The European Joint Research Project UHDpulse – Metrology for advanced radiotherapy using particle beams with ultra-high pulse dose rates - ScienceDirect

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Ultrahigh dose rate pencil beam scanning proton dosimetry using ion chambers and a calorimeter in support of first in‐human FLASH clinical trial - Lee - 2022 - Medical Physics - Wiley Online Library

Clinical Linear Accelerator-Based Electron FLASH: Pathway for Practical Translation to FLASH Clinical Trials - ScienceDirect

Tumour irradiation in mice with a laser-accelerated proton beam

Enabling ultra-high dose rate electron beams at a clinical linear accelerator for isocentric treatments - ScienceDirect

Ion recombination correction factors and detector comparison in a very-high dose rate proton scanning beam - ScienceDirect

FLASH radiotherapy - ScienceDirect

Applied Sciences, Free Full-Text

Numerical modeling of air-vented parallel plate ionization chambers for ultra-high dose rate applications - ScienceDirect

UHDpulse – the new European research project on metrology for radiotherapy using particle beams with ultra-high pulse dose rates

Charge collection efficiency, underlying recombination mechanisms, and the role of electrode distance of vented ionization chambers under ultra-high dose-per-pulse conditions - ScienceDirect

Numerical modeling of air-vented parallel plate ionization chambers for ultra-high dose rate applications - ScienceDirect

Enabling ultra-high dose rate electron beams at a clinical linear accelerator for isocentric treatments - ScienceDirect

Applied Sciences, Free Full-Text

Instruments, Free Full-Text

A focused very high energy electron beam for fractionated stereotactic radiotherapy