International audienceProton computed tomography (CT) has been described as a solution for imaging the proton stopping power of patient tissues, therefore reducing the uncertainty of the conversion of x-ray CT images to relative stopping power (RSP) maps and its associated margins. This study aimed to investigate this assertion under the assumption of ideal detection systems. We have developed a Monte Carlo framework to assess proton CT performances for the main steps of a proton therapy treatment planning, i.e. proton or x-ray CT imaging, conversion to RSP maps based on the calibration of a tissue phantom, and proton dose simulations. Irradiations of a computational phantom with pencil beams were simulated on various anatomical sites and t...
International audienceProton computed tomography (pCT) is a promising tomographic imaging modality a...
Proton beam ranges derived from dual-energy computed tomography (DECT) images from a dual-spiral rad...
Today, radiotherapy is one of the main methods for cancer treatment and it is used to irradiate a tu...
International audienceProton computed tomography (CT) has been described as a solution for imaging t...
International audienceProton computed tomography (CT) has been described as a solution to image the ...
International audienceProton therapy treatment efficiency directly relies on the proton range derive...
International audienceWhen treatment planning in ion beam therapy is performed based on X-ray CT dat...
International audienceProton transmission imaging has been proposed and investigated as imaging moda...
Accuracy in the treatment planning (TP) of proton therapy (PT) depends on the precision of the infor...
Background. Accurate stopping power estimation is crucial for treatment planning in proton therapy, ...
Proton therapy is a fast growing treatment modality for cancer and is in selected cases preferred ov...
PurposeTo determine the dependence of the accuracy in reconstruction of relative stopping power (RSP...
International audienceProton computed tomography (pCT) is a promising tomographic imaging modality a...
Proton beam ranges derived from dual-energy computed tomography (DECT) images from a dual-spiral rad...
Today, radiotherapy is one of the main methods for cancer treatment and it is used to irradiate a tu...
International audienceProton computed tomography (CT) has been described as a solution for imaging t...
International audienceProton computed tomography (CT) has been described as a solution to image the ...
International audienceProton therapy treatment efficiency directly relies on the proton range derive...
International audienceWhen treatment planning in ion beam therapy is performed based on X-ray CT dat...
International audienceProton transmission imaging has been proposed and investigated as imaging moda...
Accuracy in the treatment planning (TP) of proton therapy (PT) depends on the precision of the infor...
Background. Accurate stopping power estimation is crucial for treatment planning in proton therapy, ...
Proton therapy is a fast growing treatment modality for cancer and is in selected cases preferred ov...
PurposeTo determine the dependence of the accuracy in reconstruction of relative stopping power (RSP...
International audienceProton computed tomography (pCT) is a promising tomographic imaging modality a...
Proton beam ranges derived from dual-energy computed tomography (DECT) images from a dual-spiral rad...
Today, radiotherapy is one of the main methods for cancer treatment and it is used to irradiate a tu...