Supramaniam Thasmeera T, Udin Muhammad Y, Musarudin Marianie
School of Health Sciences, Health Campus, Universiti Sains Malaysia, Kelantan, Malaysia.
Department of Nuclear Medicine, Radiotherapy and Oncology, Hospital Pakar Universiti Sains Malaysia, Kelantan, Malaysia.
World J Nucl Med. 2024 Nov 19;24(1):47-56. doi: 10.1055/s-0044-1795102. eCollection 2025 Mar.
In nuclear medicine, quality control (QC) activities adhere to international standards, yet their complexity can pose challenges. Gamma camera manufacturers have introduced integrated QC software, offering instantaneous results. However, the agreement of these automated processes with established protocols remains uncertain. This study aims to clarify this uncertainty by comparatively analyzing uniformity from various software solutions for a dual-head gamma camera. The study utilized integrated QC analysis software and three free QC analysis tools (IAEA-NMQC Toolkit, NM Toolkit, and Fiji) for uniformity analyses. Following the National Electrical Manufacturers Association standards, NEMA Standards Publication NU 1-2018, the intrinsic uniformity test was performed on a GE Discovery NM/CT 670 Pro system. Ten uniformity QC images underwent analysis with both integrated QC software and alternative software. Data agreements were tested using the Blant-Altman regression-based analysis. Significant differences were observed in integral and differential uniformities ( < 0.001). The central field of view (useful field of view) integral uniformity mean differences for NMQC Toolkit, NM Toolkit, and Fiji were 2.46% (2.34%), 2.44% (2.31%), and 2.56% (2.64%), respectively. Conversely, x-differential and y-differential uniformity mean differences were consistently under 2%. Regression-based analysis confirmed good agreement between computed values. The integrated QC software of Discovery NM/CT 670 Pro provides reliable uniformity analysis, aligned with the NEMA standards. Variations in computed values may stem from differences in pixel values and applied data corrections.
在核医学中,质量控制(QC)活动遵循国际标准,但其复杂性可能带来挑战。伽马相机制造商推出了集成QC软件,可提供即时结果。然而,这些自动化流程与既定协议的一致性仍不确定。本研究旨在通过对双头伽马相机的各种软件解决方案的均匀性进行比较分析来澄清这种不确定性。
该研究使用集成QC分析软件和三种免费QC分析工具(国际原子能机构 - NMQC工具包、NM工具包和斐济)进行均匀性分析。按照美国国家电气制造商协会标准,即NEMA标准出版物NU 1 - 2018,在GE Discovery NM/CT 670 Pro系统上进行固有均匀性测试。对十张均匀性QC图像使用集成QC软件和替代软件进行分析。使用基于布兰德 - 奥特曼回归的分析测试数据一致性。
在积分均匀性和微分均匀性方面观察到显著差异(<0.001)。NMQC工具包、NM工具包和斐济的中心视野(有效视野)积分均匀性平均差异分别为2.46%(2.34%)、2.44%(2.31%)和2.56%(2.64%)。相反,x微分和y微分均匀性平均差异始终低于2%。基于回归的分析证实计算值之间具有良好的一致性。
Discovery NM/CT 670 Pro的集成QC软件提供了可靠的均匀性分析,符合NEMA标准。计算值的差异可能源于像素值和应用的数据校正的差异。