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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Sensitivity comparison of two L-alanine doped blends to different photon energies.
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Sensitivity comparison of two L-alanine doped blends to different photon energies.

机译:灵敏度的比较两个丙氨酸掺杂混合不同的光子能量。

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Blends of L-alanine (85% weight proportion) with KI (10%) and with PbI2 (10%), these last two compounds acting as dopants, and with PVA (5%) acting as binder, were prepared in water at 80 degrees C. A blend of pure L-alanine (95%) with PVA (5%) was also prepared. The three blends were irradiated with photon beams of different energies (120 kV, Co, and 10 MV) to a unique dose of 30 Gy to compare their sensitivities for those three energies. EPR spectra of the three irradiated blends were recorded in a K-Band spectrometer (24 GHz) taking aliquots of about 4 mg for each blend. The energy sensitivity of a blend was defined as the peak-to-peak amplitude of its EPR spectrum central line. For the Co energy (1.25 MeV) the blends presented practically the same sensitivity, indicating that the presence of the dopants does not affect the sensitivity of L-alanine. For 10 MV x-rays, there was an increment (around 10%-20%) in sensitivity for the two L-alanine doped blends compared with the pure L-alanine blend (not doped). In the case of 120 kV x-rays, the blends ala+KI and ala+PbI showed increments of 10 and 20 times more sensitivity than the pure L-alanine blend. It is concluded that the dopants KI and PbI2 produce a great enhancement of the L-alanine sensitivity to low-energy photons. For the same dopant's content (10%) in the blend, PbI2 showed a better performance. Increasing the PbI2 proportion (30%) in the blend allows the detection of radiation dose as low as 10 mGy for 120 kV x-rays. These results encourage the authors to try to enhance the sensitivity of L-alanine even more by increasing the dopant's content in the blend and diminishing the lower limit detection. Application of these L-alanine doped blends in the dosimetry in diagnostic radiology could be possible.
机译:丙氨酸(85%重量比例)的混合KI(10%)和PbI2(10%),最后这两个化合物作为掺杂物,与PVA (5%)作为粘结剂,80年水就做好了准备度c混合纯丙氨酸(95%)PVA(5%)也准备好了。与光子束辐照不同能量(120千伏、Co和10 MV)独特的剂量30 Gy为那些比较敏感三个能量。在k波段辐射混合记录谱仪(24 GHz)整除约4为每个混合毫克。混合被定义为峰振幅中央线的EPR谱。能源(1.25兆电子伏)的混合几乎相同的灵敏度,这表明掺杂物的存在并不影响丙氨酸的敏感性。是一个增量灵敏度(约10% - -20%)两个丙氨酸掺杂混合比纯丙氨酸混合(不掺杂)。阿拉巴马州的120千伏x射线,混合+ KI和阿拉巴马州+ PbI显示增量的10到20倍灵敏度比纯丙氨酸混合。得出的结论是,掺杂物KI和PbI2产生丙氨酸的增强敏感性低能光子。(10%)混合,PbI2显示一个更好的的性能。在混合允许辐射的检测剂量低至10 mGy 120千伏x射线。结果鼓励作者试图增强丙氨酸更加的敏感增加掺杂剂的混合和内容降低检测下限。应用这些掺丙氨酸混合的剂量学诊断放射学可能的。

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