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Assessment of volumetric noise and resolution performance for linear and nonlinear CT reconstruction methods

机译:线性和非线性CT重建方法的体积噪声评估和分辨率性能

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Purpose: For nonlinear iterative image reconstructions (IR), the computed tomography (CT) noise and resolution properties can depend on the specific imaging conditions, such as lesion contrast and image noise level. Therefore, it is imperative to develop a reliable method to measure the noise and resolution properties under clinically relevant conditions. This study aimed to develop a robust methodology to measure the three-dimensional CT noise and resolution properties under such conditions and to provide guidelines to achieve desirable levels of accuracy and precision. Methods: The methodology was developed based on a previously reported CT image quality phantom. In this methodology, CT noise properties are measured in the uniform region of the phantom in terms of a task-based 3D noise-power spectrum (NPS_(task)). The in-plane resolution properties are measured in terms of the task transfer function (TTF) by applying a radial edge technique to the rod inserts in the phantom. The z-direction resolution properties are measured from a supplemental phantom, also in terms of the TTF. To account for the possible nonlinearity of IR, the NPS_(task) is measured with respect to the noise magnitude, and the TTF with respect to noise magnitude and edge contrast. To determine the accuracy and precision of the methodology, images of known noise and resolution properties were simulated. The NPS_(task) and TTF were measured on the simulated images and compared to the truth, with criteria established to achieve NPS_(task) and TTF measurements with < 10% error. To demonstrate the utility of this methodology, measurements were performed on a commercial CT system using five dose levels, two slice thicknesses, and three reconstruction algorithms (filtered backprojection, FBP; iterative reconstruction in imaging space, IRIS; and sinogram affirmed iterative reconstruction with strengths of 5, SAFIRE5).
机译:目的:对于非线性迭代图像重建(IR),计算机断层扫描(CT)噪声和分辨率属性可能取决于特定的成像条件,例如病变对比度和图像噪声水平。因此,迫切需要开发一种可靠的方法来在临床相关条件下测量噪声和分辨率特性。这项研究旨在开发一种鲁棒的方法来测量此类条件下的三维CT噪声和分辨率特性,并为达到所需的精确度和精确度提供指导。方法:该方法是根据先前报道的CT图像质量模型开发的。在此方法中,根据基于任务的3D噪声功率谱(NPS_(task))在模型的均匀区域中测量CT噪声属性。通过将径向边缘技术应用于模型中的杆插入物,根据任务传递函数(TTF)来测量平面内分辨率属性。 z方向分辨率属性也是根据TTF从补充体模测量的。为了说明IR可能存在的非线性,相对于噪声幅度测量NPS_(task),并相对于噪声幅度和边缘对比度测量TTF。为了确定方法的准确性和精确性,对已知噪声和分辨率属性的图像进行了模拟。在模拟图像上测量了NPS_(task)和TTF,并与真相进行了比较,并建立了以小于10%的误差实现NPS_(task)和TTF测量的标准。为了证明该方法的实用性,在商用CT系统上使用五种剂量水平,两种切片厚度和三种重建算法(滤波反投影,FBP;成像空间中的迭代重建,IRIS;以及正弦图确认具有强度的迭代重建)进行了测量5,SAFIRE5)。

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