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首页> 外文期刊>Medical engineering & physics. >Estimation of out-of-plane vertebra rotations on radiographic projections using CT data: a simulation study.
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Estimation of out-of-plane vertebra rotations on radiographic projections using CT data: a simulation study.

机译:使用CT数据估算放射线投影上的平面外椎骨旋转:模拟研究。

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This study extends previous research concerning in vivo intervertebral motion by means of single-plane fluoroscopy in an attempt to overcome 2D analysis limitations. Knowledge of out-of-plane vertebra rotations will extend the results provided by planar kinematic studies, which is particularly important for lateral bending investigation where axial rotation accompanies side bending, but is also valuable in sagittal analysis (e.g. indicating an absence of coupled axial rotation). Combining a fluoroscopic projection of a vertebra with volumetric information provided by CT data, vertebra 3D position can be estimated. Out-of-plane vertebral rotations are estimated by comparing Digitally Reconstructed Radiographs (DRRs) in different orientations with a reference fluoroscopic projection, maximising the image cross-correlation index. DRRs have been computed from CT-data using a ray-casting algorithm. In this work a feasibility study of the method was performed by means of a computer simulation. To this end the CT volume (vertebra L4, segmented) provided by the Visible Human Project was utilised and reference fluoroscopic projections were simulated in different orientations adding various levels of noise. Accuracy and precision of the proposed method was determined. Error analysis reveals that an accuracy of less than 1 degree can be achieved in computation of out-of-plane vertebral angles.
机译:这项研究通过单平面荧光检查法扩展了先前有关体内椎间运动的研究,试图克服二维分析的局限性。平面外椎骨旋转的知识将扩展平面运动学研究提供的结果,这对于轴向弯曲伴随侧面弯曲的横向弯曲研究特别重要,但在矢状分析中也很有价值(例如,指示不存在轴向耦合旋转)。将椎骨的荧光透视投影与CT数据提供的体积信息相结合,可以估算椎骨3D位置。通过将不同方向的数字重建射线照片(DRR)与参考荧光透视投影进行比较,可以估计平面外椎骨旋转,从而最大化图像互相关指数。已经使用射线投射算法从CT数据计算了DRR。在这项工作中,该方法的可行性研究是通过计算机模拟进行的。为此,利用了由Visible Human Project提供的CT体积(椎骨L4,分段),并在不同方向模拟了透视荧光投影,增加了各种噪声水平。确定了所提方法的准确性和精确度。误差分析表明,在平面外椎骨角度的计算中,可以达到小于1度的精度。

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