Particle therapy exploits the energy deposition pattern of hadron beams. The narrow Bragg Peak at the end of range is a major advantage but range uncertainties can cause severe damage and require online verification to maximise the effectiveness in clinics. In-beam Positron Emission Tomography (PET) is a non-invasive, promising in-vivo technique, which consists in the measurement of the β+ activity induced by beam-tissue interactions during treatment, and presents the highest correlation of the measured activity distribution with the deposited dose, since it is not much influenced by biological washout. Here we report the first clinical results obtained with a state-of-the-art in-beam PET scanner, with on-the-fly reconstruction of the activ...
Positron emission tomography (PET) is one of the most mature techniques for monitoring in ion beam t...
At the University of Pisa, the DoPET (Dosimetry with a Positron Emission Tomograph) project has focu...
One of the most promising new radiotherapy techniques makes use of charged particles like protons an...
Particle therapy exploits the energy deposition pattern of hadron beams. The narrow Bragg Peak at th...
In this study a procedure for range verification in proton therapy by means of a planar in-beam PET ...
AbstractIn this study a procedure for range verification in proton therapy by means of a planar in-b...
Positron emission tomography (PET) is a well established imaging technique for range monitoring in h...
Quality assessment of particle therapy treatments by means of PET systems has been carried out since...
PET imaging is a non-invasive technique for particle range verification in proton therapy. It is bas...
Abstract. Charged particle therapy is a precise radiotherapy method for the treatment of solid tumor...
During particle therapy irradiation, positron emitters with half-lives ranging from 2 to 20 min are ...
In this paper, we investigate the use of a positron emission tomography (PET) system to monitor the ...
The quality assurance of particle therapy treatment is a fundamental issue that can be addressed by ...
Ion beam therapy is a valuable method for the treatment of deep-seated and radio-resistant tumors th...
Abstract Proton therapy can overcome the limitations of conventional radiotherapy due to the more ...
Positron emission tomography (PET) is one of the most mature techniques for monitoring in ion beam t...
At the University of Pisa, the DoPET (Dosimetry with a Positron Emission Tomograph) project has focu...
One of the most promising new radiotherapy techniques makes use of charged particles like protons an...
Particle therapy exploits the energy deposition pattern of hadron beams. The narrow Bragg Peak at th...
In this study a procedure for range verification in proton therapy by means of a planar in-beam PET ...
AbstractIn this study a procedure for range verification in proton therapy by means of a planar in-b...
Positron emission tomography (PET) is a well established imaging technique for range monitoring in h...
Quality assessment of particle therapy treatments by means of PET systems has been carried out since...
PET imaging is a non-invasive technique for particle range verification in proton therapy. It is bas...
Abstract. Charged particle therapy is a precise radiotherapy method for the treatment of solid tumor...
During particle therapy irradiation, positron emitters with half-lives ranging from 2 to 20 min are ...
In this paper, we investigate the use of a positron emission tomography (PET) system to monitor the ...
The quality assurance of particle therapy treatment is a fundamental issue that can be addressed by ...
Ion beam therapy is a valuable method for the treatment of deep-seated and radio-resistant tumors th...
Abstract Proton therapy can overcome the limitations of conventional radiotherapy due to the more ...
Positron emission tomography (PET) is one of the most mature techniques for monitoring in ion beam t...
At the University of Pisa, the DoPET (Dosimetry with a Positron Emission Tomograph) project has focu...
One of the most promising new radiotherapy techniques makes use of charged particles like protons an...