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氧离子束在大鼠脊髓中的相对生物效应:对传能线密度和剂量的依赖性以及与模型预测的比较。

Relative biological effectiveness of oxygen ion beams in the rat spinal cord: Dependence on linear energy transfer and dose and comparison with model predictions.

作者信息

Glowa Christin, Saager Maria, Hintz Lisa, Euler-Lange Rosemarie, Peschke Peter, Brons Stephan, Scholz Michael, Mein Stewart, Mairani Andrea, Karger Christian P

机构信息

Department of Medical Physics in Radiation Oncology, German Cancer Research Center (DKFZ), Heidelberg, Germany.

National Center for Radiation Research in Oncology (NCRO), Heidelberg Institute for Radiation Oncology (HIRO), Heidelberg, Germany.

出版信息

Phys Imaging Radiat Oncol. 2024 Apr 20;30:100581. doi: 10.1016/j.phro.2024.100581. eCollection 2024 Apr.

Abstract

BACKGROUND AND PURPOSE

Ion beams exhibit an increased relative biological effectiveness (RBE) with respect to photons. This study determined the RBE of oxygen ion beams as a function of linear energy transfer (LET) and dose in the rat spinal cord.

MATERIALS AND METHODS

The spinal cord of rats was irradiated at four different positions of a 6 cm spread-out Bragg-peak (LET: 26, 66, 98 and 141 keV/µm) using increasing levels of single and split oxygen ion doses. Dose-response curves were established for the endpoint paresis grade II and based on ED (dose at 50 % effect probability), the RBE was determined and compared to model predictions.

RESULTS

When LET increased from 26 to 98 keV/µm, ED decreased from 17.2 ± 0.3 Gy to 13.5 ± 0.4 Gy for single and from 21.7 ± 0.4 Gy to 15.5 ± 0.5 Gy for split doses, however, at 141 keV/µm, ED rose again to 15.8 ± 0.4 Gy and 17.2 ± 0.4 Gy, respectively. As a result, the RBE increased from 1.43 ± 0.05 to 1.82 ± 0.08 (single dose) and from 1.58 ± 0.04 to 2.21 ± 0.08 (split dose), respectively, before declining again to 1.56 ± 0.06 for single and 1.99 ± 0.06 for split doses at the highest LET. Deviations from RBE-predictions were model-dependent.

CONCLUSION

This study established first RBE data for the late reacting central nervous system after single and split doses of oxygen ions. The data was used to validate the RBE-dependence on LET and dose of three RBE-models. This study extends the existing data base for protons, helium and carbon ions and provides important information for future patient treatments with oxygen ions.

摘要

背景与目的

相对于光子,离子束具有更高的相对生物效应(RBE)。本研究确定了氧离子束的RBE与大鼠脊髓中传能线密度(LET)和剂量的函数关系。

材料与方法

使用递增水平的单次和分割氧离子剂量,在6厘米扩展布拉格峰的四个不同位置(LET:26、66、98和141 keV/μm)对大鼠脊髓进行照射。针对终点II级轻瘫建立剂量反应曲线,并基于ED(效应概率为50%时的剂量)确定RBE,并与模型预测结果进行比较。

结果

当LET从26 keV/μm增加到98 keV/μm时,单次剂量的ED从17.2±0.3 Gy降至13.5±0.4 Gy,分割剂量的ED从21.7±0.4 Gy降至15.5±0.5 Gy;然而,在141 keV/μm时,ED又分别升至15.8±0.4 Gy和17.2±0.4 Gy。结果,RBE分别从1.43±0.05增至1.82±0.08(单次剂量)和从1.58±0.04增至2.21±0.08(分割剂量),之后在最高LET时又分别降至1.56±0.06(单次剂量)和1.99±0.06(分割剂量)。与RBE预测值的偏差取决于模型。

结论

本研究首次建立了单次和分割剂量氧离子照射后迟发性反应中枢神经系统的RBE数据。这些数据用于验证三种RBE模型对LET和剂量的RBE依赖性。本研究扩展了现有的质子、氦离子和碳离子数据库,并为未来氧离子治疗患者提供了重要信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b569/11070926/259726e1bc3b/gr1.jpg

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