Proton radiotherapy has the potential to provide state-of-the-art dose conformality in the tumor area, reducing possible adverse effects on surrounding organs at risk. However, uncertainties in the exact location of the proton Bragg peak inside the patient prevent this technique from achieving full clinical potential. In this context, in vivo verification of the range of protons in patients is key to reduce uncertainty margins. Protoacoustic range verification employs acoustic pressure waves generated by protons due to the radio-induced thermoacoustic effect to reconstruct the dose deposited in a patient during proton therapy. In this paper, we propose to use the a priori knowledge of the shape of the proton dose distribution to create a di...
Ions provide a more advantageous dose distribution than photons for external beam radiotherapy, due ...
The main advantage for using protons in radiotherapy is their finite range in patients, allowing for...
Protons are an interesting modality for radiotherapy because of their well defined range and favoura...
Proton therapy has the potential to deposit its energy in tissue with high conformity to the tumor a...
In proton therapy high energy protons are used to irradiate a tumor. Ideally, the delivered proton d...
PURPOSE: Range verification in ion beam therapy relies to date on nuclear imaging techniques which r...
Purpose: The Bragg peak located at the end of the ion beam range is one of the main advantages of io...
In proton therapy, cancer patients are irradiated with high energy protons. For a successful treatme...
Dose delivery uncertainty is a major concern in proton therapy, adversely affecting the treatment pr...
[EN] Hadrontherapy makes it possible to deliver high doses of energy to cancerous tumors by using th...
Proton range verification by ionoacoustic wave sensing is a technique under development for applicat...
Proton therapy is an advanced form of radiation therapy which is increasingly used worldwide. Unlike...
An in vivo range verification technology for proton beam cancer therapy, preferably in real-time and...
Ions provide a more advantageous dose distribution than photons for external beam radiotherapy, due ...
Proton therapy is a novel radiotherapy technique that exploits the characteristic dose deposition of...
Ions provide a more advantageous dose distribution than photons for external beam radiotherapy, due ...
The main advantage for using protons in radiotherapy is their finite range in patients, allowing for...
Protons are an interesting modality for radiotherapy because of their well defined range and favoura...
Proton therapy has the potential to deposit its energy in tissue with high conformity to the tumor a...
In proton therapy high energy protons are used to irradiate a tumor. Ideally, the delivered proton d...
PURPOSE: Range verification in ion beam therapy relies to date on nuclear imaging techniques which r...
Purpose: The Bragg peak located at the end of the ion beam range is one of the main advantages of io...
In proton therapy, cancer patients are irradiated with high energy protons. For a successful treatme...
Dose delivery uncertainty is a major concern in proton therapy, adversely affecting the treatment pr...
[EN] Hadrontherapy makes it possible to deliver high doses of energy to cancerous tumors by using th...
Proton range verification by ionoacoustic wave sensing is a technique under development for applicat...
Proton therapy is an advanced form of radiation therapy which is increasingly used worldwide. Unlike...
An in vivo range verification technology for proton beam cancer therapy, preferably in real-time and...
Ions provide a more advantageous dose distribution than photons for external beam radiotherapy, due ...
Proton therapy is a novel radiotherapy technique that exploits the characteristic dose deposition of...
Ions provide a more advantageous dose distribution than photons for external beam radiotherapy, due ...
The main advantage for using protons in radiotherapy is their finite range in patients, allowing for...
Protons are an interesting modality for radiotherapy because of their well defined range and favoura...