Related Experiment Video
Updated: Nov 14, 2025

Dosimetry for Cell Irradiation using Orthovoltage 40-300 kV X-Ray Facilities
Published on: February 20, 2021
Dosimetry for Cell Irradiation using Orthovoltage (40-300 kV) X-Ray Facilities
Morgane Dos Santos1, Vincent Paget2, François Trompier3
1Department of RAdiobiology and Regenerative MEDicine (SERAMED), Laboratory of Radiobiology of Accidental Exposures (LRAcc), Institute for Radiological Protection and Nuclear Safety (IRSN); morgane.dossantos@irsn.fr.
Abstract:
The importance of dosimetry protocols and standards for radiobiological studies is self-evident. Several protocols have been proposed for dose determination using low energy X-ray facilities, but depending on the irradiation configurations, samples, materials or beam quality, it is sometimes difficult to know which protocol is the most appropriate to employ. We, therefore, propose a dosimetry protocol for cell irradiations using low energy X-ray facility. The aim of this method is to perform the dose estimation at the level of the cell monolayer to make it as close as possible to real cell irradiation conditions. The different steps of the protocol are as follows: determination of the irradiation parameters (high voltage, intensity, cell container etc.), determination of the beam quality index (high voltage-half value layer couple), dose rate measurement with ionization chamber calibrated in air kerma conditions, quantification of the attenuation and scattering of the cell culture medium with EBT3 radiochromic films, and determination of the dose rate at the cellular level. This methodology must be performed for each new cell irradiation configuration as the modification of only one parameter can strongly impact the real dose deposition at the level of the cell monolayer, particularly involving low energy X-rays.
Related Concept Videos
X-ray Imaging
Biological Effects of Radiation
Radiation: Applications
The average...
Absorption of Radiation

