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The Feasibility of Contrast-to-Noise Ratio on Measurements to Evaluate CT Image Quality in Terms of Low-Contrast Detailed Detectability

机译:对对比度噪声比的可行性在测量中评估CT图像质量的低对比度详细可检测性

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摘要

Background: To evaluate contrast-to-noise ratio (CNR) measurements in assessing image quality, in the context of the detectability performance of low-contrast detail (LCD), in computed tomography (CT) images, since exposure to elevated ionising-type radiation is considered to present excessive carcinogenic risk, whilst also causing distress in study subjects. Methods: An LCD phantom module (CTP515) was utilised in the study. Three dissimilar contrast items were used to analyse the ramifications of the proportions of an object on the CNR. Three multidetector CT (MDCT) scanners were used, with 16-MDCT, 64-MDCT and 80-MDCT frameworks, respectively. The CT scans were recreated using three dissimilar remaking algorithms—soft, standard and lung. The effects exerted on the CNR by various remodelling algorithms, as well as the contrast of various objects along with the size of the objects, were explored. The Hounsfield units of each chosen object (one unit representing the outer portion of the object) and the background and the standard deviation of the noise parameter were quantified, and algorithms were developed using MATLAB. Results: The CNR information was greatly influenced by changing the image recreation calculations and was very much increased in the soft-tissue recreation images using 16-MDCT and 64-MDCT. The CNR information was also increased more in the optimum recreation images than in the reproduced images from the computational procedure used in the 80-MDCT. The results did not show any remarkable contrasts in the CNR values between the different object sizes. Overall, a higher kVp produced an improved CNR in all the CT scanners. In particular, there were prominent upgrades in the CNR information when the kVp was increased from 80 to 120. Higher mAs levels gave better CNR values overall, especially for greater section thicknesses. Based on the CNR estimations, the 64-MDCT provided the best correlation among the CT scanners. Conclusions: The objective LCD appraisal method, based on CNR measurements, was confirmed as being useful for checking the different impacts of kVp, mAs and section thickness on the nature of the picture. This procedure was similarly viable in assessing the impacts of the different reconstruction calculations and the different differentiation questions on the nature of the image.
机译:背景:在低对比度细节(LCD)的可检测性能的上下文中,评估评估图像质量的对比度噪声比(CNR)测量,从而在计算断层摄影(CT)图像中,因为暴露于升高的电离型辐射被认为是呈现过量的致癌风险,同时也会导致研究受试者遇险。方法:在研究中使用LCD幻像模块(CTP515)。使用三个不同的对比度项目来分析CNR上对象的比例的后果。使用三个多选传感器CT(MDCT)扫描仪,分别具有16-MDCT,64-MDCT和80 MDCT框架。 CT扫描使用三种不同的重新制定算法 - 软,标准和肺进行重新创建。探讨了各种改造算法施加在CNR上的效果,以及各种物体以及物体尺寸的对比度。量化每个所选对象的Hounsfield单元(表示对象外部的一个单元)和背景和噪声参数的标准偏差,并使用MATLAB开发算法。结果:通过16-MDCT和64-MDCT,通过改变图像娱乐计算,CNR信息极大地影响了图像娱乐计算,并且在软组织娱乐图像中非常增加。在最佳娱乐图像中,CNR信息也比在80-MDCT中使用的计算过程中的再现图像中增加。结果没有显示不同对象尺寸之间的CNR值中的任何显着对比。总的来说,更高的KVP在所有CT扫描仪中产生了改进的CNR。特别地,当KVP从80到120增加时,CNR信息中存在突出的升级。更高的MAS水平总体上的CNR值更好,特别是对于更大的截面厚度。基于CNR估计,64-MDCT提供了CT扫描仪之间的最佳相关性。结论:基于CNR测量的目标LCD评估方法被证实是用于检查KVP,MAS和截面厚度对图片性质的不同影响。在评估不同重建计算的影响和对图像性质的不同分化问题的影响时,该程序在评估不同的影响方面是可行的。

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