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用于为一种新型螺旋CT扫描协议获取多个代表性波形的目标函数。

Objective function to obtain multiple representative waveforms for a novel helical CT scan protocol.

作者信息

Ruan Dan, Thomas David, Low Daniel A

机构信息

Department of Radiation Oncology, David Geffen Medical School, University of California, Los Angeles, California 90095.

出版信息

Med Phys. 2015 Mar;42(3):1164-9. doi: 10.1118/1.4906128.

Abstract

PURPOSE

To develop objective functions for selecting multiple representative respiratory waveforms. A specific application considered is to reduce the number of swiping scans in a novel helical CT scan protocol to harvest efficiency and dose reduction benefit.

METHODS

The authors consider a general class of potential objective functions consisting of weighted norms on pointwise profile differentials. The authors utilize the Lagrangian approach and derive proper conditions on the formulation based on first and second order optimality conditions. The derived objective functions are applied to clinically acquired respiratory trajectories for swipe subset selection to verify the validity and generality of the proposed rationale. An end-to-end 4DCT reconstruction comparison is performed using a swipe subset of data corresponding to 3 out of the full 25 waveforms to assess the consequence in image quality and dose.

RESULTS

Their results show that maximizing the proposed objective function with the suggested parameters yields maximal spread of trajectories among the selected subset. 4DCT Reconstruction using the chosen subset of data indicates the potential for further dose reduction by about 5 to 10 folds without significant sacrifice in image quality. Experimental results also support further generalization to include slice prioritization.

CONCLUSIONS

The authors have derived a formulation that is both simple and general as a metric to quantify the spread of a set of respiratory trajectories, which can be used for subset selection with potential computation and dose reduction benefit when applied to a newly developed helical 4DCT scan protocol.

摘要

目的

开发用于选择多个代表性呼吸波形的目标函数。所考虑的一个具体应用是在一种新型螺旋CT扫描协议中减少滑动扫描的次数,以提高效率并降低辐射剂量。

方法

作者考虑了一类由逐点轮廓差异上的加权范数组成的潜在目标函数。作者利用拉格朗日方法,并基于一阶和二阶最优性条件在公式上推导适当的条件。将推导得到的目标函数应用于临床获取的呼吸轨迹以进行滑动子集选择,以验证所提出原理的有效性和通用性。使用对应于全部25个波形中的3个波形的数据滑动子集进行端到端4DCT重建比较,以评估对图像质量和剂量的影响。

结果

他们的结果表明,使用建议的参数最大化所提出的目标函数会在所选子集中产生轨迹的最大分散。使用所选数据子集进行的4DCT重建表明,在不显著牺牲图像质量的情况下,有可能进一步将辐射剂量降低约5至10倍。实验结果还支持进一步推广以纳入切片优先级。

结论

作者推导了一种既简单又通用的公式,作为量化一组呼吸轨迹分散程度的度量标准,当应用于新开发的螺旋4DCT扫描协议时,可用于子集选择,具有潜在的计算和剂量降低优势。

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