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Image artifacts in digital breast tomosynthesis: Investigation of the effects of system geometry and reconstruction parameters using a linear system approach

机译:数字化乳房断层合成中的图像伪影:使用线性系统方法研究系统几何形状和重建参数的影响

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摘要

Digital breast tomosynthesis (DBT) is a three-dimensional (3D) x-ray imaging modality that reconstructs image slices parallel to the detector plane. Image acquisition is performed using a limited angular range (less than 50 degrees) and a limited number of projection views (less than 50 views). Due to incomplete data sampling, image artifacts are unavoidable in DBT. In this preliminary study, the image artifacts in DBT were investigated systematically using a linear system approximation. A cascaded linear system model of DBT was developed to calculate the 3D presampling modulation transfer function (MTF) with different image acquisition geometries and reconstruction filters using a filtered backprojection (FBP) algorithm. A thin, slanted tungsten (W) wire was used to measure the presampling MTF of the DBT system in the cross-sectional plane defined by the thickness (z-) and tube travel (x-) directions. The measurement was in excellent agreement with the calculation using the model. A small steel bead was used to calculate the artifact spread function (ASF) of the DBT system. The ASF was correlated with the convolution of the two-dimensional (2D) point spread function (PSF) of the system and the object function of the bead. The results showed that the cascaded linear system model can be used to predict the magnitude of image artifacts of small, high-contrast objects with different image acquisition geometry and reconstruction filters.
机译:数字乳房断层合成(DBT)是三维(3D)X射线成像模式,可重建与检测器平面平行的图像切片。使用有限的角度范围(小于50度)和有限数量的投影视图(小于50个视图)执行图像采集。由于数据采样不完整,DBT中不可避免地会出现图像伪影。在这项初步研究中,使用线性系统近似系统地研究了DBT中的图像伪影。开发了DBT的级联线性系统模型,以使用滤波反投影(FBP)算法来计算具有不同图像采集几何形状和重建滤波器的3D预采样调制传递函数(MTF)。使用细的,倾斜的钨丝(W)来测量DBT系统在由厚度(z-)和管子行进(x-)方向定义的横截面上的预采样MTF。测量结果与使用该模型进行的计算非常吻合。一个小钢珠用于计算DBT系统的伪影扩散函数(ASF)。 ASF与系统的二维(2D)点扩展函数(PSF)和磁珠的目标函数的卷积相关。结果表明,级联线性系统模型可用于预测具有不同图像采集几何形状和重建滤波器的高对比度小物体的图像伪像的大小。

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