Quality assessment of particle therapy treatments by means of PET systems has been carried out since late '90 and it is one of the most promising in-vivo non invasive monitoring techniques employed clinically. It can be performed with a diagnostic PET scanners installed outside the treatment room (off-line monitoring) or inside the treatment room (in-room monitoring). However the most efficient way is by integrating a PET scanner with the treatment delivery system (on-line monitoring) so that the biological wash out and the patient repositioning errors are minimized. In this work we present the performance of the in-beam PET scanner developed within the INSIDE project. The INSIDE PET scanner is made of two planar heads, 10 cm wide (transaxi...
Particle therapy exploits the energy deposition pattern of hadron beams. The narrow Bragg Peak at th...
The in-beam PET is a novel PET application to image the beta+ activity induced in biological tissue...
In this paper, we investigate the use of a positron emission tomography (PET) system to monitor the ...
Quality assessment of particle therapy treatments by means of PET systems has been carried out since...
The quality assurance of particle therapy treatment is a fundamental issue that can be addressed by ...
PET imaging is a non-invasive technique for particle range verification in proton therapy. It is bas...
Positron emission tomography (PET) is a well established imaging technique for range monitoring in h...
The in-beam PET is a novel PET application to image the beta(+) activity induced in biological tissu...
In vivo range monitoring techniques are necessary in order to fully take advantage of the high dose ...
Positron emission tomography (PET) is a valuable technique to monitor in situ and non-invasively the...
Range verification with in-beam PET techniques is a powerful tool for monitoring the correctness of ...
Positron emission tomography is a valuable method for in situ and non invasive monitoring of the acc...
Proton therapy can overcome the limitations of conventional radiotherapy due to the more selective e...
Hadrontherapy is a cancer treatment that aims at eradicating tumour cells by using charged particle ...
In this study a procedure for range verification in proton therapy by means of a planar in-beam PET ...
Particle therapy exploits the energy deposition pattern of hadron beams. The narrow Bragg Peak at th...
The in-beam PET is a novel PET application to image the beta+ activity induced in biological tissue...
In this paper, we investigate the use of a positron emission tomography (PET) system to monitor the ...
Quality assessment of particle therapy treatments by means of PET systems has been carried out since...
The quality assurance of particle therapy treatment is a fundamental issue that can be addressed by ...
PET imaging is a non-invasive technique for particle range verification in proton therapy. It is bas...
Positron emission tomography (PET) is a well established imaging technique for range monitoring in h...
The in-beam PET is a novel PET application to image the beta(+) activity induced in biological tissu...
In vivo range monitoring techniques are necessary in order to fully take advantage of the high dose ...
Positron emission tomography (PET) is a valuable technique to monitor in situ and non-invasively the...
Range verification with in-beam PET techniques is a powerful tool for monitoring the correctness of ...
Positron emission tomography is a valuable method for in situ and non invasive monitoring of the acc...
Proton therapy can overcome the limitations of conventional radiotherapy due to the more selective e...
Hadrontherapy is a cancer treatment that aims at eradicating tumour cells by using charged particle ...
In this study a procedure for range verification in proton therapy by means of a planar in-beam PET ...
Particle therapy exploits the energy deposition pattern of hadron beams. The narrow Bragg Peak at th...
The in-beam PET is a novel PET application to image the beta+ activity induced in biological tissue...
In this paper, we investigate the use of a positron emission tomography (PET) system to monitor the ...