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勒让德多项式:Tc-巯基乙酰三甘氨酸肾动态分析中降低噪声的全自动方法。

Legendre Polynomials: A Fully Automatic Method for Noise Reduction in Tc-Mercaptoacetyltriglycine Renogram Analysis.

机构信息

Nuclear Medicine Department, Sainte Elisabeth Hospital, CHU UCL Namur, Namur, Belgium; and

GIGA-CRC (In Vivo Imaging), University of Liège, Liège, Belgium.

出版信息

J Nucl Med Technol. 2020 Dec;48(4):346-353. doi: 10.2967/jnmt.120.244574. Epub 2020 Jul 24.

Abstract

Our purpose was to develop a fully automatic method to deal with the presence of high levels of noise interfering with quantitative analysis of fast, dynamic mercaptoacetyltriglycine renogram images. A method based on Legendre polynomials to fit and filter time-activity curves was proposed. The method was applied to a renal database that contains Monte Carlo (MC)-simulated studies and real adult patient data. Clinically relevant parameters such as relative function, time to maximum uptake (Tmax), and half-emptying time (T1/2) were obtained with the proposed method, the 1-2-1 filter (F121) method recommended in the 2018 guidelines of the European Association of Nuclear Medicine, and a state-of-the-art commercial software program (Hermes) currently used in routine nuclear medicine. The root mean squared error between reference time-activity curves and the same curves with Poisson noise added was about 2 times lower for the Legendre method than for F121. The left relative function for MC and patient data was statistically equivalent for Hermes, Legendre, and F121 ( < 0.001). For MC studies, the Legendre technique performed better that the Hermes method regarding the known values of Tmax ( < 0.05), and the T1/2 determination was significantly improved ( < 0.05). For patient data, the Legendre and F121 methods were less influenced by noise in the data than the Hermes method, particularly for T1/2. In dynamic nuclear medicine imaging, Legendre polynomials appear to be a promising, fully automatic noise-removal tool that is routinely applicable, accurate, and robust.

摘要

我们的目的是开发一种全自动方法来处理干扰快速、动态巯基乙酰三甘氨酸肾图定量分析的高水平噪声。提出了一种基于勒让德多项式的拟合和滤波时间-活性曲线的方法。该方法应用于包含蒙特卡罗(MC)模拟研究和真实成年患者数据的肾脏数据库。使用所提出的方法、2018 年欧洲核医学协会指南推荐的 1-2-1 滤波器(F121)方法和当前常规核医学中使用的最先进的商业软件程序(Hermes)获得了与临床相关的参数,如相对功能、最大摄取时间(Tmax)和半排空时间(T1/2)。与 F121 相比,勒让德方法的参考时间-活性曲线与添加泊松噪声的相同曲线之间的均方根误差约低 2 倍。对于 MC 和患者数据,Hermes、Legendre 和 F121 的左相对功能在统计学上是等效的(<0.001)。对于 MC 研究,在 Tmax 的已知值方面,勒让德技术比 Hermes 方法表现更好(<0.05),并且 T1/2 测定得到了显著改善(<0.05)。对于患者数据,与 Hermes 方法相比,Legendre 和 F121 方法受数据噪声的影响较小,特别是对于 T1/2。在动态核医学成像中,勒让德多项式似乎是一种很有前途的全自动降噪工具,可常规应用、准确且稳健。

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