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Attenuation and image noise level based online z-axis tube current modulation for CT scans independent with localizer radiograph: simulation study and results

机译:基于CT扫描的基于衰减和图像噪声水平的在线z轴管电流调制,独立于定位器射线照片:仿真研究和结果

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With the online z-axis tube current modulation (OZTCM) technique proposed by this work, full automatic exposure control (AEC) for CT systems could be realized with online feedback not only for angular tube current modulation (TCM) but also for z-axis TCM either. Then the localizer radiograph was not required for TCM any more. OZTCM could be implemented with 2 schemes as attenuation based μ-OZTCM and image noise level based 6-OZTCM. Respectively the maximum attenuation of projection readings and standard deviation of reconstructed images can be used to modulate the tube current level in z-axis adaptively for each half (180 degree) or full (360 degree) rotation. Simulation results showed that OZTCM achieved better noise level than constant tube current scan case by using same total dose in mAs. The OZTCM can provide optimized base tube current level for angular TCM to realize an effective auto exposure control when localizer radiograph is not available or need to be skipped for simplified scan protocol in case of emergency procedure or children scan, etc.
机译:利用这项工作提出的在线z轴管电流调制(OZTCM)技术,不仅可以对角管电流调制(TCM)进行在线反馈,而且可以对z轴进行在线反馈,从而可以实现CT系统的全自动曝光控制(AEC)中医也可以。然后,中医不再需要定位器射线照相。 OZTCM可以通过两种方案来实现,分别是基于衰减的μ-OZTCM和基于图像噪声水平的6-OZTCM。投影读数的最大衰减和重建图像的标准偏差分别可用于针对每一半(180度)或全(360度)旋转自适应地调整Z轴上的管电流水平。仿真结果表明,通过使用相同的以mAs为单位的总剂量,OZTCM可以获得比恒定管电流扫描情况更好的噪声水平。 OZTCM可以为角度TCM提供优化的基管电流水平,以在无法使用定位器射线照相或在紧急程序或儿童扫描等情况下需要跳过以简化扫描协议的情况下,实现有效的自动曝光控制。

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