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一种用于测量断层合成成像系统方向调制传递函数的球形体模方法。

A Sphere Phantom Approach to Measure Directional Modulation Transfer Functions for Tomosynthesis Imaging Systems.

作者信息

Lee Changwoo, Baek Jongduk

出版信息

IEEE Trans Med Imaging. 2016 Mar;35(3):871-81. doi: 10.1109/TMI.2015.2498930. Epub 2015 Nov 9.

Abstract

We propose a sphere phantom approach to measure spatially varying directional modulation transfer functions (MTFs) for tomosynthesis imaging systems. Since the reconstructed tomosynthesis images contain significant artifacts, traditional background detrending techniques may not be effective to estimate the background trends accurately, which is essential to acquire sphere only data. A background detrending technique optimized for local volumes with different cone angles is presented. To measure directional MTFs, we calculate plane integrals of ideal sphere phantom and sphere only data. To minimize the effects of the high level of noise in tomosynthesis images, Richardson-Lucy deconvolution with Tikhonov-Miller is used to estimate directional plane spread function (PlSF). Then, directional MTFs are calculated by taking the modulus of the Fourier transform of the directional PlSFs. The measured directional MTFs are compared with the ideal directional MTFs calculated from a simulated point object. Our results show that the proposed method reliably measures directional MTFs along any desired directions, especially near low frequency regions.

摘要

我们提出了一种球体体模方法,用于测量断层合成成像系统的空间变化方向调制传递函数(MTF)。由于重建的断层合成图像包含显著的伪影,传统的背景去趋势技术可能无法有效地准确估计背景趋势,而这对于仅获取球体数据至关重要。本文提出了一种针对不同锥角的局部体积进行优化的背景去趋势技术。为了测量方向MTF,我们计算理想球体体模和仅球体数据的平面积分。为了最小化断层合成图像中高水平噪声的影响,使用带蒂洪诺夫 - 米勒正则化的理查森 - 卢西反卷积来估计方向平面扩展函数(PlSF)。然后,通过对方向PlSF进行傅里叶变换取模来计算方向MTF。将测量得到的方向MTF与从模拟点物体计算出的理想方向MTF进行比较。我们的结果表明,所提出的方法能够可靠地测量沿任何期望方向的方向MTF,尤其是在低频区域附近。

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