方法

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Background Femoroacetabular impingement (FAI) is increasingly recognized as a potential cause of hip osteoarthritis. A system capable of pre-operatively simulating hip range of motion (ROM) by given surface models from either healthy or FAI diseased bone is desirable.Methods An impingement detection system using bounding sphere hierarchies was first developed. Both precision and accuracy of the impingement detection system were verified by a custom-designed phantom to imitate ball-and-socket hip movement. The impingement detection system was then implemented into the hip ROM simulation system to simulate the ROM of (1) healthy pelvis and femur, and (2) healthy pelvis and pathologic femur. The ROM simulation system was also verified by manipulating sawbones under the navigation of an optical tracking system.Results The impingement detection system achieved a distance error of 0.53 +-0.06 mm and an angular error of 0.28 +-0.03?. The impingement detection accuracies were 100%, 100%, and 96% in three different phantom orientations, respectively. The mean errors between simulated and verified ROM were 0.10 +- 1.39? for the 'healthy pelvis and femur' group, and -2.38 +- 3.49? for the 'healthy pelvis and pathologic femur' group.Conclusion The present study demonstrates a pre-operative approach to virtually simulate and predict the functional hip ROM based on the given bone models. The impingement detection and ROM simulation systems developed may also be used for other orthopedic applications. Copyright ? 2011 John Wiley & Sons, Ltd.
机译:背景髋臼前路撞击(FAI)日益被认为是髋骨关节炎的潜在病因。需要一种能够通过给定的健康或FAI患病骨骼的表面模型在术前模拟髋部运动范围(ROM)的系统。方法首先开发了一种使用边界球层次结构的碰撞检测系统。冲击检测系统的精度和准确性均通过定制设计的幻像进行了验证,该幻像模仿了球窝髋关节的运动。然后将撞击检测系统实施到髋关节ROM模拟系统中,以模拟(1)健康骨盆和股骨以及(2)健康骨盆和病理性股骨的ROM。还通过在光学跟踪系统的导航下操纵锯齿来验证ROM仿真系统。结果碰撞检测系统实现了0.53 + -0.06 mm的距离误差和0.28 + -0.03?的角度误差。在三种不同的体模方向上,碰撞检测的准确度分别为100%,100%和96%。模拟和验证的ROM之间的平均误差为0.10±1.39?健康的骨盆和股骨组,以及-2.38 +-3.49?结论本研究证明了一种基于给定骨骼模型虚拟模拟和预测功能性髋关节ROM的术前方法。开发的碰撞检测和ROM模拟系统也可用于其他骨科应用。版权? 2011年John Wiley&Sons,Ltd.

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