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Bow-tie wobble artifact: Effect of source assembly motion on cone-beam CT

机译:领结摆动伪影:信号源运动对锥束CT的影响

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摘要

>Purpose: To investigate the cause of a bow-tie wobble artifact (BWA) discovered on Varian OBI CBCT images and to develop practical correction strategies.>Method and Materials: The dependence of the BWA on phantom geometry, phantom position, specific system, and reconstruction algorithm was investigated. Simulations were conducted to study the dependence of the BWA on scatter and beam hardening corrections. Geometric calibration was performed to rule out other gantry-angle dependent mechanical non-idealities as BWA causes. Air scans were acquired with ball-bearing markers to study the motions of the x-ray head assembly as functions of gantry angle. Based on measurements, we developed hypothesis regarding the BWA cause. Simulations were performed to validate our hypothesis. Two correction strategies were implemented: a measurement-based method, which acquires gantry-dependent normalization projections (NPs); and a model-based method that involves numerically shifting the single-angle NP to compensate for the previously-measured bow-tie-filter (BTF) motion.>Results: The BWA has a diameter of ∼15 cm, is centered at the isocenter, and is reproducible independent of phantom, position, system, reconstruction, and standard corrections, but only when the BTF is used. Measurements identified a 2D sinusoidal gantry-angle-dependent motion of the x-ray head assembly, and it was the BTF motion (>3 mm amplitude projected onto the detector) resulting an intensity mismatch between the all-angle CBCT projections and a single-angle NP that caused the BWA. Both correction strategies were demonstrated effective.>Conclusions: A geometric mismatch between the BTF modulation patterns on CBCT projections and on the NP causes the BWA. The BTF wobble requires additional degrees of freedom in CBCT geometric calibration to characterize.
机译:>目的:调查在瓦里安OBI CBCT图像上发现的领结摆动伪像(BWA)的原因,并制定实用的校正策略。>方法和材料:研究了幻影几何,幻影位置,特定系统和重建算法的BWA。进行仿真以研究BWA对散射和射束硬化校正的依赖性。进行了几何校准,以排除由于BWA引起的其他依赖于机架角度的机械非理想情况。使用滚珠轴承标记进行了空气扫描,以研究X射线头组件的运动与机架角度的关系。基于测量,我们提出了有关BWA原因的假设。进行仿真以验证我们的假设。实施了两种校正策略:一种基于测量的方法,该方法获取依赖于机架的归一化投影(NP); >结果:BWA的直径约为15厘米,并且是基于模型的方法,该方法涉及对单角度NP进行数值移位以补偿先前测量的领结滤波器(BTF)运动。 ,以等中心点为中心,并且可复制,与幻像,位置,系统,重建和标准校正无关,但仅当使用BTF时才可。测量结果确定了X射线头组件的2D正弦龙门角度相关运动,这是BTF运动(投影到检测器上的振幅> 3 mm),导致所有角度CBCT投影与单个CBCT投影之间的强度不匹配。引起BWA的角度NP。两种校正策略均证明有效。>结论: CBCT投影和NP上BTF调制模式之间的几何不匹配导致BWA。 BTF摆动需要CBCT几何校准中的其他自由度来表征。

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