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首页> 外文期刊>Journal of applied clinical medical physics / >The effects of metal artifact reduction on the retrieval of?attenuation values
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The effects of metal artifact reduction on the retrieval of?attenuation values

机译:金属伪影减少对衰减值恢复的影响

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BackgroundThe quality of CT slices can be drastically reduced in the presence of high-density objects such as metal implants within the patients’ body due to the occurrence of streaking artifacts. Consequently, a delineation of anatomical structures might not be possible, which strongly influences clinical examination. PurposeThe aim of the study is to clinically evaluate the retrieval of attenuation values and structures by the recently proposed Augmented Likelihood Image Reconstruction (ALIR) and linear interpolation in the presence of metal artifacts. Material and MethodsA commercially available phantom was equipped with two steel inserts. At a position between the metal rods, which shows severe streaking artifacts, different human tissue-equivalent inserts are alternately mounted. Using a single-source computer tomograph, raw data with and without metal rods are acquired for each insert. Images are reconstructed using the ALIR algorithm and a filtered back projection with and without linear interpolation. Mean and standard deviation are compared for a region of interest in the ALIR reconstructions, linear interpolation results, uncorrected images with metal rods, and the images without metal rods, which are used as a reference. Furthermore, the reconstructed shape of the inserts is analyzed by comparing different profiles of the image. ResultsThe measured mean and standard deviation values show that for all tissue classes, the metal artifacts could be reduced using the ALIR algorithm and the linear interpolation. Furthermore, the HU values for the different classes could be retrieved with errors below the standard deviation in the reference image. An evaluation of the shape of the inserts shows that the reconstructed object fits the shape of the insert accurately after metal artifact correction. Moreover, the evaluation shows a drop in the standard deviation for the ALIR reconstructed images compared to the reference images while reducing artifacts and keeping the shape of the inserts, which indicates a noise reduction ability of the ALIR algorithm. ConclusionHU values, which are distorted by metal artifacts, can be retrieved accurately with the ALIR algorithm and the linear interpolation approach. After metal artifact correction, structures, which are not perceptible in the original images due to streaking artifacts, are reconstructed correctly within the image using the ALIR algorithm. Furthermore, the ALIR produced images with a reduced noise level compared to reference images and artifact images. Linear interpolation results in a distortion of the investigated shapes and features remaining streaking artifacts.
机译:背景技术由于出现条纹痕迹,在患者体内存在高密度物体(例如金属植入物)的情况下,CT切片的质量会大大降低。因此,不可能描绘出解剖结构,这会严重影响临床检查。目的研究的目的是通过在金属伪影存在下通过最近提出的增强似然图像重建(ALIR)和线性插值来临床评估衰减值和结构的恢复。材料和方法市售的幻影装备有两个钢制插入物。在金属棒之间的位置,显示出严重的条纹痕迹,将不同的人体组织等效插入物交替安装。使用单源计算机断层扫描仪,可以为每个插件获取带有和不带有金属棒的原始数据。使用ALIR算法和带或不带线性插值的滤波后投影来重建图像。比较ALIR重建中感兴趣区域的平均值和标准偏差,线性插值结果,带有金属棒的未校正图像以及不带有金属棒的图像,将它们用作参考。此外,通过比较图像的不同轮廓来分析插入物的重构形状。结果测量的平均值和标准偏差值表明,对于所有组织类别,可以使用ALIR算法和线性插值来减少金属伪影。此外,可以以低于参考图像中标准偏差的误差来检索不同类别的HU值。对插入物形状的评估表明,在金属伪影校正后,重建的对象准确地适合了插入物的形状。此外,评估结果显示,与参考图像相比,ALIR重建图像的标准差有所降低,同时减少了伪影并保持了插入的形状,这表明ALIR算法具有降噪能力。结论可以使用ALIR算法和线性插值方法准确检索因金属伪影而失真的HU值。经过金属伪影校正后,使用ALIR算法可以在图像内正确重建由于条纹伪影而无法在原始图像中感知的结构。此外,与参考图像和伪影相比,ALIR产生的噪声水平有所降低。线性插值导致所研究形状的变形,并保留剩余的条纹伪影。

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