Zarb Francis, McEntee Mark F, Rainford Louise
Department of Radiography, Faculty of Health Sciences, University of Malta, Msida, Malta,
Insights Imaging. 2015 Jun;6(3):393-401. doi: 10.1007/s13244-014-0374-9. Epub 2014 Dec 16.
To evaluate visual grading characteristics (VGC) and ordinal regression analysis during head CT optimisation as a potential alternative to visual grading assessment (VGA), traditionally employed to score anatomical visualisation.
Patient images (n = 66) were obtained using current and optimised imaging protocols from two CT suites: a 16-slice scanner at the national Maltese centre for trauma and a 64-slice scanner in a private centre. Local resident radiologists (n = 6) performed VGA followed by VGC and ordinal regression analysis.
VGC alone indicated that optimised protocols had similar image quality as current protocols. Ordinal logistic regression analysis provided an in-depth evaluation, criterion by criterion allowing the selective implementation of the protocols. The local radiology review panel supported the implementation of optimised protocols for brain CT examinations (including trauma) in one centre, achieving radiation dose reductions ranging from 24 % to 36 %. In the second centre a 29 % reduction in radiation dose was achieved for follow-up cases.
The combined use of VGC and ordinal logistic regression analysis led to clinical decisions being taken on the implementation of the optimised protocols. This improved method of image quality analysis provided the evidence to support imaging protocol optimisation, resulting in significant radiation dose savings.
• There is need for scientifically based image quality evaluation during CT optimisation. • VGC and ordinal regression analysis in combination led to better informed clinical decisions. • VGC and ordinal regression analysis led to dose reductions without compromising diagnostic efficacy.
评估头部CT优化过程中的视觉分级特征(VGC)和有序回归分析,作为传统上用于对解剖结构可视化进行评分的视觉分级评估(VGA)的潜在替代方法。
使用当前和优化的成像协议从两个CT设备获取患者图像(n = 66):马耳他国家创伤中心的一台16层扫描仪和一个私立中心的一台64层扫描仪。当地住院放射科医生(n = 6)先进行VGA,然后进行VGC和有序回归分析。
仅VGC表明优化后的协议与当前协议具有相似的图像质量。有序逻辑回归分析提供了深入评估,逐个标准地允许有选择地实施这些协议。当地放射学审查小组支持在一个中心实施针对脑部CT检查(包括创伤)的优化协议,实现了24%至36%的辐射剂量降低。在第二个中心,随访病例的辐射剂量降低了29%。
VGC和有序逻辑回归分析的联合使用导致了关于优化协议实施的临床决策。这种改进的图像质量分析方法为支持成像协议优化提供了证据,从而显著节省了辐射剂量。
• 在CT优化过程中需要基于科学的图像质量评估。• VGC和有序回归分析相结合导致了更明智地临床决策。• VGC和有序回归分析在不影响诊断效能的情况下降低了剂量。