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首页> 外文期刊>Medical Physics >Radiation dose reduction in four-dimensional computed tomography.
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Radiation dose reduction in four-dimensional computed tomography.

机译:二维计算机断层扫描中的辐射剂量减少。

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摘要

Four-dimensional (4D) CT is useful in many clinical situations, where detailed abdominal and thoracic imaging is needed over the course of the respiratory cycle. However, it usually delivers a larger radiation dose than the standard three-dimensional (3D) CT, since multiple scans at each couch position are required in order to provide the temporal information. Our purpose in this work is to develop a method to perform 4D CT scans at relatively low current, hence reducing the radiation exposure of the patients. To deal with the increased statistical noise caused by the low current, we proposed a novel 4D penalized weighted least square (4D-PWLS) smoothing method, which can incorporate both spatial and phase information. The 4D images at different phases were registered to the same phase via a deformable model, thereby, a regularization term combining temporal and spatial neighbors can be designed for the 4D-PWLS objective function. The proposed method was tested with phantom experiments and a patient study, and superior noise suppression and resolution preservation were observed. A quantitative evaluation of the benefit of the proposed method to 4D radiotherapy and 4D PET/CT imaging are under investigation.
机译:二维(4D)CT在许多临床情况下很有用,在整个呼吸周期中需要详细的腹部和胸部成像。但是,它通常比标准的三维(3D)CT发出更大的辐射剂量,因为需要在每个躺椅位置进行多次扫描才能提供时间信息。我们在这项工作中的目的是开发一种在相对较低的电流下执行4D CT扫描的方法,从而减少患者的辐射暴露。为了应对由低电流引起的统计噪声增加,我们提出了一种新颖的4D惩罚加权最小二乘(4D-PWLS)平滑方法,该方法可以同时包含空间和相位信息。通过可变形模型将处于不同相位的4D图像配准至同一相位,从而可以为4D-PWLS目标函数设计一个将时间和空间相邻元素组合在一起的正则项。拟议的方法进行了幻像实验和患者研究的测试,并观察到优异的噪声抑制和分辨率保持。目前正在研究该方法对4D放射治疗和4D PET / CT成像的益处的定量评估。

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