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A comparison of the 3D kinematic measurements obtained by single-plane 2D-3D image registration and RSA

机译:通过单平面2D-3D图像配准和RSA获得的3D运动学测量结果的比较

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摘要

3D computed tomography (CT) to single-plane 2D fluoroscopy registration is an emerging technology for many clinical applications such as kinematic analysis of human joints and image-guided surgery. However, previous registration approaches have suffered from the inaccuracy of determining precise motion parameters for out-of-plane movements. In this paper we compare kinematic measurements obtained by a new 2D-3D registration algorithm with measurements provided by the gold standard Roentgen Stereo Analysis (RSA). In particular, we are interested in the out-of-plane translation and rotations which are difficult to measure precisely using a single plane approach. Our experimental results show that the standard deviation of the error for out-of-plane translation is 0.42 mm which compares favourably to RSA. It is also evident that our approach produces very similar flexion/extension, abduction/adduction and external knee rotation angles when compared to RSA.
机译:从3D计算机断层扫描(CT)到单平面2D荧光检查的配准是一种新兴技术,可用于许多临床应用,例如人体关节的运动学分析和图像引导的手术。但是,先前的配准方法一直存在为平面外运动确定精确运动参数的准确性。在本文中,我们将通过新的2D-3D配准算法获得的运动学测量结果与黄金标准伦琴立体声分析(RSA)提供的测量结果进行比较。尤其是,我们对平面外平移和旋转感兴趣,而使用单平面方法很难精确地测量这些平移和旋转。我们的实验结果表明,平面外平移误差的标准偏差为0.42 mm,与RSA相比是有利的。同样明显的是,与RSA相比,我们的方法产生非常类似的屈曲/伸展,外展/内收和外部膝关节旋转角度。

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