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A method to correct for temperature dependence and measure simultaneously dose and temperature using a plastic scintillation detector

机译:一种使用塑料闪烁探测器校正温度依赖性并同时测量剂量和温度的方法

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摘要

Plastic scintillation detectors (PSDs) work well for radiation dosimetry. However, they show some temperature dependence, and a priori knowledge of the temperature surrounding the PSD is required to correct for this dependence. We present a novel approach to correct PSD response values for temperature changes instantaneously and without the need for prior knowledge of the temperature value. In addition to rendering the detector temperature-independent, this approach allows for actual temperature measurement using solely the PSD apparatus. With a temperature-controlled water tank, the temperature was varied from room temperature to more than 40°C and the PSD was used to measure the dose delivered from a cobalt-60 photon beam unit to within an average of 0.72% from the expected value. The temperature was measured during each acquisition with the PSD and a thermocouple and values were within 1°C of each other. The depth-dose curve of a 6-MV photon beam was also measured under warm non-stable conditions and this curve agreed to within an average of −0.98% from the curve obtained at room temperature. The feasibility of rendering PSDs temperature-independent was demonstrated with our approach, which also enabled simultaneous measurement of both dose and temperature. This novel approach improves both the robustness and versatility of PSDs.
机译:塑料闪烁探测器(PSD)可以很好地用于辐射剂量测定。但是,它们显示出一定的温度依赖性,并且需要先验了解PSD周围温度的知识才能纠正这种依赖性。我们提出了一种新颖的方法来校正瞬时温度变化的PSD响应值,而无需事先知道温度值。除了使检测器与温度无关之外,这种方法还允许仅使用PSD设备进行实际温度测量。使用温度可控的水箱,温度从室温变化到40°C以上,并且使用PSD来测量从钴60光子束单元发出的剂量,使其与预期值的平均值相差0.72%以内。在每次采集过程中使用PSD和热电偶测量温度,其值彼此在1°C之内。还在温暖的不稳定条件下测量了6-MV光子束的深度剂量曲线,该曲线与室温下获得的曲线的平均值相差-0.98%。我们的方法证明了使PSD不受温度影响的可行性,该方法还可以同时测量剂量和温度。这种新颖的方法提高了PSD的鲁棒性和多功能性。

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