Very high-energy electron therapy as light-particle alternative to transmission proton FLASH therapy - An evaluation of dosimetric performances

被引:10
作者
Bohlen, Till Tobias [2 ]
Germond, Jean-Francois [1 ,2 ]
Desorgher, Laurent [1 ,2 ]
Veres, Izabella [1 ,2 ]
Bratel, Andreas [3 ]
Landstrom, Eric [3 ]
Engwall, Erik [3 ]
Herrera, Fernanda G. [2 ,4 ]
Ozsahin, Esat Mahmut [2 ,4 ]
Bourhis, Jean [2 ,4 ]
Bochud, Francois [1 ,2 ]
Moeckli, Raphae l [1 ,2 ]
机构
[1] Lausanne Univ Hosp, Inst Radiat Phys, Lausanne, Switzerland
[2] Lausanne Univ, Lausanne, Switzerland
[3] RaySearch Labs, Stockholm, Sweden
[4] Lausanne Univ Hosp, Dept Radiat Oncol, Lausanne, Switzerland
关键词
FLASH; VHEE; Transmission protons; Shoot-through protons; Ultra-high dose rates; RADIATION-THERAPY; RADIOTHERAPY; VHEE; BEAMS; CHALLENGES; GUIDELINES; VMAT;
D O I
10.1016/j.radonc.2024.110177
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Purpose: Clinical translation of FLASH-radiotherapy (RT) to deep-seated tumours is still a technological challenge. One proposed solution consists of using ultra-high dose rate transmission proton (TP) beams of about 200-250 MeV to irradiate the tumour with the flat entrance of the proton depth-dose profile. This work evaluates the dosimetric performance of very high-energy electron (VHEE)-based RT (50-250 MeV) as a potential alternative to TP-based RT for the clinical transfer of the FLASH effect. Methods: Basic physics characteristics of VHEE and TP beams were compared utilizing Monte Carlo simulations in water. A VHEE-enabled research treatment planning system was used to evaluate the plan quality achievable with VHEE beams of different energies, compared to 250 MeV TP beams for a glioblastoma, an oesophagus, and a prostate cancer case. Results: Like TP, VHEE above 100 MeV can treat targets with roughly flat (within +/- 20 %) depth-dose distributions. The achievable dosimetric target conformity and adjacent organs-at-risk (OAR) sparing is consequently driven for both modalities by their lateral beam penumbrae. Electron beams of 400[500] MeV match the penumbra of 200[250] MeV TP beams and penumbra is increased for lower electron energies. For the investigated patient cases, VHEE plans with energies of 150 MeV and above achieved a dosimetric plan quality comparable to that of 250 MeV TP plans. For the glioblastoma and the oesophagus case, although having a decreased conformity, even 100 MeV VHEE plans provided a similar target coverage and OAR sparing compared to TP. Conclusions: VHEE-based FLASH-RT using sufficiently high beam energies may provide a lighter-particle alternative to TP-based FLASH-RT with comparable dosimetric plan quality.
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页数:8
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