放射治疗
剂量学
质子疗法
核医学
闪光灯(摄影)
医学物理学
束流扫描
质子
放射治疗计划
计算机科学
医学
物理
放射科
光学
核物理学
作者
Ana Lourenço,Anna Subiel,Nigel Lee,Samuel Flynn,J.A. COTTERILL,D R Shipley,F. Romanò,Joe Speth,Eunsin Lee,Yongbin Zhang,Zhiyan Xiao,Anthony Mascia,Richard A. Amos,Hugo Palmans,Russell Thomas
标识
DOI:10.1038/s41598-023-28192-0
摘要
Abstract A paradigm shift is occurring in clinical oncology exploiting the recent discovery that short pulses of ultra-high dose rate (UHDR) radiation—FLASH radiotherapy—can significantly spare healthy tissues whilst still being at least as effective in curing cancer as radiotherapy at conventional dose rates. These properties promise reduced post-treatment complications, whilst improving patient access to proton beam radiotherapy and reducing costs. However, accurate dosimetry at UHDR is extremely complicated. This work presents measurements performed with a primary-standard proton calorimeter and derivation of the required correction factors needed to determine absolute dose for FLASH proton beam radiotherapy with an uncertainty of 0.9% (1 $$\sigma$$ σ ), in line with that of conventional treatments. The establishment of a primary standard for FLASH proton radiotherapy improves accuracy and consistency of the dose delivered and is crucial for the safe implementation of clinical trials, and beyond, for this new treatment modality.
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