[HTML][HTML] Gold nanoparticles meet medical radionuclides

N Daems, C Michiels, S Lucas, S Baatout… - Nuclear Medicine and …, 2021 - Elsevier
Thanks to their unique optical and physicochemical properties, gold nanoparticles have
gained increased interest as radiosensitizing, photothermal therapy and optical imaging …

Radiotherapy on-chip: microfluidics for translational radiation oncology

R Chermat, M Ziaee, DY Mak, E Refet-Mollof, F Rodier… - Lab on a Chip, 2022 - pubs.rsc.org
The clinical importance of radiotherapy in the treatment of cancer patients justifies the
development and use of research tools at the fundamental, pre-clinical, and ultimately …

Microdosimetric calculations of the direct DNA damage induced by low energy electrons using the Geant4-DNA Monte Carlo code

S Margis, M Magouni, I Kyriakou… - Physics in Medicine …, 2020 - iopscience.iop.org
To calculate the yield of direct DNA damage induced by low energy electrons using Monte
Carlo generated microdosimetric spectra at the nanometer scale and examine the influence …

A novel 169Yb‐based dynamic‐shield intensity modulated brachytherapy delivery system for prostate cancer

G Famulari, M Duclos, SA Enger - Medical physics, 2020 - Wiley Online Library
Purpose Intensity modulated brachytherapy (IMBT) is a novel high dose rate brachytherapy
(HDR BT) technique which incorporates static or dynamic shielding to increase tumor …

Microdosimetric investigation of the radiation quality of low-medium energy electrons using Geant4-DNA

I Kyriakou, I Tremi, AG Georgakilas… - Applied Radiation and …, 2021 - Elsevier
The increasing clinical use of low-energy photon and electron sources (below few tens of
keV) has raised concerns on the adequacy of the existing approximation of an energy …

A microdosimetric analysis of the interactions of mono-energetic neutrons with human tissue

CM Lund, G Famulari, L Montgomery, J Kildea - Physica Medica, 2020 - Elsevier
Nuclear reactions induced during high-energy radiotherapy produce secondary neutrons
that, due to their carcinogenic potential, constitute an important risk for the development of …

Microdosimetric analysis for boron neutron capture therapy via Monte Carlo track structure simulation with modified lithium cross-sections

Y Han, C Geng, JN D-Kondo, M Li… - Radiation Physics and …, 2023 - Elsevier
Boron neutron capture therapy (BNCT) is a cellular-level hadron therapy achieving
therapeutic effects via the synergistic action of multiple particles, including Lithium, alpha …

Patient-specific microdosimetry: a proof of concept

JM DeCunha, F Villegas, M Vallières… - Physics in Medicine …, 2021 - iopscience.iop.org
Microscopic energy deposition distributions from ionizing radiation vary depending on
biological target size and are used to predict the biological effects of an irradiation. Ionizing …

Dose‐mean lineal energy values for electrons by different Monte Carlo codes: Consequences for estimates of radiation quality in photon beams

L Lindborg, J Lillhök, I Kyriakou… - Medical …, 2022 - Wiley Online Library
Background The microdosimetric quantity lineal energy and its mean values have proven
useful for quantifying radiation quality in many situations. The ratio of dose‐mean lineal …

Dosimetric considerations for ytterbium-169, selenium-75, and iridium-192 radioisotopes in high-dose-rate endorectal brachytherapy

T Shoemaker, T Vuong, H Glickman, S Kaifi… - International Journal of …, 2019 - Elsevier
Purpose To investigate differences between prescribed and postimplant calculated dose in
192 Ir high-dose-rate endorectal brachytherapy (HDR-EBT) by evaluating dose to clinical …