The high dose conformity and healthy tissue sparing achievable in Particle Therapy when using C ions calls for safety factors in treatment planning, to prevent the tumor under-dosage related to the possible occurrence of inter-fractional morphological changes during a treatment. This limitation could be overcome by a range monitor, still missing in clinical routine, capable of providing on-line feedback. The Dose Profiler (DP) is a detector developed within the INnovative Solution for In-beam Dosimetry in hadronthErapy (INSIDE) collaboration for the monitoring of carbon ion treatments at the CNAO facility (Centro Nazionale di Adroterapia Oncologica) exploiting the detection of charged secondary fragments that escape from the patient. The DP...
In a carbon ion treatment the nuclear fragmentationof both target and beam projectiles impacts on th...
In a carbon ion treatment the nuclear fragmentation of both target and beam projectiles impacts on t...
Charged particle therapy is a technique for cancer treatment that exploits hadron beams, mostly prot...
The high dose conformity and healthy tissue sparing achievable in Particle Therapy when using C ions...
Particle therapy in which deep seated tumours are treated using 12C ions (Carbon Ions RadioTherapy o...
Particle therapy (PT) can exploit heavy ions (such as He, C or O) to enhance the treatment efficacy,...
The use of C, He and O ions as projectiles in Particle Therapy (PT) treatments is getting more and m...
The Italian National Centre for Oncological Hadrontherapy (CNAO) has been treating patients since 20...
The use of C, He and O ions as projectiles in Particle Therapy (PT) treatments is getting more and m...
Purpose Methods Radiation therapy with ion beams provides a better conformation and effectiveness of...
The use of C, He and O as beam particles in Particle Therapy (PT) treatments is getting more and mor...
Positron emission tomography (PET) imaging of radioactivity distributions induced by therapeutic irr...
International audienceA key point in the quality control of ion therapy is real-time monitoring and ...
Carbon-ion beam radiotherapy has been developed as a highly effective modality for cancer treatment....
In a carbon ion treatment the nuclear fragmentationof both target and beam projectiles impacts on th...
In a carbon ion treatment the nuclear fragmentation of both target and beam projectiles impacts on t...
Charged particle therapy is a technique for cancer treatment that exploits hadron beams, mostly prot...
The high dose conformity and healthy tissue sparing achievable in Particle Therapy when using C ions...
Particle therapy in which deep seated tumours are treated using 12C ions (Carbon Ions RadioTherapy o...
Particle therapy (PT) can exploit heavy ions (such as He, C or O) to enhance the treatment efficacy,...
The use of C, He and O ions as projectiles in Particle Therapy (PT) treatments is getting more and m...
The Italian National Centre for Oncological Hadrontherapy (CNAO) has been treating patients since 20...
The use of C, He and O ions as projectiles in Particle Therapy (PT) treatments is getting more and m...
Purpose Methods Radiation therapy with ion beams provides a better conformation and effectiveness of...
The use of C, He and O as beam particles in Particle Therapy (PT) treatments is getting more and mor...
Positron emission tomography (PET) imaging of radioactivity distributions induced by therapeutic irr...
International audienceA key point in the quality control of ion therapy is real-time monitoring and ...
Carbon-ion beam radiotherapy has been developed as a highly effective modality for cancer treatment....
In a carbon ion treatment the nuclear fragmentationof both target and beam projectiles impacts on th...
In a carbon ion treatment the nuclear fragmentation of both target and beam projectiles impacts on t...
Charged particle therapy is a technique for cancer treatment that exploits hadron beams, mostly prot...