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Region-of-interest cone-beam CT with a spiral scan

机译:螺旋扫描感兴趣区域的锥束CT

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Abstract: A method is developed which makes it possible to scan and reconstruct an object with cone beam x-ray in a spiral scan path with area detectors much shorter than the length of the object. The method is mathematically exact. If only a region- of-interest of the object is to be imaged, a top circle scan at the top level of the region-of-interest and a bottom circle scan at the bottom level of the region-of-interest are added. The height of the detector is required to cover only the distance between adjacent turns in the spiral projected at the detector. To reconstruct the object, the Radon transform for each plane intersecting the object is computed from the totality of the cone beam data. This is achieved by suitably combining the cone beam data taken at different source positions on the scan path; the angular range of the cone beam data required at each source position can be determined easily with a mask which is the spiral scan path projected on the detector from the current source position. The spiral scan algorithm has been successfully validated with simulated cone beam data. !13
机译:摘要:开发了一种方法,该方法可以利用锥束X射线在螺旋扫描路径中使用面积检测器比对象的长度短得多的对象来扫描和重建对象。该方法在数学上是精确的。如果仅要对对象的感兴趣区域进行成像,则将在感兴趣区域的最高级别的顶部圆扫描和在感兴趣区域的最低级别的底部圆扫描相加。需要探测器的高度仅覆盖投影在探测器上的螺旋形中相邻匝之间的距离。为了重建对象,从锥束数据的总和中计算出与该对象相交的每个平面的Radon变换。这是通过适当组合在扫描路径上不同源位置获取的锥形束数据来实现的;使用掩模可以轻松确定每个光源位置所需的锥束数据的角度范围,该掩模是从当前光源位置投射到检测器上的螺旋扫描路径。螺旋扫描算法已通过仿真锥束数据成功验证。 !13

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