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X-ray scatter correction method for dedicated breast computed tomography

机译:专用胸部计算机断层扫描的x射线散射校正方法

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>Purpose: To improve image quality and accuracy in dedicated breast computed tomography (BCT) by removing the x-ray scatter signal included in the BCT projections.>Methods: The previously characterized magnitude and distribution of x-ray scatter in BCT results in both cupping artifacts and reduction of contrast and accuracy in the reconstructions. In this study, an image processing method is proposed that estimates and subtracts the low-frequency x-ray scatter signal included in each BCT projection postacquisition and prereconstruction. The estimation of this signal is performed using simple additional hardware, one additional BCT projection acquisition with negligible radiation dose, and simple image processing software algorithms. The high frequency quantum noise due to the scatter signal is reduced using a noise filter postreconstruction. The dosimetric consequences and validity of the assumptions of this algorithm were determined using Monte Carlo simulations. The feasibility of this method was determined by imaging a breast phantom on a BCT clinical prototype and comparing the corrected reconstructions to the unprocessed reconstructions and to reconstructions obtained from fan-beam acquisitions as a reference standard. One-dimensional profiles of the reconstructions and objective image quality metrics were used to determine the impact of the algorithm.>Results: The proposed additional acquisition results in negligible additional radiation dose to the imaged breast (∼0.4% of the standard BCT acquisition). The processed phantom reconstruction showed substantially reduced cupping artifacts, increased contrast between adipose and glandular tissue equivalents, higher voxel value accuracy, and no discernible blurring of high frequency features.>Conclusions: The proposed scatter correction method for dedicated breast CT is feasible and can result in highly improved image quality. Further optimization and testing, especially with patient images, is necessary to characterize its impact on clinical performance.
机译:>目的:通过消除BCT投影中包含的X射线散射信号来提高专用胸部计算机断层扫描(BCT)的图像质量和准确性。>方法: BCT中X射线散射的分布和分布会导致拔罐伪影,并且会降低重建过程中的对比度和准确性。在这项研究中,提出了一种图像处理方法,该方法估计并减去每个BCT投影后采集和预重建中包含的低频X射线散射信号。使用简单的附加硬件,具有可忽略的辐射剂量的附加BCT投影采集以及简单的图像处理软件算法即可执行此信号的估算。使用噪声滤波器后重建,可以降低由于散射信号导致的高频量子噪声。使用蒙特卡洛模拟确定了该算法的剂量学后果和假设的有效性。该方法的可行性是通过在BCT临床原型上对乳房体模进行成像,并将校正后的重建体与未处理的重建体以及从扇形束获取中获得的重建体作为参考标准进行比较来确定的。使用重建的一维轮廓和客观图像质量度量来确定算法的影响。>结果:拟议的额外采集导致成像乳房的额外辐射剂量可忽略不计(约0.4%的辐射)标准BCT采集)。处理过的幻影重建显示出显着减少的拔罐伪影,增加了脂肪和腺组织等效物之间的对比度,提高了体素值的准确性,并且高频特征没有明显的模糊。>结论:建议的专用乳房散射校正方法CT是可行的,可以大大提高图像质量。需要进一步优化和测试,尤其是使用患者图像,以表征其对临床表现的影响。

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