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Cone-beam Tomography from Short-Scan Circle-plus-Arc Data Measured on a C-arm System

机译:通过C型臂系统测量的短扫描圆加圆弧数据得到的锥束断层扫描

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In C-arm computed tomography (CT) systems, the source trajectory does not follow an ideal trajectory. Thus, the real data acquisition geometry is typically expressed by a sequence of projection matrices. However, exact reconstruction algorithms are based on an analytic expression of the projection geometry. In this work, we present a reformulation of an exact reconstruction method to handle projection matrices. In particular, the M-line approach is investigated for a short-scan circle-plus-arc data acquisition. The computation of the derivative with respect to the source trajectory is numerically most critical for which a novel and stable implementation is developed. In order to determine the backprojection range, a 2D polygonal weighting scheme is proposed. Image results are presented from phantom data acquired by a Siemens AXIOM Artis C-arm system. Excellent image results are achieved. Due to the complete data acquisition, the problem of cone artifacts is totally resolved.
机译:在C臂计算机断层扫描(CT)系统中,源轨迹不遵循理想轨迹。因此,实际数据采集几何形状通常由一系列投影矩阵表示。但是,精确的重建算法是基于投影几何形状的解析表达式。在这项工作中,我们提出了一种用于处理投影矩阵的精确重构方法的重新表述。特别是,研究了M线方法用于短扫描圆加弧数据采集。关于源轨迹的导数的计算在数值上是最关键的,为此开发了新颖且稳定的实现方式。为了确定反投影范围,提出了一种二维多边形加权方案。图像结果是由Siemens AXIOM Artis C臂系统获取的幻像数据呈现的。获得了出色的图像效果。由于完整的数据采集,完全解决了圆锥伪影的问题。

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