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研究 Tc 在微尺寸离子交换树脂上的吸附,以实现 SPECT 的高活性。

Study of Tc absorption on micro-sized ion exchange resins to achieve high activity for SPECT.

机构信息

Beijing Engineering Research Center of Industrial Spectrum Imaging, School of Automation and Electrical Engineering, University of Science and Technology Beijing, Beijing, 100083, China.

Department of Engineering Physics, Tsinghua University, Beijing, 100084, China.

出版信息

Appl Radiat Isot. 2022 Aug;186:110256. doi: 10.1016/j.apradiso.2022.110256. Epub 2022 May 6.

Abstract

In single-photon emission computed tomography (SPECT), a micro-sized Tc source is routinely used for performance measurement, geometry calibration, and system matrix generation. Therefore, a micro-sized source is critical in nuclear instrument production and quality control. Standard methods can only produce a point source with a large size and low total activity, as they are limited by the concentration of the Tc solution. The absorption of Tc on ion exchange resins has been used; however, few studies have quantitatively evaluated the absorption process and optimized the source activity. This paper proposes a procedure for producing a micro-sized Tc resin source with a super-high concentration, as well as a method for the fast measurement of the point source time-activity curve (TAC). Experiments on two resin point sources with diameters of 0.681 mm and 0.326 mm were carried out. Two semi-empirical models, including the first kinetic model and the pseudo-second-order rate equation model, were used to fit TACs. The results show the first kinetic model fit better, which suggests an acquisition time of 2-4 h is needed for optimization. The verification experiment demonstrates a resin point source with a diameter of 0.35 mm and total activity of 10.6 mCi (i.e., 59.1 Ci/mL concentration) was produced.

摘要

在单光子发射计算机断层扫描(SPECT)中,通常使用微小型 Tc 源进行性能测量、几何校准和系统矩阵生成。因此,微小型源对于核仪器的生产和质量控制至关重要。标准方法只能生产出具有大尺寸和低总活度的点源,因为它们受到 Tc 溶液浓度的限制。已经使用了 Tc 在离子交换树脂上的吸附,但很少有研究对吸附过程进行定量评估并优化源活度。本文提出了一种制备超高浓度微小型 Tc 树脂源的方法,以及一种快速测量点源时间-活度曲线(TAC)的方法。对直径为 0.681 mm 和 0.326 mm 的两个树脂点源进行了实验。使用了两个半经验模型,包括第一动力学模型和伪二阶速率方程模型,来拟合 TAC。结果表明,第一动力学模型拟合得更好,这表明需要 2-4 小时的采集时间进行优化。验证实验证明,成功制备了直径为 0.35mm 且总活度为 10.6mCi(即 59.1Ci/mL 浓度)的树脂点源。

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