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A Novel Method for Measuring the MTF of CT Scanners: A Phantom Study

机译:一种测量CT扫描仪MTF的新方法:幻影研究

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The modulation transfer function (MTF) is well known as a crucial parameter in quality assurance of computed tomography (CT) scanners, which provides detailed information of both contrast and resolution of CT images. Different methods have been introduced and developed to calculate the MTF of CT scanners. However, a robust methodology which accurately estimates the MTF of CT scanners under the use of every range of object electron density and tube current-time product (mAs) has not been reported so far. To this aim, a new wavelet-based circular edge method for MTF measurement has been presented in this work. Owning to the edge spread function (ESF) susceptibility to noise, the approach was based on the assumption that the ESF can be decomposed into approximate and detailed information containing different noise levels. To evaluate the performance of our method, an in-house fabricated phantom containing various disk objects covering a range of electron densities from low to high values was scanned by a volumetric 64-slice clinical CT scanner under a range of low tube current from 50 to 100 mAs where image noise levels are higher than those of normal-dose scan protocols. Measurements have shown that our proposed method yielded an accurate estimation of MTF for high-density as well as low-density disk objects and it is valid and stable over the variations of noise levels.
机译:调制传递函数(MTF)是计算机断层扫描(CT)扫描仪质量保证中的关键参数,它提供CT图像对比度和分辨率的详细信息。已经引入和开发了不同的方法来计算CT扫描仪的MTF。但是,到目前为止,还没有一种可靠的方法能够准确估计出在使用各种范围的物体电子密度和管电流-时间乘积(mAs)的情况下CT扫描仪的MTF。为了这个目的,在这项工作中提出了一种新的基于小波的圆边测量方法。由于边缘扩展函数(ESF)对噪声的敏感性,因此该方法基于以下假设:ESF可以分解为包含不同噪声级别的近似和详细信息。为了评估我们方法的性能,使用容积为64片的临床CT扫描仪,在50至50的低管电流范围内,对包含各种磁盘对象的内部制作的体模进行了扫描,该对象覆盖了从低到高的一系列电子密度。 100 mAs,其中图像噪声水平高于正常剂量扫描协议的水平。测量表明,我们提出的方法可以对高密度和低密度磁盘对象的MTF进行准确的估计,并且在噪声水平变化的情况下它是有效且稳定的。

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