Yücel H, Çubukçu Ş, Uyar E, Engin Y
Ankara University, Institute of Nuclear Sciences, Department of Medical Physics, 06100 Tandoğan, Ankara, Turkey.
Phys Med Biol. 2014 Nov 21;59(22):6749-58. doi: 10.1088/0031-9155/59/22/6749. Epub 2014 Oct 20.
The energy dependence of the response of BC-408 plastic scintillator (PS), an approximately water-equivalent material, has been investigated by employing standardized x-ray beams. IEC RQA and ISO N series x-ray beam qualities, in the range of 40-100 kVp, were calibrated using a PTW-type ionization chamber. The energy response of a thick BC-408 PS detector was measured using the multichannel pulse height analysis method. The response of BC-408 PS increased gradually with increasing energy in the energy range of 40-80 kVp and then showed a flat behavior at about 80 to 120 kVp. This might be due to the self-attenuation of scintillation light by the scintillator itself and may also be partly due to the ionization quenching, leading to a reduction in the intensity of the light output from the scintillator. The results indicated that the sensitivity drop in BC-408 PS material at lower photon energies may be overcome by adding some high-Z elements to its polyvinyltoluene (PVT) base. The material modification may compensate for the drop in the response at lower photon energies. Thus plastic scintillation dosimetry is potentially suitable for applications in diagnostic radiology.
通过使用标准化X射线束,对一种近似水等效材料——BC - 408塑料闪烁体(PS)的响应能量依赖性进行了研究。在40 - 100 kVp范围内的IEC RQA和ISO N系列X射线束质,使用PTW型电离室进行了校准。使用多通道脉冲高度分析方法测量了厚BC - 408 PS探测器的能量响应。在40 - 80 kVp能量范围内,BC - 408 PS的响应随能量增加而逐渐增加,然后在约80至120 kVp时呈现出平稳状态。这可能是由于闪烁体自身对闪烁光的自吸收,也可能部分归因于电离猝灭,导致闪烁体输出光强度降低。结果表明,通过在其聚对甲苯乙烯(PVT)基体中添加一些高Z元素,可以克服BC - 408 PS材料在较低光子能量下的灵敏度下降。材料改性可以弥补较低光子能量下响应的下降。因此,塑料闪烁体剂量测定法在诊断放射学应用中具有潜在的适用性。