Kachelriess Marc, Sourbelle Katia, Kalender Willi A
Institute of Medical Physics, University of Erlangen-Nürnberg, Henkestrasse 91, D-91052 Erlangen, Germany.
Med Phys. 2006 May;33(5):1269-74. doi: 10.1118/1.2188076.
We propose an empirical cupping correction (ECC) algorithm to correct for CT cupping artifacts that are induced by nonlinearities in the projection data. The method is raw data based, empirical, and requires neither knowledge of the x-ray spectrum nor of the attenuation coefficients. It aims at linearizing the attenuation data using a precorrection function of polynomial form. The coefficients of the polynomial are determined once using a calibration scan of a homogeneous phantom. Computing the coefficients is done in image domain by fitting a series of basis images to a template image. The template image is obtained directly from the uncorrected phantom image and no assumptions on the phantom size or of its positioning are made. Raw data are precorrected by passing them through the once-determined polynomial. As an example we demonstrate how ECC can be used to perform water precorrection for an in vivo micro-CT scanner (TomoScope 30 s, VAMP GmbH, Erlangen, Germany). For this particular case, practical considerations regarding the definition of the template image are given. ECC strives to remove the cupping artifacts and to obtain well-calibrated CT values. Although ECC is a first-order correction and cannot compete with iterative higher-order beam hardening or scatter correction algorithms, our in vivo mouse images show a significant reduction of bone-induced artifacts as well. A combination of ECC with analytical techniques yielding a hybrid cupping correction method is possible and allows for channel-dependent correction functions.
我们提出了一种经验性杯状伪影校正(ECC)算法,用于校正由投影数据中的非线性所引起的CT杯状伪影。该方法基于原始数据,是经验性的,既不需要了解X射线光谱,也不需要了解衰减系数。它旨在使用多项式形式的预校正函数使衰减数据线性化。多项式的系数通过对均匀体模进行一次校准扫描来确定一次。通过将一系列基图像拟合到模板图像,在图像域中计算系数。模板图像直接从未校正的体模图像中获得,并且不对体模大小或其定位做任何假设。原始数据通过将其代入一次确定的多项式进行预校正。作为一个例子,我们展示了ECC如何用于对体内微型CT扫描仪(TomoScope 30 s,VAMP GmbH,德国埃尔朗根)进行水的预校正。针对这种特殊情况,给出了关于模板图像定义的实际考虑因素。ECC致力于消除杯状伪影并获得校准良好的CT值。尽管ECC是一阶校正,无法与迭代高阶束硬化或散射校正算法竞争,但我们的体内小鼠图像也显示出骨诱导伪影显著减少。ECC与解析技术相结合产生一种混合杯状伪影校正方法是可行的,并且允许使用与通道相关的校正函数。