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Overranging and overbeaming measurement in area detector computed tomography: A method for simultaneous measurement in volume helical acquisition

机译:区域检测器计算机断层扫描中的超量程和超光束测量:一种同时测量体积螺旋线的方法

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Purpose We propose a novel method to assess overbeaming and overranging, as well as the effect of reducing longitudinal exposure range, by using a dynamic z‐collimator in area detector computed tomography. Methods and materials A 500‐mm diameter cylindrical imaging plate was exposed by helical scanning in a dark room. The beam collimation of the helical acquisitions was set at 32 and 80?mm. Overbeaming and overranging with the dynamic z‐collimator were measured. Results The actual beam widths were approximately 39 and 88?mm at 32 and 80?mm collimation, respectively, and were relatively reduced owing to increased beam collimation. Overranging was 27.0 and 48.2?mm with a pitch of 0.83 and 1.49 at 32?mm collimation and 72.5 and 83.1?mm with a pitch of 0.87 and 0.99 at 80?mm collimation. The dynamic z‐collimator relatively reduced the overranging by 17.3% and 17.1% for the 32 and 80?mm collimation, respectively. Conclusion We devised a method to simultaneously measure overbeaming and overranging with only one helical acquisition. Although the dynamic z‐collimator reduced the overranging by approximately 17%, wider collimation widths and higher pitch settings would increase the exposure dose outside the scan range.
机译:目的我们提出一种新颖的方法,通过在区域检测器计算机断层扫描中使用动态z准直仪来评估超光束和超范围以及减小纵向曝光范围的效果。方法和材料在暗室中通过螺旋扫描将直径为500 mm的圆柱形成像板曝光。螺旋采集的光束准直设置为32和80?mm。测量了动态z准直仪的超光束和超范围。结果在32和80?mm准直条件下,实际光束宽度分别约为39和88?mm,并且由于光束准直度的增加而相对减小。在32毫米准直时,超距为27.0和48.2毫米,间距为0.83和1.49;在80毫米准直时,超距为72.5和83.1毫米,间距为0.87和0.99。动态z准直仪分别将32mm和80mm准直的相对范围缩小了17.3%和17.1%。结论我们设计了一种仅用一个螺旋线即可同时测量超光束和超范围的方法。尽管动态z准直仪将覆盖范围减小了约17%,但较宽的准直宽度和较高的间距设置将增加扫描范围之外的曝光剂量。

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