Suppr超能文献

体内验证 BIANCA 生物物理模型:与大鼠脊髓 RBE 数据的基准比较。

In Vivo Validation of the BIANCA Biophysical Model: Benchmarking against Rat Spinal Cord RBE Data.

机构信息

INFN (Italian National Institute for Nuclear Physics), Sezione di Pavia, via Bassi 6, I-27100 Pavia, Italy.

CERN-European Organization for Nuclear Research, 1211 Geneva, Switzerland.

出版信息

Int J Mol Sci. 2020 Jun 1;21(11):3973. doi: 10.3390/ijms21113973.

Abstract

(1) Background: Cancer ion therapy is constantly growing thanks to its increased precision and, for heavy ions, its increased biological effectiveness (RBE) with respect to conventional photon therapy. The complex dependence of RBE on many factors demands biophysical modeling. Up to now, only the Local Effect Model (LEM), the Microdosimetric Kinetic Model (MKM), and the "mixed-beam" model are used in clinics. (2) Methods: In this work, the BIANCA biophysical model, after extensive benchmarking in vitro, was applied to develop a database predicting cell survival for different ions, energies, and doses. Following interface with the FLUKA Monte Carlo transport code, for the first time, BIANCA was benchmarked against in vivo data obtained by C-ion or proton irradiation of the rat spinal cord. The latter is a well-established model for CNS (central nervous system) late effects, which, in turn, are the main dose-limiting factors for head-and-neck tumors. Furthermore, these data have been considered to validate the LEM version applied in clinics. (3) Results: Although further benchmarking is desirable, the agreement between simulations and data suggests that BIANCA can predict RBE for C-ion or proton treatment of head-and-neck tumors. In particular, the agreement with proton data may be relevant if the current assumption of a constant proton RBE of 1.1 is revised. (4) Conclusions: This work provides the basis for future benchmarking against patient data, as well as the development of other databases for specific tumor types and/or normal tissues.

摘要

(1) 背景:由于癌症离子治疗的精度不断提高,而且对于重离子来说,其生物学效应(RBE)相对于传统光子治疗有所提高,因此癌症离子治疗不断发展。RBE 对许多因素的复杂依赖性要求进行生物物理建模。到目前为止,临床中仅使用局部效应模型(LEM)、微剂量动力学模型(MKM)和“混合束”模型。(2) 方法:在这项工作中,BIANCA 生物物理模型在体外进行了广泛的基准测试后,被用于开发一个预测不同离子、能量和剂量下细胞存活率的数据库。通过与 FLUKA 蒙特卡罗输运代码接口,BIANCA 首次与通过 C 离子或质子辐照大鼠脊髓获得的体内数据进行了基准测试。后者是中枢神经系统(CNS)晚期效应的成熟模型,而后者又是头颈部肿瘤的主要剂量限制因素。此外,这些数据被认为可以验证应用于临床的 LEM 版本。(3) 结果:尽管进一步的基准测试是可取的,但模拟与数据之间的一致性表明 BIANCA 可以预测 C 离子或质子对头颈部肿瘤治疗的 RBE。特别是,如果对当前质子 RBE 为 1.1 的恒定假设进行修正,那么与质子数据的一致性可能是相关的。(4) 结论:这项工作为未来与患者数据进行基准测试以及为特定肿瘤类型和/或正常组织开发其他数据库提供了基础。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验