Seifi Moradi Mahdi, Shirani Bidabadi Babak
Department of Nuclear Engineering, Faculty of Advanced Sciences and Technologies, University of Isfahan, Isfahan Postal Code: 8174673441, Iran.
Department of Nuclear Engineering, Faculty of Advanced Sciences and Technologies, University of Isfahan, Isfahan Postal Code: 8174673441, Iran.
Appl Radiat Isot. 2018 Nov;141:73-79. doi: 10.1016/j.apradiso.2018.08.019. Epub 2018 Aug 24.
A large number of nuclear medicine radionuclides are Auger-electron-emitters and internal conversion electrons which can transmit significant doses to the patient during diagnosis. Therefore, the dosimetry of these radioisotopes is necessary for the evaluation of their biological effects and their use for treatment and targeted-radiotherapy. In this study, dosimetry calculation of a number of widely used radioisotopes in nuclear medicine was performed on a cellular scale using Geant4-DNA simulation. S-values of some of the diagnostic radioisotopes, including I, I, Tc, Ga, Tl, and In, were evaluated in a homogeneous spherical geometry model with unit density in which the cell and nucleus were concentric. The results revealed that S-values of these diagnostic radioisotopes were mainly greater than S-values of the radioisotope I, which emits β-particles; they were lower but can be compared with At (emitter of alpha particles) in the cellular scale. It shows better the importance of dosimetry calculation of diagnostic Auger-electron-emitting radioisotope in a cellular scale and their applicability in treatment. It should be noted that the S-values obtained out of the Geant4-DNA simulation are in line with the values of the other codes and the MIRD technique.
大量核医学放射性核素是俄歇电子发射体和内转换电子,在诊断过程中会向患者传递大量剂量。因此,这些放射性同位素的剂量学对于评估其生物学效应以及用于治疗和靶向放射治疗是必要的。在本研究中,使用Geant4-DNA模拟在细胞尺度上对核医学中一些广泛使用的放射性同位素进行了剂量学计算。在细胞和细胞核同心的单位密度均匀球形几何模型中评估了一些诊断性放射性同位素的S值,包括碘(I)、铟(In)、锝(Tc)、镓(Ga)、铊(Tl)。结果表明,这些诊断性放射性同位素的S值主要大于发射β粒子的放射性同位素碘(I)的S值;在细胞尺度上,它们较低,但可与发射α粒子的砹(At)相比较。这更好地显示了在细胞尺度上计算诊断性俄歇电子发射放射性同位素剂量学的重要性及其在治疗中的适用性。需要注意的是,从Geant4-DNA模拟中获得的S值与其他代码的值以及MIRD技术的值一致。