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Respiratory regularity gated 4D CT acquisition: concepts and proof of principle

机译:呼吸规律门控4D CT采集:概念和原理证明

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摘要

Four-dimensional CT images are generally sorted through a post-acquisition procedure correlating images with a timesynchronized rnexternal respiration signal. The patient's ability to maintain reproducible respiration is the limiting factor during 4D CT, where artifacts occur in approximately 85% of scans with current technology. To reduce these artifacts and their subsequent effects during radiotherapy planning, a method for improved 4D CT image acquisition that relies on gating 4D CT acquisition based on the real time monitoring of the respiration signal has been proposed. The respiration signal and CT data acquisition are linked, such that data from irregular breathing cycles, which cause artifacts, are not acquired by gating CT acquisition by the respiratory signal. A proof-of-principle application of the respiratory regularity gated 4D CT method using patient respiratory signals demonstrates the potential of this method to reduce artifacts currently found in 4D CT scans. Numerical simulations indicate a potential reduction in motion within a respiratory phase bin by 20-40% depending on tolerances chosen. Additional advantages of the proposed method are dose reduction by eliminating unnecessary oversampling and obviating the need for post-processing to create the 4D CT data set.
机译:通常通过将图像与时间同步的外部呼吸信号相关联的采集后程序对四维CT图像进行分类。患者保持可再现呼吸的能力是4D CT的限制因素,在当前技术下,伪影出现在约85%的扫描中。为了减少这些伪影及其在放射治疗计划期间的后续影响,已经提出了一种基于对呼吸信号进行实时监控的,依赖于门控4D CT采集的改进4D CT图像采集的方法。呼吸信号和CT数据采集是链接在一起的,因此不会通过呼吸信号对CT采集进行门控来采集来自不规则呼吸周期的数据,这些数据会导致伪影。一项使用患者呼吸信号的规律性门控4D CT方法的原理验证应用表明,该方法可减少目前在4D CT扫描中发现的伪影。数值模拟表明,根据所选择的公差,呼吸相位箱内的运动可能会减少20-40%。所提出方法的其他优点是,通过消除不必要的过采样并避免了对后处理以创建4D CT数据集的需要,从而减少了剂量。

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