Département de Radio-Oncologie, Centre hospitalier de l'Université de Montéfal, 1560 Sherbrooke est, Montréal, Quebec H2L 4MI, Canada.
Med Phys. 2009 Nov;36(11):5214-20. doi: 10.1118/1.3231947.
The design of novel plastic scintillation detectors (PSDs) is impeded by the lack of a suitable framework to simulate and predict their performance. The authors propose to use the signal-to-noise ratio (SNR) to model the performance of PSDs that use charge-coupled devices (CCDs) as photodetectors.
In PSDs using CCDs, the SNR is inversely related to the normalized standard deviation of the dose measurement. Thus, optimizing the SNR directly optimizes the system's precision. In this work, a model of SNR as a function of the system parameters is derived for optical fiber-based PSD systems. Furthermore, this proposed model is validated using experimental results. A formula for the efficiency of fiber coupling to CCDs is derived and used to simulate the performance of a PSD under varying magnifications.
The proposed model is shown to simulate the experimental performance of an actual PSD to a suitable degree of accuracy under various conditions.
The SNR constitutes a useful tool to simulate the dosimetric precision of PSDs. Using the SNR model, recommendations for the design and optimization of PSDs are provided. Using the same framework, recommendations for non-fiber-based PSDs are also provided.
新型塑料闪烁探测器(PSD)的设计受到缺乏合适的框架来模拟和预测其性能的阻碍。作者建议使用信噪比(SNR)来模拟使用电荷耦合器件(CCD)作为光电探测器的 PSD 的性能。
在使用 CCD 的 PSD 中,SNR 与剂量测量的归一化标准偏差成反比。因此,优化 SNR 直接优化了系统的精度。在这项工作中,推导了一个光纤基 PSD 系统中 SNR 作为系统参数函数的模型。此外,使用实验结果验证了该模型。推导出了一种将光纤耦合到 CCD 的效率公式,并用于模拟在不同放大倍数下 PSD 的性能。
所提出的模型在各种条件下都能很好地模拟实际 PSD 的实验性能。
SNR 是模拟 PSD 剂量精度的有用工具。使用 SNR 模型,提供了 PSD 设计和优化的建议。使用相同的框架,还为非光纤基 PSD 提供了建议。