Hoyoshi Kazutaka, Sato Kazuhiro, Homma Noriyasu, Mori Issei
Department of Radiological Imaging and Informatics, Tohoku University Graduate School of Medicine, 2-1 Seiryo-Machi, Aoba-Ku, Sendai, Miyagi, 980-8575, Japan.
Department of Radiology, Yamagata University Hospital, 2-2-2 Iidanishi, Yamagata, Yamagata, 990-9585, Japan.
Radiol Phys Technol. 2025 Mar;18(1):157-171. doi: 10.1007/s12194-024-00869-9. Epub 2025 Jan 7.
Accuracies of measuring the artifact index (AI), a quantitative artifact evaluation index in X-ray CT images, were investigated. The AI is calculated based not only on the standard deviation (SD) of the artifact area in the image, but also on the SD of noise components for considering the noise influence. However, conventional measurement methods may not follow this consideration, for example the non-uniformity of the noise distribution is not taken into account, resulting in reducing the accuracy of AI. To address this problem, this study aims to clarify the impact of noise SD measuring (NSDM) error on AI accuracy and improve the accuracy by reducing the NSDM error. Experimental results demonstrated that the conventional noise measurement methods reduced the accuracy of the AI. Specifically, AI inaccuracy due to the NSDM error is severe in the case of weak artifacts and under high noise conditions. Furthermore, the AI accuracy can be improved by reducing the influence of the NSDM error through image smoothing or by correcting NSDM through noise distribution estimation. These results showed that AI can be affected by NSDM errors practically even though it is robust against noise in principle. The impact of NSDM errors must be avoided for reliable artifact evaluation.
研究了在X射线CT图像中测量伪影指数(AI,一种定量伪影评估指标)的准确性。AI不仅基于图像中伪影区域的标准差(SD)来计算,还基于噪声成分的SD来计算,以考虑噪声影响。然而,传统的测量方法可能没有遵循这种考量,例如没有考虑噪声分布的不均匀性,从而导致AI的准确性降低。为了解决这个问题,本研究旨在阐明噪声SD测量(NSDM)误差对AI准确性的影响,并通过减少NSDM误差来提高准确性。实验结果表明,传统的噪声测量方法降低了AI的准确性。具体而言,在伪影较弱和高噪声条件下,由于NSDM误差导致的AI不准确情况较为严重。此外,通过图像平滑减少NSDM误差的影响或通过噪声分布估计校正NSDM,可以提高AI的准确性。这些结果表明,尽管AI原则上对噪声具有鲁棒性,但实际上仍会受到NSDM误差的影响。为了进行可靠的伪影评估,必须避免NSDM误差的影响。