Brolin Gustav, Edenbrandt Lars, Granerus Göran, Olsson Anna, Afzelius David, Gustafsson Agneta, Jonsson Cathrine, Hagerman Jessica, Johansson Lena, Riklund Katrine, Ljungberg Michael
Department of Medical Radiation Physics, Clinical Sciences Lund, Lund University, Lund, Sweden.
EQUALIS AB, Uppsala, Sweden.
Clin Physiol Funct Imaging. 2016 Mar;36(2):146-54. doi: 10.1111/cpf.12208. Epub 2014 Oct 28.
Assessment of image analysis methods and computer software used in (99m) Tc-MAG3 dynamic renography is important to ensure reliable study results and ultimately the best possible care for patients. In this work, we present a national multicentre study of the quantification accuracy in (99m) Tc-MAG3 renography, utilizing virtual dynamic scintigraphic data obtained by Monte Carlo-simulated scintillation camera imaging of digital phantoms with time-varying activity distributions. Three digital phantom studies were distributed to the participating departments, and quantitative evaluation was performed with standard clinical software according to local routines. The differential renal function (DRF) and time to maximum renal activity (Tmax ) were reported by 21 of the 28 Swedish departments performing (99m) Tc-MAG3 studies as of 2012. The reported DRF estimates showed a significantly lower precision for the phantom with impaired renal uptake than for the phantom with normal uptake. The Tmax estimates showed a similar trend, but the difference was only significant for the right kidney. There was a significant bias in the measured DRF for all phantoms caused by different positions of the left and right kidney in the anterior-posterior direction. In conclusion, this study shows that virtual scintigraphic studies are applicable for quality assurance and that there is a considerable uncertainty associated with standard quantitative parameters in dynamic (99m) Tc-MAG3 renography, especially for patients with impaired renal function.
评估用于(99m)Tc - MAG3动态肾图的图像分析方法和计算机软件对于确保可靠的研究结果以及最终为患者提供尽可能最佳的护理至关重要。在这项工作中,我们开展了一项全国多中心研究,旨在评估(99m)Tc - MAG3肾图的定量准确性,该研究利用通过蒙特卡罗模拟闪烁相机对具有随时间变化的活度分布的数字体模进行成像所获得的虚拟动态闪烁数据。向参与的科室分发了三项数字体模研究,并根据当地常规使用标准临床软件进行定量评估。截至2012年,在瑞典进行(99m)Tc - MAG3研究的28个科室中,有21个科室报告了分肾功能(DRF)和肾活性达到最大值的时间(Tmax)。报告的DRF估计值显示,与摄取正常的体模相比,摄取受损的体模的精度显著更低。Tmax估计值也呈现出类似趋势,但仅右肾的差异具有统计学意义。由于左右肾在前后方向上的位置不同,所有体模的测量DRF均存在显著偏差。总之,本研究表明虚拟闪烁研究适用于质量保证,并且在动态(99m)Tc - MAG3肾图中,标准定量参数存在相当大的不确定性,尤其是对于肾功能受损的患者。