Fornalski Krzysztof W, Adamowski Łukasz, Bugała Ernest, Jarmakiewicz Rafał, Kirejczyk Marek, Kopyciński Jakub, Krasowska Julianna, Kukulski Piotr, Piotrowski Łukasz, Ponikowska Julia, Reszczyńska Joanna, Słonecka Iwona, Wysocki Paweł, Dobrzyński Ludwik
Faculty of Physics, Warsaw University of Technology (WF PW), Poland.
National Centre for Nuclear Research (NCBJ), Poland.
Dose Response. 2022 Nov 23;20(4):15593258221138506. doi: 10.1177/15593258221138506. eCollection 2022 Oct-Dec.
This review article describes our simplified biophysical model for the response of a group of cells to ionizing radiation. The model, which is a product of 10 years of studies, acts as (a) a comprehensive stochastic approach based on the Monte Carlo simulation with a probability tree and (b) the thereof derived detailed deterministic models describing the selected biophysical and radiobiological phenomena in an analytical manner. Specifically, the presented model describes effects such as the risk of neoplastic transformation of cells relative to the absorbed radiation dose, the dynamics of tumor development, the priming dose effect (also called the Raper-Yonezawa effect) based on the introduced adaptive response approach, and the bystander effect. The model is also modifiable depending on users' potential needs.
这篇综述文章描述了我们用于一组细胞对电离辐射反应的简化生物物理模型。该模型是10年研究的成果,它(a)是一种基于带有概率树的蒙特卡罗模拟的综合随机方法,以及(b)由此推导得出的详细确定性模型,以分析方式描述选定的生物物理和放射生物学现象。具体而言,所呈现的模型描述了诸如细胞相对于吸收辐射剂量的肿瘤转化风险、肿瘤发展动态、基于引入的适应性反应方法的预激剂量效应(也称为拉珀 - 米泽awa效应)以及旁观者效应等效应。该模型还可根据用户的潜在需求进行修改。