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Comparison study of image quality and effective dose in dual energy chest digital tomosynthesis

机译:双能胸部数字胸部图像质量和有效剂量的比较研究

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The present study aimed to introduce a recently developed digital tomosynthesis system for the chest and describe the procedure for acquiring dual energy bone decomposed tomosynthesis images. Various beam quality and reconstruction algorithms were evaluated for acquiring dual energy chest digital tomosynthesis (CDT) images and the effective dose was calculated with ion chamber and Monte Carlo simulations. The results demonstrated that dual energy CDT improved visualization of the lung field by eliminating the bony structures. In addition, qualitative and quantitative image quality of dual energy CDT using iterative reconstruction was better than that with filtered backprojection (FBP) algorithm. The contrast-to-noise ratio and figure of merit values of dual energy CDT acquired with iterative reconstruction were three times better than those acquired with FBP reconstruction. The difference in the image quality according to the acquisition conditions was not noticeable, but the effective dose was significantly affected by the acquisition condition. The high energy acquisition condition using 130 kVp recorded a relatively high effective dose. We conclude that dual energy CDT has the potential to compensate for major problems in CDT due to decomposed bony structures, which induce significant artifacts. Although there are many variables in the clinical practice, our results regarding reconstruction algorithms and acquisition conditions may be used as the basis for clinical use of dual energy CDT imaging.
机译:目前的研究旨在为胸部引入最近开发的数字自动化学系统,并描述了获取双能骨分解的自由化图像的程序。评估各种光束质量和重建算法以获取双能胸部数字螺旋合成(CDT)图像,并且用离子室和蒙特卡罗模拟计算有效剂量。结果表明,双能CDT通过消除骨结构来改善肺田的可视化。此外,使用迭代重建的双能CDT的定性和定量图像质量优于滤波反冲(FBP)算法。用迭代重建获得的双能CDT的对比度和优异值的优异值,比使用FBP重建获得的三倍。根据采集条件的图像质量的差异不明显,但有效剂量受收集条件的显着影响。使用130 kVP的高能量采集条件记录了相对高的有效剂量。我们得出结论,双能CDT有可能补偿CDT引起的主要问题,由于分解的骨骼结构,诱导显着的伪影。虽然临床实践中存在许多变量,但是我们对重建算法和采集条件的结果可以用作双能CDT成像的临床应用的基础。

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