International audienceThe 200 MeV electron beam of the CERN Linear Accelerator for Research (CLEAR) user facility at CERN has been intensively used to study the potential use of Very High Energy Electrons (VHEE) in cancer radiotherapy. In particular, irradiation tests have been performed in the high dose rate regime, which has gained a lot of interest for the so called FLASH biological effect, in which cancer cells are damaged while healthy tissue is largely spared. High dose rate dosimetry, though, poses a number of challenges: to validate standard or new methods of passive dosimetry, like radiochromic films and alanine pellets, and especially to develop new methods for real-time dosimetry since the normally used ionization chambers suffer...
International audienceHigh dose-rate radiotherapy, known as FLASH, has been shown to increase the di...
International audienceHigh dose-rate radiotherapy, known as FLASH, has been shown to increase the di...
We have performed dosimetry studies using electron beams with energies up to 50 MeV, which exceed cu...
International audienceThe 200 MeV electron beam of the CERN Linear Accelerator for Research (CLEAR) ...
Despite the increase in interest in using Very High Energy Electron (VHEE) beams for cancer radiothe...
International audienceDespite the increase in interest in using Very High Energy Electron (VHEE) bea...
International audienceDespite the increase in interest in using Very High Energy Electron (VHEE) bea...
Very High Energy Electrons (VHEE) of 50 - 250 MeV are an attractive choice for FLASH radiation thera...
Very High Energy Electrons (VHEE) of 50 - 250 MeV are an attractive choice for FLASH radiation thera...
Very High Energy Electrons (VHEE) of 50 - 250 MeV are an attractive choice for FLASH radiation thera...
Very High Energy Electrons (VHEE) of 50 - 250 MeV are an attractive choice for FLASH radiation thera...
Very High Energy Electrons (VHEE) of 50 - 250 MeV are an attractive choice for FLASH radiation thera...
Very high energy electrons (VHEE) in the range from 100-250 MeV have the potential of becoming an al...
Very high energy electrons (VHEE) in the range from 100-250 MeV have the potential of becoming an al...
Very high energy electrons (VHEE) in the range from 100–250 MeV have the potential of becoming an a...
International audienceHigh dose-rate radiotherapy, known as FLASH, has been shown to increase the di...
International audienceHigh dose-rate radiotherapy, known as FLASH, has been shown to increase the di...
We have performed dosimetry studies using electron beams with energies up to 50 MeV, which exceed cu...
International audienceThe 200 MeV electron beam of the CERN Linear Accelerator for Research (CLEAR) ...
Despite the increase in interest in using Very High Energy Electron (VHEE) beams for cancer radiothe...
International audienceDespite the increase in interest in using Very High Energy Electron (VHEE) bea...
International audienceDespite the increase in interest in using Very High Energy Electron (VHEE) bea...
Very High Energy Electrons (VHEE) of 50 - 250 MeV are an attractive choice for FLASH radiation thera...
Very High Energy Electrons (VHEE) of 50 - 250 MeV are an attractive choice for FLASH radiation thera...
Very High Energy Electrons (VHEE) of 50 - 250 MeV are an attractive choice for FLASH radiation thera...
Very High Energy Electrons (VHEE) of 50 - 250 MeV are an attractive choice for FLASH radiation thera...
Very High Energy Electrons (VHEE) of 50 - 250 MeV are an attractive choice for FLASH radiation thera...
Very high energy electrons (VHEE) in the range from 100-250 MeV have the potential of becoming an al...
Very high energy electrons (VHEE) in the range from 100-250 MeV have the potential of becoming an al...
Very high energy electrons (VHEE) in the range from 100–250 MeV have the potential of becoming an a...
International audienceHigh dose-rate radiotherapy, known as FLASH, has been shown to increase the di...
International audienceHigh dose-rate radiotherapy, known as FLASH, has been shown to increase the di...
We have performed dosimetry studies using electron beams with energies up to 50 MeV, which exceed cu...