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Characterization of a computed tomography iterative reconstruction algorithm by image quality evaluations with an anthropomorphic phantom

机译:用拟人体模的图像质量评估来表征计算机断层摄影迭代重建算法

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Objective: This study aims to investigate the consequences on dose and image quality of the choices of different combinations of NI and adaptive statistical iterative reconstruction (ASIR) percentage, the image quality parameters of GE CT equipment. Methods: An anthropomorphic phantom was used to simulate the chest and upper abdomen of a standard weight patient. Images were acquired with tube current modulation and different values of noise index, in the range 10-22 for a slice thickness of 5 mm and a tube voltage of 120 kV. For each selected noise index, several image series were reconstructed using different percentages of ASIR (0, 40, 50, 60, 70, 100). Quantitative noise was assessed at different phantom locations. Computed tomography dose index (CTDI) and dose length products (DLP) were recorded. Three radiologists reviewed the images in a blinded and randomized manner and assessed the subjective image quality by comparing the image series with the one acquired with the reference protocol (noise index 14, ASIR 40%). The perceived noise, contrast, edge sharpness and overall quality were graded on a scale from -2 (much worse) to +2 (much better). Results: A repeatable trend of noise reduction versus the percentage of ASIR was observed for different noise levels and phantom locations. The different combinations of noise index and percentage of ASIR to obtain a desired dose reduction were assessed. The subjective image quality evaluation evidenced a possible dose reduction between 24 and 40% as a consequence of an increment of ASIR percentage to 50 or 70%, respectively. Conclusion: These results highlighted that the same patient dose reduction can be obtained with several combinations of noise index and percentages of ASIR, providing a model with which to choose these acquisition parameters in future optimization studies, with the aim of reducing patient dose by maintaining image quality in diagnostic levels.
机译:目的:本研究旨在探讨选择不同的NI组合和自适应统计迭代重建(ASIR)百分比(GE CT设备的图像质量参数)对剂量和图像质量的影响。方法:使用拟人模型模拟标准体重患者的胸部和上腹部。对于5 mm的切片厚度和120 kV的管电压,使用管电流调制和不同的噪声指数值(在10-22范围内)采集图像。对于每个选定的噪声指数,使用不同百分比的ASIR(0、40、50、60、70、100)重建几个图像序列。在不同的体模位置评估了定量噪声。记录计算机断层扫描剂量指数(CTDI)和剂量长度乘积(DLP)。三位放射科医生以盲目和随机的方式查看了图像,并通过将图像系列与参考协议(噪声指数14,ASIR 40%)获得的图像系列进行比较,评估了主观图像质量。感觉到的噪音,对比度,边缘清晰度和整体质量的等级从-2(差得多)到+2(好得多)。结果:在不同的噪声水平和幻象位置,观察到降噪与ASIR百分比的可重复趋势。评估了噪声指数和ASIR百分比的不同组合,以获得所需的剂量降低。主观图像质量评估表明,由于ASIR百分比分别增加到50%或70%,剂量可能减少24%至40%。结论:这些结果表明,噪声指数和ASIR百分比的几种组合可以实现相同的患者剂量减少,从而为将来的优化研究中选择这些采集参数提供了一个模型,旨在通过保持图像减少患者剂量诊断水平的质量。

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