Monini Caterina, Alphonse Gersende, Rodriguez-Lafrasse Claire, Testa Étienne, Beuve Michaël
Univ. Lyon, Univ. Claude Bernard Lyon 1, CNRS/IN2P3, IP2I Lyon, F-69622 Villeurbanne, France.
Laboratoire de Radiobiologie Cellulaire et Moléculaire, Faculté de Médecine Lyon-Sud, 69921 Oullins Cedex, France.
Phys Imaging Radiat Oncol. 2019 Nov 20;12:17-21. doi: 10.1016/j.phro.2019.10.004. eCollection 2019 Oct.
The relative biological effectiveness (RBE) in particle therapy is currently estimated using biophysical models. We compared experimental measurements to the α curves as function of linear energy transfer computed by the Local Effect Model (LEM I-IV), the Microdosimetric Kinetic Model (MKM) and the NanOx model for HSG, V79 and CHO-K1 cells in response to monoenergetic irradiations. Although the LEM IV and the MKM predictions accurately reproduced the trend observed in the data, NanOx yielded a better agreement than the other models for more irradiation configurations. Its estimator was indeed the lowest for three over seven considered cases.
目前,粒子治疗中的相对生物有效性(RBE)是使用生物物理模型进行估算的。我们将实验测量结果与通过局部效应模型(LEM I-IV)、微剂量动力学模型(MKM)和NanOx模型计算得出的α曲线进行了比较,这些模型是关于HSG、V79和CHO-K1细胞在单能辐照下的线性能量转移函数。尽管LEM IV和MKM的预测准确地再现了数据中观察到的趋势,但对于更多的辐照配置,NanOx比其他模型给出了更好的一致性。在七个考虑的案例中,有三个案例其估算值确实是最低的。