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Light-Dependent Resistors as Dosimetric Sensors in Radiotherapy

机译:光敏电阻作为放射治疗中的剂量传感器

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摘要

Safe quality control of radiotherapy treatments lies in reliable dosimetric sensors. Currently, ionization chambers and solid-state diodes along with electrometers as readout systems are accomplishing this task. In this work, we present a well-known and low-cost semiconductor sensor, the light-dependent resistor (LDR), as an alternative to the existing sensing devices for dosimetry. To demonstrate this, a complete characterization of the response to radiation of commercial LDRs has been conducted in terms of sensitivity, reproducibility and thermal correction under different bias voltages. Irradiation sessions have been applied under the common conditions in radiotherapy treatments using a hospital linear accelerator. Moreover, the same electrometer used for the ionization chamber has also been successfully used for LDRs. In comparison with the sensitivity achieved for the ionization chamber (0.2 nC/cGy at 400 V bias voltage), higher sensitivities have been measured for the proposed LDRs, ranging from 0.24 to 1.04 nC/cGy at bias voltages from 30 to 150 V, with a reproducibility uncertainty among samples of around 10%. In addition, LDR temperature dependence has been properly modeled using the simple thermistor model so that an easy thermal drift correction of dose measurements can be applied. Therefore, experimental results show that LDRs can be a reliable alternative to dosimetric sensors with the advantages of low size, affordable cost and the fact that it could be adopted with minimal changes in routine dosimetry quality control since the same readout system is fully compatible.
机译:放射治疗的安全质量控制在于可靠的剂量传感器。当前,电离室和固态二极管以及静电计作为读出系统正在完成这项任务。在这项工作中,我们提出了一种众所周知的低成本半导体传感器,即光敏电阻器(LDR),以替代现有的剂量学传感设备。为了证明这一点,已经在不同偏置电压下的灵敏度,再现性和热校正方面对商用LDR的辐射响应进行了完整的表征。使用医院线性加速器在放射治疗的一般条件下进行了照射。此外,用于电离室的静电计也已成功用于LDR。与电离室的灵敏度(在400 V偏置电压下为0.2 nC / cGy)相比,已提出的LDR的灵敏度在30至150 V偏置电压下为0.24至1.04 nC / cGy。样品之间的重现性不确定度约为10%。此外,已经使用简单的热敏电阻模型对LDR温度依赖性进行了正确建模,以便可以轻松进行剂量测量的热漂移校正。因此,实验结果表明,LDR可以替代剂量学传感器,具有体积小,价格可承受的优势,并且由于相同的读出系统完全兼容,因此可以在常规剂量学质量控制中以最小的变化采用LDR。

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