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Experimental validation of a single shaped filter approach for CT using variable source-to-filter distance for examination of arbitrary object diameters

机译:使用可变源到过滤器距离检查任意物体直径的CT单形状过滤器方法的实验验证

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The purpose of this study was to validate the use of a single shaped filter (SF) for computed tomography (CT) using variable source-to-filter distance (SFD) for the examination of different object diameters. A SF was designed by performing simulations with the purpose of achieving noise homogeneity in the reconstructed volume and dose reduction for arbitrary phantom diameters. This was accomplished by using a filter design method thats target is to achieve a homogeneous detector noise, but also uses a correction factor for the filtered back projection process. According to simulation results, a single SF designed for one of the largest phantom diameters meets the requirements for all diameters when SFD can be adjusted. To validate these results, a SF made of aluminium alloy was manufactured. Measurements were performed on a CT scanner with polymethyl methacrylate (PMMA) phantoms of diameters from 40-100 mm. The filter was positioned at SFDs ranging from 97-168 mm depending on the phantom diameter. Image quality was evaluated for the reconstructed volume by assessing CT value accuracy, noise homogeneity, contrast-to-noise ratio weighted by dose (CNRD) and spatial resolution. Furthermore, scatter distribution was determined with the use of a beam-stop phantom. Dose was measured for a PMMA phantom with a diameter of 100 mm using a calibrated ionization chamber. The application of a single SF at variable SFD led to improved noise uniformity and dose reduction: noise homogeneity was improved from 15% down to about 0%, and dose was reduced by about 37%. Furthermore, scatter dropped by about 32%, which led to reduced cupping artifacts and improved CT value accuracy. Spatial resolution and CNRD was not affected by the SF. By means of a single SF with variable SFD designed for CT, significant dose reduction can be achieved and image quality can be improved by reducing noise inhomogeneity as well as scatter-induced artifacts.
机译:这项研究的目的是验证使用单形状过滤器(SF)进行计算机断层扫描(CT),并使用可变的源到过滤器距离(SFD)来检查不同的物体直径。 SF是通过执行模拟来设计的,目的是在重建体积中实现噪声均匀性,并降低任意幻像直径的剂量。这是通过使用滤波器设计方法来实现的,该方法的目标是实现均匀的检测器噪声,但也将校正因子用于滤波后的反投影过程。根据仿真结果,当可以调整SFD时,为最大幻像直径之一设计的单个SF满足所有直径的要求。为了验证这些结果,制造了铝合金制成的SF。在具有40-100 mm直径的聚甲基丙烯酸甲酯(PMMA)体模的CT扫描仪上进行测量。根据幻像直径,将滤光片放置在97-168 mm的SFD处。通过评估CT值的准确性,噪声均匀性,按剂量(CNRD)加权的对比噪声比和空间分辨率,来评估重建体积的图像质量。此外,使用束阻模来确定散射分布。使用校准的电离室测量直径为100 mm的PMMA体模的剂量。在可变SFD上应用单个SF可以改善噪声均匀性并降低剂量:噪声均匀性从15%降低到约0%,剂量降低了约37%。此外,散射降低了约32%,从而减少了拔罐伪影并提高了CT值精度。空间分辨率和CNRD不受SF的影响。通过为CT设计的具有可变SFD的单个SF,可以通过减少噪声不均匀性以及散射引起的伪像来显着降低剂量,并改善图像质量。

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