Purpose: This is a theoretical simulation study for proof of concept of radiochromic film dosimetry to measure physical and biological doses without plan‐based quenching correction for patient‐specific quality assurance of carbon‐ion radiotherapy.Methods: We took a layer‐stacking carbon‐ion beam comprised of range‐shifted beamlets. The dosimeter response was simulated according to an experimental quenching model. The beam model followed a treatment planning system. The beam was decomposed into finely arranged beamlets with weights estimated by deconvolution of longitudinal dosimeter responses. The distributions of physical and biological doses were reconstructed from the estimated weights and were compared with the plan. We also evaluated t...
Purpose: Most treatment planning system (TPS) used in carbon-ion radiotherapy (CIRT) facilities are ...
Carbon therapy is increasing worldwide for treating some radioresistant tumours due to its better co...
Variation in the relative biological effectiveness (RBE) within the irradiation field of a carbon be...
Purpose: This is a theoretical simulation study for proof of concept of radiochromic film dosimetry ...
This is a feasibility study for radiochromic film (RCF) dosimetry to measure physical and biological...
Carbon ion radiotherapy is a novel modality used for the treatment of tumors that are unresectable, ...
We developed a calculation technique to evaluate the biological dose distribution of heavy ion beams...
In scanned carbon-ion (C-ion) radiotherapy, some primary C-ions undergo nuclear reactions before rea...
[Purpose] Carbon ion (C-ion) radiotherapy is better than the external photon radiotherapy because of...
Purpose: Compared to photons, using particle radiation in radiotherapy reduces the dose and irradiat...
Treatment planning of heavy-ion radiotherapy involves predictive calculation of not only physical do...
Purpose:Using the carbon ion beam for range measurements instead of photons would avoid the uncertai...
Objective:The challenging issues for the treatment planning of scanned carbon-ion (C-ion) therapy ar...
PURPOSE: In particle therapy, conventional treatment planning systems rely on an imaging representat...
INTRODUCTION: Radiochromic film such as Gafchromic EBT3 and EBT-XD is very useful tool for 2-dimensi...
Purpose: Most treatment planning system (TPS) used in carbon-ion radiotherapy (CIRT) facilities are ...
Carbon therapy is increasing worldwide for treating some radioresistant tumours due to its better co...
Variation in the relative biological effectiveness (RBE) within the irradiation field of a carbon be...
Purpose: This is a theoretical simulation study for proof of concept of radiochromic film dosimetry ...
This is a feasibility study for radiochromic film (RCF) dosimetry to measure physical and biological...
Carbon ion radiotherapy is a novel modality used for the treatment of tumors that are unresectable, ...
We developed a calculation technique to evaluate the biological dose distribution of heavy ion beams...
In scanned carbon-ion (C-ion) radiotherapy, some primary C-ions undergo nuclear reactions before rea...
[Purpose] Carbon ion (C-ion) radiotherapy is better than the external photon radiotherapy because of...
Purpose: Compared to photons, using particle radiation in radiotherapy reduces the dose and irradiat...
Treatment planning of heavy-ion radiotherapy involves predictive calculation of not only physical do...
Purpose:Using the carbon ion beam for range measurements instead of photons would avoid the uncertai...
Objective:The challenging issues for the treatment planning of scanned carbon-ion (C-ion) therapy ar...
PURPOSE: In particle therapy, conventional treatment planning systems rely on an imaging representat...
INTRODUCTION: Radiochromic film such as Gafchromic EBT3 and EBT-XD is very useful tool for 2-dimensi...
Purpose: Most treatment planning system (TPS) used in carbon-ion radiotherapy (CIRT) facilities are ...
Carbon therapy is increasing worldwide for treating some radioresistant tumours due to its better co...
Variation in the relative biological effectiveness (RBE) within the irradiation field of a carbon be...