In heavy-ion therapy, the stopping position of primary ions in tumours needs to be monitored for effective treatment and to prevent overdose exposure to normal tissues. Positron-emitting ion beams, such as 11C and 15O, have been suggested for range verification in heavy-ion therapy using in-beam positron emission tomography (PET) imaging, which offers the capability of visualizing the ion stopping position with a high signal-to-noise ratio. We have previously demonstrated the feasibility of in-beam PET imaging for the range verification of 11C and 15O ion beams and observed a slight shift between the beam stopping position and the dose peak position in simulations, depending on the initial beam energy spread. In this study, we focused on th...
Proton therapy can overcome the limitations of conventional radiotherapy due to the more selective e...
Proton therapy can overcome the limitations of conventional radiotherapy due to the more selective e...
Proton therapy can overcome the limitations of conventional radiotherapy due to the more selective e...
Objective. Beams of stable ions have been a well-established tool for radiotherapy for many decades....
In-beam positron emission tomography (in-beam PET) is currently the only method for an in-situ monit...
In-beam positron emission tomography (in-beam PET) is currently the only method for an in-situ monit...
In-beam positron emission tomography (in-beam PET) is currently the only method for an in-situ monit...
Application of PET scanners to proton beam therapy monitoring is a promising solution to obtain the ...
Application of PET scanners to proton beam therapy monitoring is a promising solution to obtain the ...
Application of PET scanners to proton beam therapy monitoring is a promising solution to obtain the ...
The use of positron-emitting radioactive isotopes for heavy ion therapy has been proposed as a means...
Radioactive ion (RI) beams such as 11C or 15O are useful for in situ range verification by in-beam P...
<p><b>Background:</b> Ion therapy, especially with modern scanning beam delivery, offers very sharp ...
In the context of hadrontherapy, whilst ions are capable of effectively destroying radio resistant, ...
In-beam PET imaging is an advanced image-based method to verify the proton beam range for proton the...
Proton therapy can overcome the limitations of conventional radiotherapy due to the more selective e...
Proton therapy can overcome the limitations of conventional radiotherapy due to the more selective e...
Proton therapy can overcome the limitations of conventional radiotherapy due to the more selective e...
Objective. Beams of stable ions have been a well-established tool for radiotherapy for many decades....
In-beam positron emission tomography (in-beam PET) is currently the only method for an in-situ monit...
In-beam positron emission tomography (in-beam PET) is currently the only method for an in-situ monit...
In-beam positron emission tomography (in-beam PET) is currently the only method for an in-situ monit...
Application of PET scanners to proton beam therapy monitoring is a promising solution to obtain the ...
Application of PET scanners to proton beam therapy monitoring is a promising solution to obtain the ...
Application of PET scanners to proton beam therapy monitoring is a promising solution to obtain the ...
The use of positron-emitting radioactive isotopes for heavy ion therapy has been proposed as a means...
Radioactive ion (RI) beams such as 11C or 15O are useful for in situ range verification by in-beam P...
<p><b>Background:</b> Ion therapy, especially with modern scanning beam delivery, offers very sharp ...
In the context of hadrontherapy, whilst ions are capable of effectively destroying radio resistant, ...
In-beam PET imaging is an advanced image-based method to verify the proton beam range for proton the...
Proton therapy can overcome the limitations of conventional radiotherapy due to the more selective e...
Proton therapy can overcome the limitations of conventional radiotherapy due to the more selective e...
Proton therapy can overcome the limitations of conventional radiotherapy due to the more selective e...