Laser-driven proton and ion acceleration is an area of increasing research interest given the recent development of short pulse-high intensity lasers. Several groups have reported experiments to understand whether a laser-driven beam can be applied for radiobiological purposes and in each of these, the method to obtain dose and spectral analysis was slightly different. The difficulty with these studies is that the very large instantaneous dose rate is a challenge for commonly used dosimetry techniques, so that other more sophisticated procedures need to be explored. This paper aims to explain a method for obtaining the energetic spectrum and the dose of a laser-driven proton beam irradiating a cell dish used for radiobiology studies. The pr...
The ultrashort duration of laser-driven multi-MeV ion bursts offers the possibility of radiobiologic...
In this paper, we report the first results of dosimetric analysis of broad-spectrum, multi-MeV laser...
We report on a new algorithm developed for the dosimetric analysis of broad-spectrum, multi-MeV lase...
The potential that laser based particle accelerators offer to solve sizing and cost issues arising w...
An integrated dosimetry and cell irradiation system IDOCIS with laser accelerated proton beams was...
Laser-driven particle acceleration is an area of increasing research interest given the recent devel...
The effect of proton irradiation of biological cells, on timescales orders of magnitude shorter than...
Particle acceleration by laser-plasma interaction is a promising alternative to conventional acceler...
International audienceThe study of radiation biology on laser-based accelerators is most interesting...
The measurement of radiation dose in radiotherapy is vital in ensuring the accuracy of treatments. A...
Laser-driven proton has recently gained a great interest as an alternative to conventional and more ...
Studies regarding the radiobiological effects of low dose radiation, microbeam irradiation services ...
The ultra short duration of laser-driven multi-MeV ion bursts offers the possibility of radiobiologi...
The ultrashort duration of laser-driven multi-MeV ion bursts offers the possibility of radiobiologic...
In this paper, we report the first results of dosimetric analysis of broad-spectrum, multi-MeV laser...
We report on a new algorithm developed for the dosimetric analysis of broad-spectrum, multi-MeV lase...
The potential that laser based particle accelerators offer to solve sizing and cost issues arising w...
An integrated dosimetry and cell irradiation system IDOCIS with laser accelerated proton beams was...
Laser-driven particle acceleration is an area of increasing research interest given the recent devel...
The effect of proton irradiation of biological cells, on timescales orders of magnitude shorter than...
Particle acceleration by laser-plasma interaction is a promising alternative to conventional acceler...
International audienceThe study of radiation biology on laser-based accelerators is most interesting...
The measurement of radiation dose in radiotherapy is vital in ensuring the accuracy of treatments. A...
Laser-driven proton has recently gained a great interest as an alternative to conventional and more ...
Studies regarding the radiobiological effects of low dose radiation, microbeam irradiation services ...
The ultra short duration of laser-driven multi-MeV ion bursts offers the possibility of radiobiologi...
The ultrashort duration of laser-driven multi-MeV ion bursts offers the possibility of radiobiologic...
In this paper, we report the first results of dosimetric analysis of broad-spectrum, multi-MeV laser...
We report on a new algorithm developed for the dosimetric analysis of broad-spectrum, multi-MeV lase...