Energetic carbon ions are promising projectiles used for cancer radiotherapy. A thorough knowledge of how the energy of these ions is deposited in biological media (mainly composed of liquid water) is required. This can be attained by means of detailed computer simulations, both macroscopically (relevant for appropriately delivering the dose) and at the nanoscale (important for determining the inflicted radiobiological damage). The energy lost per unit path length (i.e., the so-called stopping power) of carbon ions is here theoretically calculated within the dielectric formalism from the excitation spectrum of liquid water obtained from two complementary approaches (one relying on an optical-data model and the other exclusively on ab initio...
Abstract: Energetic ions lose their energy in tissue mainly by ionising its molecules. This produces...
We report calculations of the radial dose deposited along carbon-ion tracks in liquid water using di...
Radiation damage by low-energy ions significantly contributes to the high biological efficiency of i...
Energetic carbon ions are promising projectiles used for cancer radiotherapy. A thorough knowledge o...
Energetic carbon ions are promising projectiles used for cancer radiotherapy. A thorough knowledge o...
Energetic carbon ions are promising projectiles used for cancer radiotherapy. A thorough knowledge o...
The nanometric track-structure of energetic ion beams in biological media determines the direct phys...
The effective use of swift ion beams in cancer treatment (known as hadrontherapy) as well as appropr...
The effective use of swift ion beams in cancer treatment (known as hadrontherapy) as well as appropr...
The effective use of swift ion beams in cancer treatment (known as hadrontherapy) as well as appropr...
Hadron therapy is a modern cancer treatment based on the interaction of proton or heavier ion beams ...
The goal of radiation therapy is to eradicate tumour cells while minimising radiation dose to health...
The goal of radiation therapy is to eradicate tumour cells while minimising radiation dose to health...
The goal of radiation therapy is to eradicate tumour cells while minimising radiation dose to health...
Energetic ions lose their energy in tissue mainly by ionising its molecules. This produces secondary...
Abstract: Energetic ions lose their energy in tissue mainly by ionising its molecules. This produces...
We report calculations of the radial dose deposited along carbon-ion tracks in liquid water using di...
Radiation damage by low-energy ions significantly contributes to the high biological efficiency of i...
Energetic carbon ions are promising projectiles used for cancer radiotherapy. A thorough knowledge o...
Energetic carbon ions are promising projectiles used for cancer radiotherapy. A thorough knowledge o...
Energetic carbon ions are promising projectiles used for cancer radiotherapy. A thorough knowledge o...
The nanometric track-structure of energetic ion beams in biological media determines the direct phys...
The effective use of swift ion beams in cancer treatment (known as hadrontherapy) as well as appropr...
The effective use of swift ion beams in cancer treatment (known as hadrontherapy) as well as appropr...
The effective use of swift ion beams in cancer treatment (known as hadrontherapy) as well as appropr...
Hadron therapy is a modern cancer treatment based on the interaction of proton or heavier ion beams ...
The goal of radiation therapy is to eradicate tumour cells while minimising radiation dose to health...
The goal of radiation therapy is to eradicate tumour cells while minimising radiation dose to health...
The goal of radiation therapy is to eradicate tumour cells while minimising radiation dose to health...
Energetic ions lose their energy in tissue mainly by ionising its molecules. This produces secondary...
Abstract: Energetic ions lose their energy in tissue mainly by ionising its molecules. This produces...
We report calculations of the radial dose deposited along carbon-ion tracks in liquid water using di...
Radiation damage by low-energy ions significantly contributes to the high biological efficiency of i...